▶ 調査レポート

航空用光電子のグローバル市場(~2027):対抗システム、ナビゲーション&案内システム、偵察システム、捜索&追跡システム、監視システム

• 英文タイトル:Airborne Optronics Market Research Report by System, Technology, Aircraft Type, Application, End Use, Region - Global Forecast to 2027 - Cumulative Impact of COVID-19

Airborne Optronics Market Research Report by System, Technology, Aircraft Type, Application, End Use, Region - Global Forecast to 2027 - Cumulative Impact of COVID-19「航空用光電子のグローバル市場(~2027):対抗システム、ナビゲーション&案内システム、偵察システム、捜索&追跡システム、監視システム」(市場規模、市場予測)調査レポートです。• レポートコード:MRC2304A097
• 出版社/出版日:360iResearch / 2022年10月
• レポート形態:英語、PDF、259ページ
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• 産業分類:航空
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レポート概要
360iResearch社の当調査レポートでは、2021年に1,561.58百万ドルであった世界の航空用光電子市場規模が2022年に1,767.23百万ドルへと拡大、更に2027年までにCAGR 13.34%で成長して3,311.42百万ドルに達すると予測しています。当書は、航空用光電子の世界市場を総合的に分析し、序論、調査方法、エグゼクティブサマリー、市場概要、市場インサイト、システム別分析(対抗システム、ナビゲーション&案内システム、偵察システム、捜索&追跡システム、監視システム)、技術別分析(ハイパースペクトル、マルチスペクトル)、航空機種類別分析(固定翼、回転翼、無人航空機、アーバンエアモビリティ)、用途別分析(商業、軍事、宇宙)、地域別分析(南北アメリカ、アメリカ、カナダ、ブラジル、アジア太平洋、日本、中国、インド、韓国、台湾、ヨーロッパ/中東/アフリカ、イギリス、ドイツ、フランス、ロシア、その他)、競争状況、企業情報などの構成でまとめています。なお、当書には、Aselsan、Bae Systems plc、Collins Aerospace、Cubert GmbH、Elbit Systems Ltd.、Excelitas Technologies Corporation、Flir Systems, Inc.、Headwall Photonics, Inc.、Hensoldt Ag、Ii-Vi, Inc.、Intevac, Inc.、Israel Aerospace Industries、Kappa Optronics GmbHなどの企業情報が含まれています。

・序論
・調査方法
・エグゼクティブサマリー
・市場概要
・市場インサイト
・世界の航空用光電子市場規模:システム別
- 対抗システムの市場規模
- ナビゲーション&案内システムの市場規模
- 偵察システムの市場規模
- 捜索&追跡システムの市場規模
- 監視システムの市場規模
・世界の航空用光電子市場規模:技術別
- ハイパースペクトルの市場規模
- マルチスペクトルの市場規模
・世界の航空用光電子市場規模:航空機種類別
- 固定翼における市場規模
- 回転翼における市場規模
- 無人航空機における市場規模
- アーバンエアモビリティにおける市場規模
・世界の航空用光電子市場規模:用途別
- 商業における市場規模
- 軍事における市場規模
- 宇宙における市場規模
・世界の航空用光電子市場規模:地域別
- 南北アメリカの航空用光電子市場規模
アメリカの航空用光電子市場規模
カナダの航空用光電子市場規模
ブラジルの航空用光電子市場規模
...
- アジア太平洋の航空用光電子市場規模
日本の航空用光電子市場規模
中国の航空用光電子市場規模
インドの航空用光電子市場規模
韓国の航空用光電子市場規模
台湾の航空用光電子市場規模
...
- ヨーロッパ/中東/アフリカの航空用光電子市場規模
イギリスの航空用光電子市場規模
ドイツの航空用光電子市場規模
フランスの航空用光電子市場規模
ロシアの航空用光電子市場規模
...
- その他地域の航空用光電子市場規模
・競争状況
・企業情報

The Global Airborne Optronics Market size was estimated at USD 1,561.58 million in 2021 and expected to reach USD 1,767.23 million in 2022, and is projected to grow at a CAGR 13.34% to reach USD 3,311.42 million by 2027.

Market Statistics:
The report provides market sizing and forecast across 7 major currencies – USD, EUR, JPY, GBP, AUD, CAD, and CHF. It helps organization leaders make better decisions when currency exchange data is readily available. In this report, the years 2018 and 2020 are considered as historical years, 2021 as the base year, 2022 as the estimated year, and years from 2023 to 2027 are considered as the forecast period.

Market Segmentation & Coverage:
This research report categorizes the Airborne Optronics to forecast the revenues and analyze the trends in each of the following sub-markets:

Based on System, the market was studied across Countermeasure System, Navigation and Guidance System, Reconnaissance System, Search and Track System, Special Mission System, Surveillance System, Targeting System, and Warning/Detection System.

Based on Technology, the market was studied across Hyperspectral and Multispectral.

Based on Aircraft Type, the market was studied across Fixed Wing, Rotary Wing, Unmanned Aerial Vehicles, and Urban Air Mobility.

Based on Application, the market was studied across Commercial, Military, and Space.

Based on End Use, the market was studied across Aftermarket and Original Equipment Manufacturer.

Based on Region, the market was studied across Americas, Asia-Pacific, and Europe, Middle East & Africa. The Americas is further studied across Argentina, Brazil, Canada, Mexico, and United States. The United States is further studied across California, Florida, Illinois, New York, Ohio, Pennsylvania, and Texas. The Asia-Pacific is further studied across Australia, China, India, Indonesia, Japan, Malaysia, Philippines, Singapore, South Korea, Taiwan, Thailand, and Vietnam. The Europe, Middle East & Africa is further studied across Denmark, Egypt, Finland, France, Germany, Israel, Italy, Netherlands, Nigeria, Norway, Poland, Qatar, Russia, Saudi Arabia, South Africa, Spain, Sweden, Switzerland, Turkey, United Arab Emirates, and United Kingdom.

Cumulative Impact of COVID-19:
COVID-19 is an incomparable global public health emergency that has affected almost every industry, and the long-term effects are projected to impact the industry growth during the forecast period. Our ongoing research amplifies our research framework to ensure the inclusion of underlying COVID-19 issues and potential paths forward. The report delivers insights on COVID-19 considering the changes in consumer behavior and demand, purchasing patterns, re-routing of the supply chain, dynamics of current market forces, and the significant interventions of governments. The updated study provