お電話でもお問い合わせください
03-5860-2441
Report thumbnail
商品コード MM091410945I5B
出版日 2022/3/15
MarketsandMarkets
英文303 ページグローバル

低軌道衛星(LEO衛星)市場 - 衛星タイプ別、用途別、サブシステム別、エンドユーザー別、フリークエンシー別、地域別:市場予測(〜2026年)

LEO Satellite Market by Satellite Type (Small, Cube, Medium, Large satellites), Application (Communication, Earth Observation & Remote Sensing, Scientific, Technology), Subsystem, End User, Frequency, and Region - Forecast to 2026


Report thumbnail
商品コード MM091410945I5B◆2025年3月版も出版されている時期ですので、お問い合わせ後すぐに確認いたします。
出版日 2022/3/15
MarketsandMarkets
英文 303 ページグローバル

低軌道衛星(LEO衛星)市場 - 衛星タイプ別、用途別、サブシステム別、エンドユーザー別、フリークエンシー別、地域別:市場予測(〜2026年)

LEO Satellite Market by Satellite Type (Small, Cube, Medium, Large satellites), Application (Communication, Earth Observation & Remote Sensing, Scientific, Technology), Subsystem, End User, Frequency, and Region - Forecast to 2026



全体要約

低軌道衛星市場は、2021年の96億XX米ドルから2026年までに198億XX米ドルに成長すると予測されており、年平均成長率(CAGR)は15.5%です。この市場は衛星データサービスプロバイダー、リモートセンシングサービスプロバイダーなどにとって大きな可能性を秘めており、製造コストの低さや組立・打ち上げの容易さなどが投資を促進しています。主要な製造者は北米およびヨーロッパに拠点を持ち、L3Harris TechnologiesやSpaceX、Honeywell Internationalなどが活動しています。

2021年から2026年の間、通信セグメントが市場をリードすると期待されています。特に、近年の無線衛星インターネットの導入や小型ハードウェアシステムの開発が進展しており、先進的なコミュニケーションシステムの提供が見込まれています。また、北米地域が市場を牽引するとされ、米国政府は衛星通信の質を向上させるために投資を強化しています。2021年にはSwarm Technologiesが世界最小の双方向通信衛星「SpaceBEE」を打ち上げています。

関連する質問

96億USD (2021年)

15.5% (2021年から2026年)

L3Harris Technologies, Honeywell International Inc., Airbus, SpaceX, Northrop Grumman

多様性、低コスト、先進的なメカニクス


概要

LEO衛星市場は、2021年の96億米ドルから2026年までに198億米ドルまで成長することが予測されており、年平均成長率(CAGR)は15.5%です。LEO衛星システムは、衛星データサービスプロバイダー、小型衛星サービスプロバイダー、リモートセンシングサービスプロバイダー、技術サービスプロバイダー、投資家にとって大きな可能性を秘めています。この市場は、宇宙産業の中で最も収益性の高い縦分野の一つです。多様性、低コスト、高度な機械製品、組み立てと打ち上げの容易さ、大量生産、短いライフサイクルなどの要因がLEO衛星市場への投資を推進しています。衛星データの量とそのデータの応用範囲は、新技術が開発され、さらに多くの衛星が稼働することで、今後も成長し続けるでしょう。
この市場の主要な製造業者は北米とヨーロッパに拠点を置いています。L3Harris Technologies(米国)、Honeywell International Inc.(米国)、Airbus(ドイツ)、SpaceX(米国)、Northrop Grumman(米国)は、LEO衛星市場で活動するいくつかの主要なプレーヤーです。
COVID-19パンデミックは、世界各国の経済活動に重大な損害を与えました。LEO衛星システム、サブシステム、およびコンポーネントの製造も影響を受けています。衛星システムは非常に重要ですが、サプライチェーンの混乱により、製造プロセスは一時的に停止しています。製造活動の再開は、COVID-19の影響の程度、製造業務の稼働レベル、輸出入規制など、さまざまな要因に依存しています。企業はまだ注文を受け付けているかもしれませんが、納品スケジュールは確定していない可能性があります。
衛星タイプに基づいて、小型衛星セグメントは2021年から2026年までLEO衛星市場でリードすることが期待されています。
小型衛星は、主にリモートセンシング、地球観測、通信目的で使用される低質量かつコンパクトな衛星の一種です。これらの衛星は通常、500kg未満の重さです。小型衛星は、大型衛星の軌道上検査目的で使用されます。また、はるかに重要な衛星に搭載される新しく開発されたコンポーネントの試験キャリアとしても使用されます。しかし、小型衛星は、その小さな寸法のために、電力保存や推進システムの欠如などの運用上の課題に直面しやすいです。2022年1月、衛星通信プロバイダーのStarlinkは、LEOにおける小型衛星のコンステレーションの一部を打ち上げました。
用途に基づくと、通信セグメントは2021年から2026年までLEO衛星市場をリードすると予想されています。
LEO衛星は、現代の通信技術においてますます採用されています。ワイヤレス衛星インターネットの導入やミニチュアハードウェアシステムの開発は、衛星を活用した通信の分野で多くの機会を生み出しています。通信関連ミッションのための研究開発活動の増加は、高度に洗練されたミニチュア化されたオンボードナノ、マイクロ、およびミニサブシステムと先進的なミッション対応地上局技術の助けを借りて、通信システムの質を向上させることが期待されています。
地域に基づいて、北米は2021年から2026年までLEO衛星市場をリードすると予測されています。
アメリカは北米地域においてLEO衛星システムの有望な市場です。アメリカ政府は衛星通信の質と効果を向上させるために、先進的なLEO衛星技術への投資を増加させています。防衛と監視能力を強化するための衛星機器への投資の増加、軍事プラットフォームにおける既存通信の近代化、重要なインフラや法執行機関が衛星システムを使用することなどが、北米のLEO衛星市場を推進すると予想される主要な要因です。2021年、Swarm Technologiesは28機の0.25UキューブサットSpaceBEEを打ち上げました。このキューブサットは、IoT用の世界最小の双方向通信衛星です。
LEO衛星市場における主要参加者のプロフィールの内訳:
• 会社タイプ別: Tier 1 – 35%、Tier 2 – 45%、Tier 3 – 20%
• 役職別:Cレベル – 35%、ディレクターレベル – 25%、その他 – 40%
地域別:北米 – 30%、ヨーロッパ – 20%、アジア太平洋 – 25%、中東・アフリカ – 15%、ラテンアメリカ – 10%。
調査範囲:
この市場調査は、さまざまなセグメントおよびサブセグメントにわたるLEO衛星市場を対象としています。この調査は、アプリケーション、エンドユーザー、衛星タイプ、周波数、サブシステム、地域に基づき、異なるセグメントにおけるこの市場の規模と成長の可能性を推定することを目的としています。この調査には、主要プレーヤーの詳細な競争分析や、彼らの企業プロファイル、製品およびビジネスオファリングに関する重要な観察、最近の動向、および採用された主要な市場戦略も含まれています。
このレポートを購入する理由:
この報告書は、市場のリーダーや新規参入者が、全体的なLEO衛星市場の収益数値に関する最も近い推定値を把握するのに役立ちます。この報告書は、関係者が競争環境を理解し、ビジネスをより良く位置付け、適切な市場進出戦略を計画するための洞察を得る手助けをします。また、この報告書は、関係者が市場の動向を理解するのを助け、市場の主要なドライバー、制約、課題、機会に関する情報を提供します。
この報告書は以下のポイントについての洞察を提供します:
• 市場浸透:市場の主要企業が提供するLEO衛星システムに関する包括的な情報
• 製品開発/イノベーション: LEO衛星市場における今後の技術、研究開発活動、新製品の発売に関する詳細な洞察です。
• マーケット開発:収益性の高い市場に関する包括的な情報 - レポートはさまざまな地域にわたるLEO衛星市場を分析しています。
市場の多様化:LEO衛星市場における新製品、未開拓地域、最近の動向、および投資に関する詳細な情報
競争評価:LEO衛星市場の主要プレーヤーの市場シェア、成長戦略、製品、および製造能力の詳細な評価です。

※以下の目次にて、具体的なレポートの構成をご覧頂けます。ご購入、無料サンプルご請求、その他お問い合わせは、ページ上のボタンよりお進みください。

目次

  • 1 イントロダクション 38

    • 1.1 調査の目的 38
    • 1.2 市場の定義 38
      • 1.2.1 包含・除外事項 39
      • 1.2.2 対象市場 39
      • 1.2.3 対象地域 40
      • 1.2.4 対象年 40
    • 1.3 通貨と価格 40
    • 1.4 米ドル為替レート 41
    • 1.5 制約 41
    • 1.6 ステークホルダー 41
  • 2 調査手法 42

    • 2.1 リサーチデータ 42
      • 2.1.1 二次データ 43
        • 2.1.1.1 二次情報の主要データ 44
      • 2.1.2 一次データ 44
        • 2.1.2.1 一次情報の主要データ 45
      • 2.1.3 主要な一次ソース 45
    • 2.2 要因分析 46
      • 2.2.1 イントロダクション 46
      • 2.2.2 需要サイド指標 47
      • 2.2.3 供給サイド指標 47
    • 2.3 研究アプローチと方法論 47
      • 2.3.1 ボトムアップアプローチ 47
        • 2.3.1.1 市場規模予測・手法 48
        • 2.3.1.2 低軌道衛星市場の地域別内訳 48
      • 2.3.2 トップダウンアプローチ 49
        • 2.3.2.1 COVID-19が低軌道衛星市場に与える影響 49
    • 2.4 データのトライアンギュレーション 50
    • 2.5 調査の前提 51
    • 2.6 制約 51
    • 2.7 リスク 51
  • 3 エグゼクティブサマリー 52

  • 4 更なる考察 56

    • 4.1 低軌道衛星市場における魅力的な成長機会 56
    • 4.2 低軌道衛星の市場、用途別 56
    • 4.3 低軌道衛星の市場、タイプ別 57
    • 4.4 低軌道衛星の市場、フリークエンシー別 57
    • 4.5 低軌道衛星の市場、エンドユーザー別 58
    • 4.6 低軌道衛星の市場、国別 58
  • 5 市場概要 59

    • 5.1 イントロダクション 59
    • 5.2 市場力学 60
      • 5.2.1 促進要因 60
      • 5.2.2 抑制要因 62
      • 5.2.3 市場機会 63
        • 5.2.3.1 レーザービームを用いた宇宙光通信の応用可能性 63
        • 5.2.3.2 低軌道衛星用電気推進システムの進歩 63
        • 5.2.3.3 分身宇宙ミッションの柔軟性を高めるソフトウェア・デファインド技術の活用 63
        • 5.2.3.4 アンテナ、地上局などの技術進歩 64
      • 5.2.4 課題 64
        • 5.2.4.1 スペースデブリへの懸念 64
        • 5.2.4.2 低軌道衛星市場のサプライチェーンに与える影響 64
    • 5.3 COVID-19 低軌道衛星市場への影響 65
      • 5.3.1 供給サイドCovid-19の影響 65
      • 5.3.2 需要サイドCovid-19の影響 66
    • 5.4 レンジ/シナリオ 66
    • 5.5 低軌道衛星市場のバリューチェーン分析 67
      • 5.5.1 研究開発 67
      • 5.5.2 原材料 67
      • 5.5.3 OEM(部品・製品メーカー) 67
      • 5.5.4 アセンブラー&インテグレーター 68
      • 5.5.5 エンドユーザー 68
    • 5.6 顧客ビジネスに影響を与えるトレンド/ディスラプション 68
    • 5.7 低軌道衛星マーケットエコシステム 69
      • 5.7.1 主要企業 69
      • 5.7.2 未上場企業・中小企業 69
      • 5.7.3 エコシステム 69
    • 5.8 低軌道衛星の平均販売価格 70
    • 5.9 事業データ 71
    • 5.10 ポーターのファイブフォース分析 71
      • 5.10.1 新規参入の脅威 72
      • 5.10.2 代替品の脅威 72
      • 5.10.3 サプライヤーの交渉力 73
      • 5.10.4 買い手の交渉力 73
      • 5.10.5 競争の激しさ 73
    • 5.11 規制や関税の概観 74
      • 5.11.1 北米 74
      • 5.11.2 ヨーロッパ 74
        • 5.11.2.1 こくれんおうしゅうきょうじょうやく 74
        • 5.11.2.2 デベロッパーズ 74
      • 5.11.3 アジア太平洋 74
      • 5.11.4 中近東・アフリカ 75
  • 6 業界トレンド 76

    • 6.1 はじめに 76
    • 6.2 技術トレンド 76
    • 6.3 ユースケース 81
    • 6.4 メガトレンドの影響 83
      • 6.4.1 ハイブリッドビームフォーミング法 83
      • 6.4.2 コグニティブ無線(sdr-cr)技術 83
      • 6.4.3 特許分析 84
  • 7 低軌道衛星の市場、タイプ別 86

    • 7.1 イントロダクション 87
    • 7.2 大型衛星 88
      • 7.2.1 官公庁の需要がこのセグメントを牽引 88
    • 7.3 中型人工衛星 89
      • 7.3.1 地球観測の拡大がセグメントを牽引 89
    • 7.4 小型衛星 89
      • 7.4.1 ミニサテライト(100-500KG) 90
        • 7.4.1.1 地球観測やブロードバンドインターネットでの利用が需要を喚起 90
      • 7.4.2 超小型衛星(10-100KG) 90
        • 7.4.2.1 軍事用途の戦術的通信に使用され、需要を牽引 90
      • 7.4.3 超小型衛星(1~10KG) 91
        • 7.4.3.1 業務用アプリケーションでの幅広い活用が需要を後押し 91
    • 7.5 キューブサット 91
      • 7.5.1 0.25-1U 92
        • 7.5.1.1 通信用0.25-1Uキューブサットの開発に主眼を置く 92
      • 7.5.2 2U 92
        • 7.5.2.1 2U CubeSatsは、新しい技術のテストに使用 92
      • 7.5.3 3U 92
        • 7.5.3.1 3Uキューブサットが地球観測や交通監視に活用 92
      • 7.5.4 6U 93
        • 7.5.4.1 宇宙科学ミッションの需要増がセグメントを牽引 93
      • 7.5.5 12U・16U 93
        • 7.5.5.1 セグメントを駆動するための排出ガスモニタリングに使用 93
  • 8 低軌道衛星の市場、サブシステム別 94

    • 8.1 イントロダクション 95
    • 8.2 衛星バス 96
      • 8.2.1 姿勢・軌道制御装置 97
        • 8.2.1.1 駆動するペイロードの安定性とポインティング精度の必要性
      • 8.2.2 コマンド & データ処理システム(C&DH) 97
        • 8.2.2.1 C&DHシステムは、衛星の運用全般をコントロール 97
      • 8.2.3 電力システム(EPS) 98
        • 8.2.3.1 電力システムの技術的進歩が牽引
      • 8.2.4 推進タイプ 98
        • 8.2.4.1 化学推進タイプ 99
          • 8.2.4.1.1 需要を牽引する技術革新 99
        • 8.2.4.2 電気推進 99
          • 8.2.4.2.1 新世代システムの性能向上が需要を喚起 99
        • 8.2.4.3 ハイブリッド推進タイプ 100
          • 8.2.4.3.1 低コストのロケットの必要性が需要を牽引 100
      • 8.2.5 テレメトリートラッキング&コマンド(TT&C) 100
      • 8.2.6 ストラクチャー 100
        • 8.2.6.1 標準化された構造により、衛星にシステムを適切に配置 100
      • 8.2.7 サーマルシステム 101
        • 8.2.7.1 熱管理システムの小型化ニーズが需要を牽引 101
    • 8.3 ペイロード 101
      • 8.3.1 従来のペイロード 102
        • 8.3.1.1 光・赤外線 102
        • 8.3.1.2 ハイパースペクトル、マルチスペクトルイメージャー 103
        • 8.3.1.3 レーダーペイロード 103
          • 8.3.1.3.1 高解像度リモートセンシングの需要がセグメントを牽引 103
        • 8.3.1.4 通信ペイロード/トランスポンダ 104
        • 8.3.1.5 その他 104
      • 8.3.2 ソフトウェア・デファインド・ペイロード 104
    • 8.4 太陽光パネル 105
    • 8.5 衛星アンテナ 105
      • 8.5.1 ワイヤアンテナ 105
        • 8.5.1.1 モノポール 106
          • 8.5.1.1.1 モノポールアンテナは、より短い信号で、より広いカバーエリアを提供 106
        • 8.5.1.2 ダイポール 106
          • 8.5.1.2.1 ダイポールアンテナは、無線送受信の用途に使用 106
      • 8.5.2 ホーンアンテナ 106
      • 8.5.3 アレーアンテナ 106
      • 8.5.4 リフレクターアンテナ 107
        • 8.5.4.1 パラボリックリフレクター 107
          • 8.5.4.1.1 パラボラアンテナは、ポイント・ツー・ポイント通信に使用 107
        • 8.5.4.2 ダブルリフレクター 107
          • 8.5.4.2.1 ダブルリフレクターは他のアンテナより利得が高い 107
    • 8.6 その他 107
  • 9 低軌道衛星の市場、用途別 108

    • 9.1 イントロダクション 109
    • 9.2 コミュニケーション 110
    • 9.3 地球観測・リモートセンシング 111
    • 9.4 サイエンティフィック 111
    • 9.5 技術 112
    • 9.6 その他 112
  • 10 低軌道衛星の市場、エンドユーザー別 113

    • 10.1 イントロダクション 114
    • 10.2 商業用 115
      • 10.2.1 衛星事業者・所有者 116
      • 10.2.2 メディア・エンターテインメント 116
      • 10.2.3 エネルギー業界 116
      • 10.2.4 科学的研究・開発 116
        • 10.2.4.1 市場機会を創出する宇宙研究の無限の可能性 116
      • 10.2.5 その他 117
    • 10.3 政府・軍関係 117
      • 10.3.1 防衛省・情報機関など 118
      • 10.3.2 各国の宇宙機関 118
      • 10.3.3 サーチ&レスキュー事業者 119
        • 10.3.3.1 衛星を利用した救助・調査への採用が増加し、需要を促進 119
      • 10.3.4 アカデミック&研究機関 119
      • 10.3.5 全米地図・地形機関 119
    • 10.4 デュアルユース 120
  • 11 低軌道衛星の市場、フリークエンシー別 121

    • 11.1 イントロダクション 122
    • 11.2 L-BAND 123
      • 11.2.1 L-BANDはデータ通信や交通情報などに幅広く利用されている 123
    • 11.3 S-BAND 124
    • 11.4 シーバンド 124
      • 11.4.1 C-BAND周波数を持つ低軌道衛星は、ナビゲーションに使用 124
    • 11.5 エックスバンド 124
    • 11.6 KU-BAND 125
    • 11.7 KA-BAND(カバンド 125
      • 11.7.1 広帯域通信にKA-BANDアンテナを使用 125
    • 11.8 Q/V-BAND 125
      • 11.8.1 高周波帯域の信号フェージングを低減するQ/vバンドアンテナ 125
    • 11.9 HF/VHF/UHF帯 126
      • 11.9.1 Hf/vhf/uhf帯のアンテナは、キューブサット通信に広く使用されている 126
    • 11.10 レーザー/オプティカルバンド 126
  • 12 地域分析 127

    • 12.1 イントロダクション 128
    • 12.2 北米 129
      • 12.2.1 北米 Covid-19の影響 129
      • 12.2.2 PESTLE分析(外部環境):北米 129
      • 12.2.3 米国 133
      • 12.2.4 カナダ 136
        • 12.2.4.1 製造施設の拡大が市場を牽引 136
    • 12.3 ヨーロッパ 138
      • 12.3.1 ヨーロッパ Covid-19の影響 138
      • 12.3.2 PESTLE分析(外部環境):ヨーロッパ 138
      • 12.3.3 英国 143
        • 12.3.3.1 衛星技術の革新が市場を牽引 143
      • 12.3.4 ドイツ 145
        • 12.3.4.1 キューブサットの需要増が市場を牽引 145
      • 12.3.5 ロシア 148
        • 12.3.5.1 自社開発宇宙システムに対する信頼性の高まりが、市場を牽引 148
      • 12.3.6 フィンランド 150
        • 12.3.6.1 現地企業間のパートナーシップの強化が市場を牽引 150
      • 12.3.7 イタリア 152
      • 12.3.8 その他ヨーロッパ 154
    • 12.4 アジア太平洋 157
      • 12.4.1 アジア太平洋 Covid-19の影響 157
      • 12.4.2 PESTLE分析(外部環境):アジア太平洋 157
      • 12.4.3 中国 162
        • 12.4.3.1 自作宇宙技術への依存が市場を牽引 162
      • 12.4.4 インド 164
        • 12.4.4.1 12.4.4.1 今後の宇宙開発への取り組みが市場を牽引 164
      • 12.4.5 日本 166
      • 12.4.6 韓国 169
        • 12.4.6.1 政府からの資金提供の増加が市場を牽引 169
      • 12.4.7 オーストラリア 171
      • 12.4.8 その他アジア太平洋 174
    • 12.5 中東・アフリカ 176
      • 12.5.1 中東・アフリカ Covid-19の影響 177
      • 12.5.2 PESTLE分析(外部環境):中東・アフリカ 177
      • 12.5.3 サウジアラビア 181
      • 12.5.4 イスラエル 184
        • 12.5.4.1 宇宙技術への民間投資の増加が市場を牽引 184
      • 12.5.5 アラブ首長国連邦 186
      • 12.5.6 その他中東・アフリカ 188
    • 12.6 ラテンアメリカ 190
      • 12.6.1 ラテンアメリカ Covid-19の影響 190
      • 12.6.2 PESTLE分析(外部環境) 191
      • 12.6.3 メキシコ 195
      • 12.6.4 アルゼンチン 197
      • 12.6.5 その他ラテンアメリカ 199
  • 13 競合情勢 202

    • 13.1 イントロダクション 202
    • 13.2 企業概要 202
      • 13.2.1 低軌道衛星市場における主要企業の動向(2019-2021年) 202
    • 13.3 低軌道衛星市場における主要企業のランキング分析 203
    • 13.4 主要プレイヤー市場シェア 2020年 204
    • 13.5 低軌道衛星市場における主要企業の収益分析 206
    • 13.6 COMPANY PRODUCT FOOTPRINT ANALYSIS 206
    • 13.7 COMPETITIVE EVALUATION QUADRANT 210
      • 13.7.1 STAR 210
      • 13.7.2 EMERGING LEADER 210
      • 13.7.3 PERVASIVE 210
      • 13.7.4 PARTICIPANT 210
    • 13.8 スタートアップ/中小企業4象限分類 212
      • 13.8.1 PROGRESSIVE COMPANY 212
      • 13.8.2 RESPONSIVE COMPANY 212
      • 13.8.3 STARTING BLOCK 212
      • 13.8.4 DYNAMIC COMPANY 212
    • 13.9 競合シナリオ 214
      • 13.9.1 市場評価フレームワーク 214
      • 13.9.2 新製品の立ち上げと開発 214
      • 13.9.3 契約・パートナーシップ・協定 215
      • 13.9.4 コラボレーションと拡大 224
  • 14 企業プロファイル 228

    • 14.1 イントロダクション 228
    • 14.2 主要企業 229
      • 14.2.1 LOCKHEED MARTIN CORPORATION 229
      • 14.2.2 AIRBUS DEFENSE & SPACE 234
      • 14.2.3 L3HARRIS TECHNOLOGIES INC. 239
      • 14.2.4 NORTHROP GRUMMAN CORPORATION 243
      • 14.2.5 SPACE EXPLORATION TECHNOLOGIES CORP. (SPACEX) 248
      • 14.2.6 SIERRA NEVADA CORPORATION 251
      • 14.2.7 SURREY SATELLITE TECHNOLOGY LTD (SSTL) 253
      • 14.2.8 THALES GROUP 257
      • 14.2.9 GOMSPACE 260
      • 14.2.10 PLANET LABS INC 265
      • 14.2.11 RAYTHEON TECHNOLOGIES CORPORATION 269
      • 14.2.12 OHB SE 275
      • 14.2.13 MAXAR TECHNOLOGIES 278
      • 14.2.14 THE AEROSPACE CORPORATION 280
      • 14.2.15 MITSUBISHI ELECTRIC CORPORATION 282
      • 14.2.16 EXOLAUNCH GMBH 285
      • 14.2.17 PUMPKIN INC. 288
      • 14.2.18 BALL AEROSPACE & TECHNOLOGIES 289
      • 14.2.19 DAURIA AEROSPACE LTD. 291
      • 14.2.20 AAC CLYDE SPACE 292
      • 14.2.21 MILLENNIUM SPACE SYSTEM, INC 297
    • 14.3 スタートアップ/中小企業 298
      • 14.3.1 ENDUROSAT 298
      • 14.3.2 SWARM TECHNOLOGIES 299
      • 14.3.3 NANOAVIONICS 300
      • 14.3.4 ALÉN SPACE 301
      • 14.3.5 NEARSPACE LAUNCH, INC. 302
      • 14.3.6 SPIRE GLOBAL, INC. 303
      • 14.3.7 EARTH-I, INC. 303
      • 14.3.8 TERRAN ORBITAL 304
      • 14.3.9 ALBA ORBITAL 305
      • 14.3.10 SATELLOGIC 306
  • 15 付録 307

    • 15.1 ディスカッションガイド 307
    • 15.2 ナレッジストア : MarketAndMarketのサブスクリプションポータル 310
    • 15.3 可能なカスタマイズ 312
    • 15.4 関連レポート 312
    • 15.5 執筆者の詳細 313

※英文のレポートについての日本語表記のタイトルや紹介文などは、すべて生成AIや自動翻訳ソフトを使用して提供しております。それらはお客様の便宜のために提供するものであり、当社はその内容について責任を負いかねますので、何卒ご了承ください。適宜英語の原文をご参照ください。
“All Japanese titles, abstracts, and other descriptions of English-language reports were created using generative AI and/or machine translation. These are provided for your convenience only and may contain errors and inaccuracies. Please be sure to refer to the original English-language text. We disclaim all liability in relation to your reliance on such AI-generated and/or machine-translated content.”


Description

The LEO satellite market is projected to grow from USD 9.6 billion in 2021 to USD 19.8 billion by 2026, at a CAGR of 15.5 %. LEO satellite systems hold a huge potential for satellite data service providers, small sat service providers, remote sensing service providers, technical service providers, and investors. The market is one of the most lucrative verticals of the space industry. Factors such as versatility, low cost, advanced mechanics, ease of assembly and launch, mass production, and short lifecycles have driven investments in the LEO satellite market. The amount of satellite data and the range of applications for that data will continue to grow in the future as new technologies develop and more satellites come online. Major manufacturers in this market are based in North America and Europe. L3Harris Technologies (US), Honeywell International Inc.(US), Airbus (Germany), SpaceX (US), Northrop Grumman (US) are among a few leading players operating in the LEO satellite market. The COVID-19 pandemic has caused significant damage to the economic activities of countries across the world. The manufacturing of LEO satellite systems, subsystems, and components has also been impacted. Although satellite systems are critically important, disruptions in the supply chain have halted their manufacturing processes for the time being. Resuming manufacturing activities depends on the level of COVID-19 exposure, the level at which manufacturing operations are running, and import-export regulations, among other factors. While companies may still be taking in orders, delivery schedules may not be fixed. Based on satellite type, the small satellite segment is expected to lead the LEO satellite market from 2021 to 2026. A small satellite is a type of low mass and compact satellite primarily employed for remote sensing, Earth observation, and communication purposes. These satellites usually weigh less than 500 kg. Small satellites are used for in-orbit inspection purposes of larger satellites. These are also used as test carriers for newly developed components that are to be installed on a much critical satellite. However, small satellites are prone to operational challenges that include lack of power storage and propulsion system, owing to their small dimensions. In January 2022, satellite communications provider, Starlink launched a part of constellation of small satellites in LEO. Based on application, the communication segment is expected to lead the LEO satellite market from 2021 to 2026. LEO satellites are increasingly being adopted in modern communication technologies. The introduction of wireless satellite internet and development of miniature hardware systems are exploiting numerous opportunities in the field of satellite-enabled communication. A rise in R&D activities for communication-related missions is expected to offer enhanced quality communication systems with the help of highly sophisticated miniaturized onboard nano, micro, and mini subsystems, coupled with advanced mission-compatible ground-station technology. Based on region, North America is expected to lead the LEO satellite market from 2021 to 2026. The US is a lucrative market for LEO satellite systems in the North American region. The US government is increasingly investing in advanced LEO satellite technologies to enhance the quality and effectiveness of satellite communication. The increasing investment on satellite equipment to enhance defense and surveillance capabilities of the armed forces, modernization of existing communication in military platforms, critical infrastructure and law enforcement agencies using satellite systems, are key factors expected to drive the LEO satellite market in North America. In 2021, Swarm Technologies launched 28, 0.25U CubeSat SpaceBEE. The CubeSat is the world’s smallest two-way communications satellites for IoT. The break-up of the profile of primary participants in the LEO satellite market: • By Company Type: Tier 1 – 35%, Tier 2 – 45%, and Tier 3 – 20% • By Designation: C Level – 35%, Director Level – 25%, and Others – 40% • By Region: North America – 30%, Europe – 20%, Asia Pacific – 25%, Middle East & Africa – 15%, Latin America – 10%. Research Coverage: This market study covers LEO satellite market across various segments and subsegments. It aims at estimating the size and growth potential of this market across different segments based on Application, End user, Satellite type, Frequency, Sub-system, and region. This study also includes an in-depth competitive analysis of the key players in the market, along with their company profiles, key observations related to their product and business offerings, recent developments undertaken by them, and key market strategies adopted by them. Reasons to buy this report: The report will help the market leaders/new entrants in this market with information on the closest approximations of the revenue numbers for the overall LEO satellite market. This report will help stakeholders understand the competitive landscape and gain more insights to position their businesses better and to plan suitable go-to-market strategies. The report also helps stakeholders understand the pulse of the market and provides them with information on key market drivers, restraints, challenges, and opportunities. The report provides insights on the following pointers: • Market Penetration: Comprehensive information on LEO satellite systems offered by the top players in the market • Product Development/Innovation: Detailed insights on upcoming technologies, research & development activities, and new product launches in the LEO satellite market • Market Development: Comprehensive information about lucrative markets – the report analyses the LEO satellite market across varied regions • Market Diversification: Exhaustive information about new products, untapped geographies, recent developments, and investments in the LEO satellite market • Competitive Assessment: In-depth assessment of market shares, growth strategies, products, and manufacturing capabilities of leading players in the LEO satellite market

Table of Contents

  • 1 INTRODUCTION 38

    • 1.1 STUDY OBJECTIVES 38
    • 1.2 MARKET DEFINITION 38
      • 1.2.1 INCLUSIONS & EXCLUSIONS 39
      • 1.2.2 MARKETS COVERED 39
      • 1.2.3 REGIONAL SCOPE 40
      • 1.2.4 YEARS CONSIDERED 40
    • 1.3 CURRENCY & PRICING 40
    • 1.4 USD EXCHANGE RATES 41
    • 1.5 LIMITATIONS 41
    • 1.6 STAKEHOLDERS 41
  • 2 RESEARCH METHODOLOGY 42

    • 2.1 RESEARCH DATA 42
      • 2.1.1 SECONDARY DATA 43
        • 2.1.1.1 Key data from secondary sources 44
      • 2.1.2 PRIMARY DATA 44
        • 2.1.2.1 Key data from primary sources 45
      • 2.1.3 KEY PRIMARY SOURCES 45
    • 2.2 FACTOR ANALYSIS 46
      • 2.2.1 INTRODUCTION 46
      • 2.2.2 DEMAND-SIDE INDICATORS 47
      • 2.2.3 SUPPLY-SIDE INDICATORS 47
    • 2.3 RESEARCH APPROACH AND METHODOLOGY 47
      • 2.3.1 BOTTOM-UP APPROACH 47
        • 2.3.1.1 Market size estimation & methodology 48
        • 2.3.1.2 Regional split of LEO satellite market 48
      • 2.3.2 TOP-DOWN APPROACH 49
        • 2.3.2.1 COVID-19 impact on LEO satellite market 49
    • 2.4 DATA TRIANGULATION 50
    • 2.5 RESEARCH ASSUMPTIONS 51
    • 2.6 LIMITATIONS 51
    • 2.7 RISKS 51
  • 3 EXECUTIVE SUMMARY 52

  • 4 PREMIUM INSIGHTS 56

    • 4.1 ATTRACTIVE GROWTH OPPORTUNITIES IN LEO SATELLITE MARKET 56
    • 4.2 LEO SATELLITE MARKET, BY APPLICATION 56
    • 4.3 LEO SATELLITE MARKET, BY TYPE 57
    • 4.4 LEO SATELLITE MARKET, BY FREQUENCY 57
    • 4.5 LEO SATELLITE MARKET, BY END USER 58
    • 4.6 LEO SATELLITE MARKET, BY COUNTRY 58
  • 5 MARKET OVERVIEW 59

    • 5.1 INTRODUCTION 59
    • 5.2 MARKET DYNAMICS 60
      • 5.2.1 DRIVERS 60
        • 5.2.1.1 Increase in demand for LEO-based services 60
        • 5.2.1.2 Rising demand for Earth observation imagery and analytics 61
        • 5.2.1.3 Increasing developments of satellite networks to provide internet access in areas without/low broadband connectivity 61
        • 5.2.1.4 Increasing demand for CubeSats 62
      • 5.2.2 RESTRAINTS 62
        • 5.2.2.1 Government policies 62
        • 5.2.2.2 Coverage, efficiency, and complexity of LEO satellites over GEO satellites for same application 63
      • 5.2.3 OPPORTUNITIES 63
        • 5.2.3.1 Potential applications of space optical communications using laser beams 63
        • 5.2.3.2 Advancements in electric propulsion systems for LEO satellites 63
        • 5.2.3.3 Use of software-defined technology for flexibility in alter space missions 63
        • 5.2.3.4 Technological advancements in antennas, ground stations, and other areas 64
      • 5.2.4 CHALLENGES 64
        • 5.2.4.1 Concerns over space debris 64
        • 5.2.4.2 Implications in supply chain of LEO satellite market 64
    • 5.3 COVID-19 IMPACT ON LEO SATELLITE MARKET 65
      • 5.3.1 SUPPLY-SIDE IMPACT OF COVID-19 65
      • 5.3.2 DEMAND-SIDE IMPACT OF COVID-19 66
    • 5.4 RANGE/SCENARIOS 66
    • 5.5 VALUE CHAIN ANALYSIS OF LEO SATELLITE MARKET 67
      • 5.5.1 R&D 67
      • 5.5.2 RAW MATERIAL 67
      • 5.5.3 OEM (COMPONENT/PRODUCT MANUFACTURERS) 67
      • 5.5.4 ASSEMBLERS & INTEGRATORS 68
      • 5.5.5 END USERS 68
    • 5.6 TRENDS/DISRUPTIONS IMPACTING CUSTOMER BUSINESS 68
      • 5.6.1 REVENUE SHIFT AND NEW REVENUE POCKETS FOR LEO SATELLITE SYSTEM MANUFACTURERS 68
    • 5.7 LEO SATELLITE MARKET ECOSYSTEM 69
      • 5.7.1 PROMINENT COMPANIES 69
      • 5.7.2 PRIVATE AND SMALL ENTERPRISES 69
      • 5.7.3 ECOSYSTEM 69
    • 5.8 AVERAGE SELLING PRICE OF LEO SATELLITES 70
    • 5.9 OPERATIONAL DATA 71
    • 5.10 PORTER’S FIVE FORCES ANALYSIS 71
      • 5.10.1 THREAT OF NEW ENTRANTS 72
      • 5.10.2 THREAT OF SUBSTITUTES 72
      • 5.10.3 BARGAINING POWER OF SUPPLIERS 73
      • 5.10.4 BARGAINING POWER OF BUYERS 73
      • 5.10.5 DEGREE OF COMPETITION 73
    • 5.11 TARIFF AND REGULATORY LANDSCAPE 74
      • 5.11.1 NORTH AMERICA 74
      • 5.11.2 EUROPE 74
        • 5.11.2.1 UN Outer Space Treaty 74
        • 5.11.2.2 Developers 74
      • 5.11.3 ASIA PACIFIC 74
      • 5.11.4 MIDDLE EAST AND AFRICA. 75
  • 6 INDUSTRY TRENDS 76

    • 6.1 INTRODUCTIONS 76
    • 6.2 TECHNOLOGY TRENDS 76
      • 6.2.1 HIGH ALTITUDE PLATFORM STATION (HAPS) SYSTEMS 76
      • 6.2.2 DEVELOPMENT OF SATELLITE CONSTELLATIONS TO PROVIDE COMMUNICATIONS 77
      • 6.2.3 USE OF LEO SATELLITES TO PROVIDE ENHANCED SPACE IMAGERY 77
      • 6.2.4 DEVELOPMENT OF DEDICATED LAUNCH VEHICLES FOR LEO SATELLITES 77
      • 6.2.5 ADDITIVE MANUFACTURING 79
      • 6.2.6 ADVANCEMENTS IN ELECTRIC PROPULSION SYSTEMS FOR LEO SATELLITES 79
      • 6.2.7 DISTRIBUTED ELECTRIC POWER SYSTEM (EPS) IN SMALL SATELLITE APPLICATIONS 79
      • 6.2.8 HYPERSPECTRAL AND MULTI-SPECTRAL IMAGING DISTRIBUTED EPS IN SMALL SATELLITE APPLICATIONS 80
      • 6.2.9 ENERGY STORAGE (PRIMARY & SECONDARY BATTERIES) DISTRIBUTED EPS IN SMALL SATELLITE APPLICATIONS 80
    • 6.3 USE CASES 81
      • 6.3.1 USE CASE: SMALL SATELLITES FOR IOT AND COMMUNICATIONS 81
      • 6.3.2 USE CASE: SPACE-BASED GLOBAL WIRELESS MONITORING SYSTEMS 82
      • 6.3.3 USE CASE: MEASUREMENTS OF MAGNETIC AND ELECTRIC FIELDS ON EARTH’S IONOSPHERE 82
      • 6.3.4 USE CASE: REAL-TIME DATA TO EMERGENCY SYSTEM 82
      • 6.3.5 USE CASE: SATELLITE RADIATION HARDNESS TEST 83
    • 6.4 IMPACT OF MEGATRENDS 83
      • 6.4.1 HYBRID BEAMFORMING METHODS 83
      • 6.4.2 COGNITIVE RADIO (SDR-CR) TECHNOLOGY 83
      • 6.4.3 PATENT ANALYSIS 84
  • 7 LEO SATELLITE MARKET, BY TYPE 86

    • 7.1 INTRODUCTION 87
    • 7.2 LARGE SATELLITE 88
      • 7.2.1 DEMAND FROM GOVERNMENT AGENCIES TO DRIVE THE SEGMENT 88
    • 7.3 MEDIUM SATELLITE 89
      • 7.3.1 INCREASING FOR EARTH OBSERVATION TO DRIVE THE SEGMENT 89
    • 7.4 SMALL SATELLITE 89
      • 7.4.1 MINISATELLITE (100-500 KG) 90
        • 7.4.1.1 Usage in earth observation and broadband internet to drive demand 90
      • 7.4.2 MICROSATELLITE (10-100 KG) 90
        • 7.4.2.1 Use in tactical communication in military applications to drive demand 90
      • 7.4.3 NANOSATELLITE (1-10 KG) 91
        • 7.4.3.1 Wide scope in commercial applications to drive demand 91
    • 7.5 CUBESAT 91
      • 7.5.1 0.25-1U 92
        • 7.5.1.1 Key focus on developing 0.25-1U CubeSats for communication 92
      • 7.5.2 2U 92
        • 7.5.2.1 2U CubeSats are used for testing emerging technologies 92
      • 7.5.3 3U 92
        • 7.5.3.1 3U CubeSats are used for earth observation and traffic monitoring 92
      • 7.5.4 6U 93
        • 7.5.4.1 Increasing demand for space science missions to drive the segment 93
      • 7.5.5 12U & 16U 93
        • 7.5.5.1 Use in monitoring emissions to drive the segment 93
  • 8 LEO SATELLITE MARKET, BY SUBSYSTEM 94

    • 8.1 INTRODUCTION 95
    • 8.2 SATELLITE BUS 96
      • 8.2.1 ATTITUDE & ORBITAL CONTROL SYSTEM 97
        • 8.2.1.1 Need for stability of payloads and pointing accuracy to drive
      • 8.2.2 COMMAND & DATA HANDLING SYSTEM (C&DH) 97
        • 8.2.2.1 C&DH system controls overall operations of satellites 97
      • 8.2.3 ELECTRICAL POWER SYSTEM (EPS) 98
        • 8.2.3.1 Technological advancements in electrical power systems to drive
      • 8.2.4 PROPULSION 98
        • 8.2.4.1 Chemical propulsion 99
          • 8.2.4.1.1 Technological innovations to drive demand 99
        • 8.2.4.2 Electric propulsion 99
          • 8.2.4.2.1 Improved performance of new-generation systems to drive demand 99
        • 8.2.4.3 Hybrid propulsion 100
          • 8.2.4.3.1 Need for low-cost launch vehicles to drive demand 100
      • 8.2.5 TELEMETRY, TRACKING, AND COMMAND (TT&C) 100
        • 8.2.5.1 Need for effective communication between satellite and ground station to drive demand 100
      • 8.2.6 STRUCTURE 100
        • 8.2.6.1 Standardized structures enable proper placement of systems in satellites 100
      • 8.2.7 THERMAL SYSTEM 101
        • 8.2.7.1 Need for miniaturized thermal management systems to drive demand 101
    • 8.3 PAYLOADS 101
      • 8.3.1 TRADITIONAL PAYLOADS 102
        • 8.3.1.1 Optical and infrared 102
          • 8.3.1.1.1 Increased demand for Earth observation and remote sensing applications to drive the segment 102
        • 8.3.1.2 Hyperspectral and multispectral imager 103
          • 8.3.1.2.1 Increased need for applications like mapping & remote sensing to drive demand 103
        • 8.3.1.3 Radar payload 103
          • 8.3.1.3.1 Demand for high-resolution remote sensing to drive the segment 103
        • 8.3.1.4 Communication payload/ transponder 104
          • 8.3.1.4.1 Increasing demand for efficient communication for small satellites to drive the segment 104
        • 8.3.1.5 Others 104
      • 8.3.2 SOFTWARE-DEFINED PAYLOADS 104
        • 8.3.2.1 Use of software-defined technology for flexibility to alter space mission to drive the segment 104
    • 8.4 SOLAR PANELS 105
      • 8.4.1 USE OF SOLAR PHOTOVOLTAIC PANELS TO SUPPLY POWER IN SPACE TO DRIVE THE SEGMENT 105
    • 8.5 SATELLITE ANTENNA 105
      • 8.5.1 WIRE ANTENNAS 105
        • 8.5.1.1 Monopole 106
          • 8.5.1.1.1 Monopole antennas provide shorter signals with a wider coverage area 106
        • 8.5.1.2 Dipole 106
          • 8.5.1.2.1 Dipole antennas are used for radio transmitting and receiving applications 106
      • 8.5.2 HORN ANTENNAS 106
        • 8.5.2.1 Horn antennas are used for Earth observation due to their wide range of frequency 106
      • 8.5.3 ARRAY ANTENNAS 106
        • 8.5.3.1 Advancements in solid-state technology have made phased array antennas more cost-effective 106
      • 8.5.4 REFLECTOR ANTENNAS 107
        • 8.5.4.1 Parabolic reflector 107
          • 8.5.4.1.1 Parabolic reflectors are used for point-to-point communication 107
        • 8.5.4.2 Double reflector 107
          • 8.5.4.2.1 Double reflector has better gain than other antennas 107
    • 8.6 OTHERS 107
  • 9 LEO SATELLITE MARKET, BY APPLICATION 108

    • 9.1 INTRODUCTION 109
    • 9.2 COMMUNICATION 110
      • 9.2.1 ADVANCEMENTS IN TECHNOLOGY PROVIDING EFFICIENT MINIATURIZED COMMUNICATIONS SYSTEMS TO DRIVE DEMAND 110
    • 9.3 EARTH OBSERVATION & REMOTE SENSING 111
      • 9.3.1 COMPACT NATURE OF LEO SATELLITES LEAD TO EFFICIENT EARTH OBSERVATION AND REMOTE SENSING 111
    • 9.4 SCIENTIFIC 111
      • 9.4.1 MINIATURIZATION OF SUBCOMPONENTS AND PAYLOADS FACILITATES USE OF LEO SATELLITES FOR NEW SPACE SCIENCE MISSIONS 111
    • 9.5 TECHNOLOGY 112
      • 9.5.1 INCREASED INVESTMENTS IN LEO SATELLITES TO DEVELOP BETTER NAVIGATION AND TRACKING TECHNOLOGIES 112
    • 9.6 OTHERS 112
  • 10 LEO SATELLITE MARKET, BY END USER 113

    • 10.1 INTRODUCTION 114
    • 10.2 COMMERCIAL 115
      • 10.2.1 SATELLITE OPERATORS/OWNERS 116
        • 10.2.1.1 Extensive use of LEO satellites for commercialization and data transferability to drive the segment 116
      • 10.2.2 MEDIA & ENTERTAINMENT 116
        • 10.2.2.1 Increasing need for on-demand and streaming information and entertainment to drive the segment 116
      • 10.2.3 ENERGY INDUSTRY 116
        • 10.2.3.1 Demand for monitoring structural integrity of nuclear power stations to drive the segment 116
      • 10.2.4 SCIENTIFIC RESEARCH & DEVELOPMENT 116
        • 10.2.4.1 Endless prospects in space research to create market opportunities 116
      • 10.2.5 OTHERS 117
    • 10.3 GOVERNMENT & MILITARY 117
      • 10.3.1 DEPARTMENT OF DEFENSE & INTELLIGENCE AGENCIES 118
        • 10.3.1.1 Increasing demand for real-time data and imaging to drive the segment 118
      • 10.3.2 NATIONAL SPACE AGENCIES 118
        • 10.3.2.1 Small satellites launched into LEO lead to efficient earth observation and remote sensing 118
      • 10.3.3 SEARCH AND RESCUE ENTITIES 119
        • 10.3.3.1 Increased adoption of satellite-aided rescue & research to drive demand 119
      • 10.3.4 ACADEMIC & RESEARCH INSTITUTIONS 119
        • 10.3.4.1 Increasing support from governments to train students in LEO satellite development to drive the segment 119
      • 10.3.5 NATIONAL MAPPING & TOPOGRAPHIC AGENCIES 119
        • 10.3.5.1 Increased investments in LEO satellites to improve GPS-based navigation to drive the segment 119
    • 10.4 DUAL-USE 120
      • 10.4.1 INCREASE IN LAUNCH OF SATELLITES FOR BETTER CONNECTIVITY AND PROVISION OF HIGH-SPEED DATA TO DRIVE THE SEGMENT 120
  • 11 LEO SATELLITE MARKET, BY FREQUENCY 121

    • 11.1 INTRODUCTION 122
    • 11.2 L-BAND 123
      • 11.2.1 L-BAND IS EXTENSIVELY USED IN DATA COMMUNICATIONS AND TRAFFIC INFORMATION 123
    • 11.3 S-BAND 124
      • 11.3.1 LOW DRAG AND LIGHTWEIGHT S-BAND ANTENNAS ARE COMPATIBLE WITH SPACE OPERATIONS 124
    • 11.4 C-BAND 124
      • 11.4.1 LEO SATELLITES WITH C-BAND FREQUENCY ARE USED FOR NAVIGATION PURPOSES 124
    • 11.5 X-BAND 124
      • 11.5.1 USE OF X-BAND TO PROVIDE HIGH-THROUGHPUT COMMUNICATION FROM SPACECRAFT TO GROUND STATIONS 124
    • 11.6 KU-BAND 125
      • 11.6.1 NEED FOR A WIDER RANGE OF DATA COMMUNICATION TO DRIVE DEMAND 125
    • 11.7 KA-BAND 125
      • 11.7.1 KA-BAND ANTENNAS ARE USED FOR HIGH BANDWIDTH COMMUNICATION 125
    • 11.8 Q/V-BAND 125
      • 11.8.1 Q/V BAND ANTENNAS REDUCE SIGNAL FADING AT HIGH-FREQUENCY BANDS 125
    • 11.9 HF/VHF/UHF-BAND 126
      • 11.9.1 HF/VHF/UHF BAND ANTENNAS ARE EXTENSIVELY USED FOR CUBESAT COMMUNICATIONS 126
    • 11.10 LASER/OPTICAL-BAND 126
      • 11.10.1 LASER/OPTICAL BAND COMMUNICATION IN SPACE OPENS VIRTUALLY UNLIMITED CAPACITIES WITHOUT REGULATIONS 126
  • 12 REGIONAL ANALYSIS 127

    • 12.1 INTRODUCTION 128
    • 12.2 NORTH AMERICA 129
      • 12.2.1 NORTH AMERICA: COVID-19 IMPACT 129
      • 12.2.2 PESTLE ANALYSIS: NORTH AMERICA 129
      • 12.2.3 US 133
        • 12.2.3.1 Increasing use of LEO satellites in agriculture to drive the market 133
      • 12.2.4 CANADA 136
        • 12.2.4.1 Expansion of manufacturing facilities to drive the market 136
    • 12.3 EUROPE 138
      • 12.3.1 EUROPE: COVID-19 IMPACT 138
      • 12.3.2 PESTLE ANALYSIS: EUROPE 138
      • 12.3.3 UK 143
        • 12.3.3.1 Innovations in satellite technologies to drive the market 143
      • 12.3.4 GERMANY 145
        • 12.3.4.1 Increase in demand for CubeSats to drive the market 145
      • 12.3.5 RUSSIA 148
        • 12.3.5.1 Growing reliability on self-developed space systems to drive the market 148
      • 12.3.6 FINLAND 150
        • 12.3.6.1 Increasing partnerships among local companies to drive the market 150
      • 12.3.7 ITALY 152
        • 12.3.7.1 Demand for Earth observation and science missions to drive the market 152
      • 12.3.8 REST OF EUROPE 154
    • 12.4 ASIA PACIFIC 157
      • 12.4.1 ASIA PACIFIC: COVID-19 IMPACT 157
      • 12.4.2 PESTLE ANALYSIS: ASIA PACIFIC 157
      • 12.4.3 CHINA 162
        • 12.4.3.1 Dependence on self-made space technology to drive the market 162
      • 12.4.4 INDIA 164
        • 12.4.4.1 12.4.4.1 Upcoming space initiatives to drive the market 164
      • 12.4.5 JAPAN 166
        • 12.4.5.1 Involvement of private space companies in government space programs to drive the market 166
      • 12.4.6 SOUTH KOREA 169
        • 12.4.6.1 Increased government funding to drive the market 169
      • 12.4.7 AUSTRALIA 171
        • 12.4.7.1 Government encouragement to new manufacturers for opening new facilities to drive the market 171
      • 12.4.8 REST OF ASIA PACIFIC 174
    • 12.5 MIDDLE EAST & AFRICA 176
      • 12.5.1 MIDDLE EAST & AFRICA: COVID-19 IMPACT 177
      • 12.5.2 PESTLE ANALYSIS: MIDDLE EAST AND AFRICA 177
      • 12.5.3 SAUDI ARABIA 181
        • 12.5.3.1 Collaboration with universities for technological advancements in space systems to drive the market 181
      • 12.5.4 ISRAEL 184
        • 12.5.4.1 Increased private investments in space technology to drive the market 184
      • 12.5.5 UAE 186
        • 12.5.5.1 Advanced satellite systems required for border control to drive the market 186
      • 12.5.6 REST OF MIDDLE EAST AND AFRICA 188
    • 12.6 LATIN AMERICA 190
      • 12.6.1 LATIN AMERICA: COVID-19 IMPACT 190
      • 12.6.2 PESTLE ANALYSIS 191
      • 12.6.3 MEXICO 195
        • 12.6.3.1 Collaborative studies and CubeSat launch initiatives by universities to drive the market 195
      • 12.6.4 ARGENTINA 197
        • 12.6.4.1 Increasing need for improving space situational awareness to drive the market 197
      • 12.6.5 REST OF LATIN AMERICA 199
  • 13 COMPETITIVE LANDSCAPE 202

    • 13.1 INTRODUCTION 202
    • 13.2 COMPANY OVERVIEW 202
      • 13.2.1 KEY DEVELOPMENTS OF LEADING PLAYERS IN LEO SATELLITE MARKET (2019-2021) 202
    • 13.3 RANKING ANALYSIS OF KEY PLAYERS IN LEO SATELLITE MARKET 203
    • 13.4 MARKET SHARE OF KEY PLAYERS, 2020 204
    • 13.5 REVENUE ANALYSIS FOR KEY COMPANIES IN LEO SATELLITE MARKET 206
    • 13.6 COMPANY PRODUCT FOOTPRINT ANALYSIS 206
    • 13.7 COMPETITIVE EVALUATION QUADRANT 210
      • 13.7.1 STAR 210
      • 13.7.2 EMERGING LEADER 210
      • 13.7.3 PERVASIVE 210
      • 13.7.4 PARTICIPANT 210
    • 13.8 STARTUP/SME EVALUATION QUADRANT 212
      • 13.8.1 PROGRESSIVE COMPANY 212
      • 13.8.2 RESPONSIVE COMPANY 212
      • 13.8.3 STARTING BLOCK 212
      • 13.8.4 DYNAMIC COMPANY 212
    • 13.9 COMPETITIVE SCENARIO 214
      • 13.9.1 MARKET EVALUATION FRAMEWORK 214
      • 13.9.2 NEW PRODUCT LAUNCHED AND DEVELOPMENT 214
      • 13.9.3 CONTRACTS, PARTNERSHIPS, AND AGREEMENTS 215
      • 13.9.4 COLLABORATIONS AND EXPANSIONS 224
  • 14 COMPANY PROFILES 228

    • 14.1 INTRODUCTION 228
    • 14.2 KEY PLAYERS 229
      • 14.2.1 LOCKHEED MARTIN CORPORATION 229
      • 14.2.2 AIRBUS DEFENSE & SPACE 234
      • 14.2.3 L3HARRIS TECHNOLOGIES INC. 239
      • 14.2.4 NORTHROP GRUMMAN CORPORATION 243
      • 14.2.5 SPACE EXPLORATION TECHNOLOGIES CORP. (SPACEX) 248
      • 14.2.6 SIERRA NEVADA CORPORATION 251
      • 14.2.7 SURREY SATELLITE TECHNOLOGY LTD (SSTL) 253
      • 14.2.8 THALES GROUP 257
      • 14.2.9 GOMSPACE 260
      • 14.2.10 PLANET LABS INC 265
      • 14.2.11 RAYTHEON TECHNOLOGIES CORPORATION 269
      • 14.2.12 OHB SE 275
      • 14.2.13 MAXAR TECHNOLOGIES 278
      • 14.2.14 THE AEROSPACE CORPORATION 280
      • 14.2.15 MITSUBISHI ELECTRIC CORPORATION 282
      • 14.2.16 EXOLAUNCH GMBH 285
      • 14.2.17 PUMPKIN INC. 288
      • 14.2.18 BALL AEROSPACE & TECHNOLOGIES 289
      • 14.2.19 DAURIA AEROSPACE LTD. 291
      • 14.2.20 AAC CLYDE SPACE 292
      • 14.2.21 MILLENNIUM SPACE SYSTEM, INC 297
    • 14.3 STARTUPS/SMES 298
      • 14.3.1 ENDUROSAT 298
      • 14.3.2 SWARM TECHNOLOGIES 299
      • 14.3.3 NANOAVIONICS 300
      • 14.3.4 ALÉN SPACE 301
      • 14.3.5 NEARSPACE LAUNCH, INC. 302
      • 14.3.6 SPIRE GLOBAL, INC. 303
      • 14.3.7 EARTH-I, INC. 303
      • 14.3.8 TERRAN ORBITAL 304
      • 14.3.9 ALBA ORBITAL 305
      • 14.3.10 SATELLOGIC 306
  • 15 APPENDIX 307

    • 15.1 DISCUSSION GUIDE 307
    • 15.2 KNOWLEDGE STORE: MARKETSANDMARKETS’ SUBSCRIPTION PORTAL 310
    • 15.3 AVAILABLE CUSTOMIZATIONS 312
    • 15.4 RELATED REPORTS 312
    • 15.5 AUTHOR DETAILS 313

TABLE 1 KEY INFORMATION ON LEO CONSTELLATIONS TABLE 2 KEY INFORMATION ON SATELLITE AND TERRESTRIAL CONNECTIVITY TABLE 3 LEO SATELLITE MARKET ECOSYSTEM TABLE 4 AVERAGE SELLING PRICE TRENDS OF LEO SATELLITES, 2020 (USD) TABLE 5 GLOBAL LEO SATELLITE LAUNCH VOLUME, BY SATELLITE TYPE, 2018-2021 TABLE 6 LEO SATELLITE: PORTER’S FIVE FORCE ANALYSIS TABLE 7 STATE-OF-THE-ART LEO SATELLITE/CUBESAT TECHNOLOGIES TABLE 8 DIFFERENCE BETWEEN DISTRIBUTED AND CENTRALIZED EPS ARCHITECTURE TABLE 9 BATTERY TECHNOLOGIES TABLE 10 INNOVATIONS & PATENT REGISTRATIONS, 2020-2021 TABLE 11 LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 12 LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 13 LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 14 LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 15 LEO SATELLITE MARKET, BY SUBSYSTEM, 2018-2020 (USD MILLION) TABLE 16 LEO SATELLITE MARKET, BY SUBSYSTEM, 2021-2026 (USD MILLION) TABLE 17 SATELLITE BUS MARKET, BY SUBTYPE, 2018-2020 (USD MILLION) TABLE 18 SATELLITE BUS MARKET, BY SUBTYPE, 2021-2026 (USD MILLION) TABLE 19 PROPULSION SYSTEM MARKET, BY TYPE, 2018-2020 (USD MILLION) TABLE 20 PROPULSION SYSTEM MARKET, BY TYPE, 2021-2026 (USD MILLION) TABLE 21 PAYLOAD SYSTEM MARKET, BY TYPE, 2018-2020 (USD MILLION) TABLE 22 PAYLOAD SYSTEM MARKET, BY TYPE, 2021-2026 (USD MILLION) TABLE 23 TRADITIONAL PAYLOAD SYSTEM MARKET, BY TYPE TABLE 24 TRADITIONAL PAYLOAD SYSTEM, BY TYPE, 2021-2026 (USD MILLION) TABLE 25 LEO SATELLITE MARKET, BY APPLICATION, 2018-2020 (USD MILLION) TABLE 26 LEO SATELLITE MARKET, BY APPLICATION, 2021-2026 (USD MILLION) TABLE 27 LEO SATELLITE MARKET, BY END USER, 2018-2020 (USD MILLION) TABLE 28 LEO SATELLITE MARKET, BY END USER, 2021-2026 (USD MILLION) TABLE 29 LEO SATELLITE MARKET, BY COMMERCIAL END USER TABLE 30 LEO SATELLITE MARKET, BY COMMERCIAL END USER TABLE 31 LEO SATELLITE MARKET, BY GOVERNMENT AND MILITARY END USER TABLE 32 LEO SATELLITE MARKET, BY GOVERNMENT AND MILITARY END USE TABLE 33 SMALL SATELLITE MARKET, BY FREQUENCY, 2018-2020 (USD MILLION) TABLE 34 SMALL SATELLITE MARKET, BY FREQUENCY, 2021-2026 (USD MILLION) TABLE 35 LEO SATELLITE MARKET SIZE, BY REGION, 2018-2020 (USD MILLION) TABLE 36 LEO SATELLITE MARKET SIZE, BY REGION, 2021-2026 (USD MILLION) TABLE 37 NORTH AMERICA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 38 NORTH AMERICA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 39 NORTH AMERICA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 40 NORTH AMERICA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TYPE, 2021-2026 (USD MILLION) TABLE 41 NORTH AMERICA: LEO SATELLITE MARKET, BY END USER TABLE 42 NORTH AMERICA: LEO SATELLITE MARKET, BY END USER TABLE 43 NORTH AMERICA: LEO SATELLITE MARKET, BY COUNTRY TABLE 44 NORTH AMERICA: LEO SATELLITE MARKET, BY COUNTRY TABLE 45 US: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 46 US: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 47 US: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 48 US: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 49 US: LEO SATELLITE MARKET, BY END USER, 2018-2020 (USD MILLION) TABLE 50 US: LEO SATELLITE MARKET, BY END USER, 2021-2026 (USD MILLION) TABLE 51 CANADA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 52 CANADA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 53 CANADA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 54 CANADA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 55 CANADA: LEO SATELLITE MARKET, BY END USER, 2018-2020 (USD MILLION) TABLE 56 CANADA: LEO SATELLITE MARKET, BY END USER, 2021-2026 (USD MILLION) TABLE 57 EUROPE: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 58 EUROPE: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 59 EUROPE: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 60 EUROPE: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 61 EUROPE: LEO SATELLITE MARKET, BY END USER, 2018-2020 (USD MILLION) TABLE 62 EUROPE: LEO SATELLITE MARKET, BY END USER, 2021-2026 (USD MILLION) TABLE 63 EUROPE: LEO SATELLITE MARKET, BY COUNTRY, 2018-2020 (USD MILLION) TABLE 64 EUROPE: LEO SATELLITE MARKET, BY COUNTRY, 2021-2026 (USD MILLION) TABLE 65 UK: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 66 UK: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 67 UK: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 68 UK: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 69 UK: LEO SATELLITE MARKET, BY END USER, 2018-2020 (USD MILLION) TABLE 70 UK: LEO SATELLITE MARKET, BY END USER, 2021-2026 (USD MILLION) TABLE 71 GERMANY: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 72 GERMANY: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 73 GERMANY: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 74 GERMANY: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 75 GERMANY: LEO SATELLITE MARKET, BY END USER TABLE 76 GERMANY: LEO SATELLITE MARKET, BY END USER TABLE 77 RUSSIA: LEO SATELLITE MARKET SIZE, BY SATELLITE MASS TABLE 78 RUSSIA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 79 RUSSIA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 80 RUSSIA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 81 RUSSIA: LEO SATELLITE MARKET, BY END USER, 2018-2020 (USD MILLION) TABLE 82 RUSSIA: LEO SATELLITE MARKET, BY END USER, 2021-2026 (USD MILLION) TABLE 83 FINLAND: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 84 FINLAND: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 85 FINLAND: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 86 FINLAND: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 87 FINLAND: LEO SATELLITE MARKET, BY END USER TABLE 88 FINLAND: LEO SATELLITE MARKET, BY END USER TABLE 89 ITALY: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 90 ITALY: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 91 ITALY: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 92 ITALY: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 93 ITALY: LEO SATELLITE MARKET, BY END USER, 2018-2020 (USD MILLION) TABLE 94 ITALY: LEO SATELLITE MARKET, BY END USER, 2021-2026 (USD MILLION) TABLE 95 REST OF EUROPE: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 96 REST OF EUROPE: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 97 REST OF EUROPE: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 98 REST OF EUROPE: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 99 REST OF EUROPE: LEO SATELLITE MARKET, BY END USER TABLE 100 REST OF EUROPE: LEO SATELLITE MARKET, BY END USER TABLE 101 ASIA PACIFIC: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 102 ASIA PACIFIC: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 103 ASIA PACIFIC: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 104 ASIA PACIFIC: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 105 ASIA PACIFIC: LEO SATELLITE MARKET SIZE, BY END USER TABLE 106 ASIA PACIFIC: LEO SATELLITE MARKET SIZE, BY END USER TABLE 107 ASIA PACIFIC: LEO SATELLITE MARKET SIZE, BY COUNTRY TABLE 108 ASIA PACIFIC: LEO SATELLITE MARKET SIZE, BY COUNTRY TABLE 109 CHINA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 110 CHINA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 111 CHINA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 112 CHINA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 113 CHINA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 114 CHINA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 115 INDIA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 116 INDIA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 117 INDIA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 118 INDIA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 119 INDIA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 120 INDIA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 121 JAPAN: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 122 JAPAN: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 123 JAPAN: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 124 JAPAN: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 125 JAPAN: LEO SATELLITE MARKET SIZE, BY END USER TABLE 126 JAPAN: LEO SATELLITE MARKET SIZE, BY END USER TABLE 127 SOUTH KOREA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 128 SOUTH KOREA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 129 SOUTH KOREA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 130 SOUTH KOREA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 131 SOUTH KOREA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 132 SOUTH KOREA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 133 AUSTRALIA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 134 AUSTRALIA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 135 AUSTRALIA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 136 AUSTRALIA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 137 AUSTRALIA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 138 AUSTRALIA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 139 REST OF ASIA PACIFIC: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE, 2018-2020 (USD MILLION) TABLE 140 REST OF ASIA PACIFIC: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE, 2021-2026 (USD MILLION) TABLE 141 REST OF ASIA PACIFIC: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE, 2018-2020 (USD MILLION) TABLE 142 REST OF ASIA PACIFIC: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE, 2021-2026 (USD MILLION) TABLE 143 REST OF ASIA PACIFIC: LEO SATELLITE MARKET SIZE, BY END USER TABLE 144 REST OF ASIA PACIFIC: LEO SATELLITE MARKET SIZE, BY END USER TABLE 145 MIDDLE EAST & AFRICA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE, 2018-2020 (USD MILLION) TABLE 146 MIDDLE EAST & AFRICA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE, 2021-2026 (USD MILLION) TABLE 147 MIDDLE EAST & AFRICA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE, 2018-2020 (USD MILLION) TABLE 148 MIDDLE EAST & AFRICA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE, 2021-2026 (USD MILLION) TABLE 149 MIDDLE EAST & AFRICA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 150 MIDDLE EAST & AFRICA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 151 MIDDLE EAST & AFRICA: LEO SATELLITE MARKET SIZE, BY COUNTRY TABLE 152 MIDDLE EAST & AFRICA: LEO SATELLITE MARKET SIZE, BY COUNTRY TABLE 153 SAUDI ARABIA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 154 SAUDI ARABIA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 155 SAUDI ARABIA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 156 SAUDI ARABIA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 157 SAUDI ARABIA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 158 SAUDI ARABIA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 159 ISRAEL: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 160 ISRAEL: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 161 ISRAEL: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 162 ISRAEL: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 163 ISRAEL: LEO SATELLITE MARKET SIZE, BY END USER TABLE 164 ISRAEL: LEO SATELLITE MARKET SIZE, BY END USER TABLE 165 UAE: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 166 UAE: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 167 UAE: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 168 UAE: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 169 UAE: LEO SATELLITE MARKET SIZE, BY END USER TABLE 170 UAE: LEO SATELLITE MARKET SIZE, BY END USER TABLE 171 REST OF MIDDLE EAST AND AFRICA: LEO SATELLITE MARKET SIZE TABLE 172 REST OF MIDDLE EAST AND AFRICA: LEO SATELLITE MARKET SIZE TABLE 173 REST OF MIDDLE EAST AND AFRICA: LEO SATELLITE MARKET SIZE TABLE 174 REST OF MIDDLE EAST AND AFRICA: LEO SATELLITE MARKET SIZE TABLE 175 REST OF MIDDLE EAST AND AFRICA: LEO SATELLITE MARKET SIZE TABLE 176 REST OF MIDDLE EAST AND AFRICA: LEO SATELLITE MARKET SIZE TABLE 177 LATIN AMERICA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 178 LATIN AMERICA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 179 LATIN AMERICA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 180 LATIN AMERICA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 181 LATIN AMERICA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 182 LATIN AMERICA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 183 LATIN AMERICA: LEO SATELLITE MARKET SIZE, BY COUNTRY TABLE 184 LATIN AMERICA: LEO SATELLITE MARKET SIZE, BY COUNTRY TABLE 185 MEXICO: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 186 MEXICO: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 187 MEXICO: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 188 MEXICO: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 189 MEXICO: LEO SATELLITE MARKET SIZE, BY END USER TABLE 190 MEXICO: LEO SATELLITE MARKET SIZE, BY END USER TABLE 191 ARGENTINA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 192 ARGENTINA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE TABLE 193 ARGENTINA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 194 ARGENTINA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE TABLE 195 ARGENTINA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 196 ARGENTINA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 197 REST OF LATIN AMERICA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE, 2018-2020 (USD MILLION) TABLE 198 REST OF LATIN AMERICA: LEO SATELLITE MARKET SIZE, BY SATELLITE TYPE, 2021-2026 (USD MILLION) TABLE 199 REST OF LATIN AMERICA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE, 2018-2020 (USD MILLION) TABLE 200 REST OF LATIN AMERICA: LEO SATELLITE MARKET SIZE, BY SMALL SATELLITE, 2021-2026 (USD MILLION) TABLE 201 REST OF LATIN AMERICA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 202 REST OF LATIN AMERICA: LEO SATELLITE MARKET SIZE, BY END USER TABLE 203 COMPANY PRODUCT FOOTPRINT TABLE 204 COMPANY SUBSYSTEMS FOOTPRINT TABLE 205 COMPANY WEIGHT FOOTPRINT TABLE 207 NEW PRODUCT LAUNCHES, JANUARY 2019-DECEMBER 2021 TABLE 208 CONTRACTS, PARTNERSHIPS, AND AGREEMENTS, JANUARY 2019-DECEMBER 2021 TABLE 209 EXPANSION AND COLLABORATION, JANUARY 2019-DECEMBER 2021 TABLE 210 LOCKHEED MARTIN CORPORATION: BUSINESS OVERVIEW TABLE 211 LOCKHEED MARTIN CORPORATION: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 212 LOCKHEED MARTIN CORPORATION: DEALS TABLE 213 AIRBUS DEFENCE AND SPACE: BUSINESS OVERVIEW TABLE 214 AIRBUS DEFENCE AND SPACE: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 215 AIRBUS DEFENCE AND SPACE: DEALS TABLE 216 L3HARRIS TECHNOLOGIES INC: BUSINESS OVERVIEW TABLE 217 L3HARRIS TECHNOLOGIES INC: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 218 L3HARRIS TECHNOLOGIES: DEALS TABLE 219 L3HARRIS TECHNOLOGIES: OTHERS TABLE 220 NORTHROP GRUMMAN CORPORATION: BUSINESS OVERVIEW TABLE 221 NORTHROP GRUMMAN CORPORATION: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 222 NORTHROP GRUMMAN CORPORATION: DEALS TABLE 223 SPACEX: BUSINESS OVERVIEW TABLE 224 SPACEX: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 225 SPACEX: DEALS TABLE 226 SPACEX: OTHERS TABLE 227 SIERRA NEVADA CORPORATION: BUSINESS OVERVIEW TABLE 228 SIERRA NEVADA CORPORATION: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 229 SIERRA NEVADA CORPORATION: DEALS TABLE 230 SURREY SATELLITE TECHNOLOGY LTD: BUSINESS OVERVIEW TABLE 231 SURREY SATELLITE TECHNOLOGY LTD: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 232 SURREY SATELLITE TECHNOLOGY LTD.: DEALS TABLE 233 SURREY SATELLITE TECHNOLOGY LTD.: OTHERS TABLE 234 THALES GROUP: BUSINESS OVERVIEW TABLE 235 THALES GROUP: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 236 THALES GROUP: DEALS TABLE 237 GOMSPACE: BUSINESS OVERVIEW TABLE 238 GOMSPACE: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 239 GOMSPACE: DEALS TABLE 240 PLANET LAB INC: BUSINESS OVERVIEW TABLE 241 PLANET LAB INC: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 242 PLANET LAB INC.: DEALS TABLE 243 PLANET LAB INC.: OTHERS TABLE 244 RAYTHEON TECHNOLOGIES CORPORATION: BUSINESS OVERVIEW TABLE 245 RAYTHEON TECHNOLOGIES CORPORATION: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 246 RAYTHEON TECHNOLOGIES CORPORATION: DEALS TABLE 247 RAYTHEON TECHNOLOGIES CORPORATION.: OTHERS TABLE 248 OHB SE: BUSINESS OVERVIEW TABLE 249 OHB SE: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 250 OHB SE: DEALS TABLE 251 OHB SE: OTHERS TABLE 252 MAXAR TECHNOLOGIES: BUSINESS OVERVIEW TABLE 253 MAXAR TECHNOLOGIES: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 254 THE AEROSPACE CORPORATION: BUSINESS OVERVIEW TABLE 255 THE AEROSPACE CORPORATION: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 256 THE AEROSPACE CORPORATION: DEALS TABLE 257 THE AEROSPACE CORPORATION: OTHERS TABLE 258 MITSUBISHI ELECTRIC CORPORATION: BUSINESS OVERVIEW TABLE 259 MITSUBISHI ELECTRIC CORPORATION: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 260 MITSUBISHI ELECTRIC CORPORATION: DEALS TABLE 261 MITSUBISHI ELECTRIC CORPORATION: OTHERS TABLE 262 EXOLAUNCH GMBH: BUSINESS OVERVIEW TABLE 263 EXOLAUNCH GMBH: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 264 EXOLAUNCH GMBH: DEALS TABLE 265 EXOLAUNCH GMBH: OTHERS TABLE 266 PUMPKIN INC.: BUSINESS OVERVIEW TABLE 267 PUMPKIN INC.: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 268 BALL AEROSPACE & TECHNOLOGIES: BUSINESS OVERVIEW TABLE 269 BALL AEROSPACE & TECHNOLOGIES.: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 270 BALL AEROSPACE & TECHNOLOGIES CORPORATION: OTHERS TABLE 271 DAURIA AEROSPACE LTD.: BUSINESS OVERVIEW TABLE 272 DAURIA AEROSPACE LTD.: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 273 AAC CLYDE SPACE: BUSINESS OVERVIEW TABLE 274 AAC CLYDE SPACE: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 275 AAC CLYDE SPACE: DEALS TABLE 276 AAC CLYDE SPACE: OTHERS TABLE 277 MILLENNIUM SPACE SYSTEM, INC.: BUSINESS OVERVIEW TABLE 278 MILLENNIUM SPACE SYSTEM, INC: PRODUCT/SOLUTIONS/SERVICES OFFERED TABLE 279 MILLENNIUM SPACE SYSTEMS, INC.: OTHERS TABLE 280 ENDUROSAT: BUSINESS OVERVIEW TABLE 281 SWARM TECHNOLOGIES: BUSINESS OVERVIEW TABLE 282 NANOAVIONICS: BUSINESS OVERVIEW TABLE 283 ALÉN SPACE: BUSINESS OVERVIEW TABLE 284 NEARSPACE LAUNCH INC.: BUSINESS OVERVIEW TABLE 285 SPIRE GLOBAL, INC.: BUSINESS OVERVIEW TABLE 286 EARTH-I: BUSINESS OVERVIEW TABLE 287 TERRAN ORBITAL: BUSINESS OVERVIEW TABLE 288 ALBA ORBITAL: BUSINESS OVERVIEW TABLE 289 SATELLOGIC: BUSINESS OVERVIEW

FIGURE 1 LEO SATELLITE MARKET SEGMENTATION FIGURE 2 RESEARCH PROCESS FLOW FIGURE 3 RESEARCH DESIGN FIGURE 4 MARKET SIZE ESTIMATION METHODOLOGY: BOTTOM-UP APPROACH FIGURE 5 MARKET SIZE ESTIMATION METHODOLOGY: TOP-DOWN APPROACH FIGURE 6 DATA TRIANGULATION FIGURE 7 SMALL SATELLITE SEGMENT PROJECTED TO LEAD MARKET FIGURE 8 SATELLITE BUS SEGMENT PROJECTED TO LEAD MARKET FIGURE 9 LASER/OPTICAL SEGMENT PROJECTED TO GROW AT HIGHEST CAGR DURING FORECAST PERIOD FIGURE 10 COMMERCIAL SEGMENT PROJECTED TO LEAD DURING FORECAST PERIOD FIGURE 11 COMMUNICATION SEGMENT PROJECTED TO LEAD DURING FORECAST PERIOD FIGURE 12 NORTH AMERICA ACCOUNTED FOR LARGEST MARKET SHARE IN 2021 FIGURE 13 INCREASED USE OF LEO SATELLITES FOR TRACKING, MONITORING, AND SURVEILLANCE TO DRIVE THE MARKET FIGURE 14 COMMUNICATION SEGMENT PROJECTED TO LEAD DURING FORECAST PERIOD FIGURE 15 SMALL SATELLITE SEGMENT PROJECTED TO LEAD DURING FORECAST PERIOD FIGURE 16 LASER/OPTICAL SEGMENT PROJECTED TO GROW AT HIGHEST CAGR DURING FORECAST PERIOD FIGURE 17 COMMERCIAL SEGMENT PROJECTED TO LEAD DURING FORECAST PERIOD FIGURE 18 MEXICO PROJECTED TO GROW AT HIGHEST CAGR DURING FORECAST PERIOD FIGURE 19 DRIVERS, RESTRAINTS, OPPORTUNITIES, AND CHALLENGES FOR LEO SATELLITE MARKET FIGURE 20 COVID-19 IMPACT ON LEO SATELLITE MARKET FIGURE 21 COVID-19 IMPACT ON SUPPLY AND DEMAND SIDES OF LEO SATELLITE MARKET FIGURE 22 PESSIMISTIC, REALISTIC, AND OPTIMISTIC SCENARIOS OF LEO SATELLITE MARKET WITH REGARDS TO COVID-19 PANDEMIC FIGURE 23 VALUE CHAIN ANALYSIS FIGURE 24 MARKET ECOSYSTEM MAP: LEO SATELLITE MARKET FIGURE 25 SMALL SATELLITE SEGMENT PROJECTED TO LEAD MARKET DURING FORECAST PERIOD FIGURE 27 COMMUNICATION SEGMENT PROJECTED TO LEAD MARKET DURING FORECAST PERIOD FIGURE 28 COMMERCIAL SEGMENT PROJECTED TO LEAD DURING FORECAST PERIOD FIGURE 29 KU-BAND SEGMENT PROJECTED TO LEAD MARKET DURING FORECAST PERIOD FIGURE 30 NORTH AMERICA: LEO SATELLITE MARKET SNAPSHOT FIGURE 31 EUROPE LEO SATELLITE MARKET SNAPSHOT FIGURE 32 ASIA PACIFIC: LEO SATELLITE MARKET SNAPSHOT FIGURE 33 MIDDLE EAST AND AFRICA: LEO SATELLITE MARKET SNAPSHOT FIGURE 34 LATIN AMERICA: LEO SATELLITE MARKET SNAPSHOT FIGURE 35 RANKING OF KEY PLAYERS IN LEO SATELLITE MARKET, 2020 FIGURE 36 MARKET COMPETITIVE LEADERSHIP MAPPING, 2020 FIGURE 37 LEO SATELLITE MARKET (STARTUP/SME) COMPETITIVE LEADERSHIP MAPPING, 2020 FIGURE 38 LOCKHEED MARTIN CORPORATION: COMPANY SNAPSHOT FIGURE 39 AIRBUS DEFENCE AND SPACE: COMPANY SNAPSHOT FIGURE 40 L3HARRIS TECHNOLOGIES INC.: COMPANY SNAPSHOT FIGURE 41 NORTHROP GRUMMAN CORPORATION: COMPANY SNAPSHOT FIGURE 42 THALES GROUP: COMPANY SNAPSHOT FIGURE 43 GOMSPACE: COMPANY SNAPSHOT FIGURE 44 PLANET LAB INC: COMPANY SNAPSHOT FIGURE 45 RAYTHEON TECHNOLOGIES CORPORATION: COMPANY SNAPSHOT FIGURE 46 OHB SE: COMPANY SNAPSHOT FIGURE 47 MAXAR TECHNOLOGIES: COMPANY SNAPSHOT FIGURE 48 MITSUBISHI ELECTRIC CORPORATION: COMPANY SNAPSHOT FIGURE 49 BALL AEROSPACE AND TECHNOLOGIES: COMPANY SNAPSHOT FIGURE 50 AAC CLYDE SPACE: COMPANY SNAPSHOT

価格:USD 4,950
734,679もしくは部分購入
適用レート
1 USD = 148.42
※稀に出版元により価格が改定されている場合がございます。
contact
© 2023 ShareFair Inc.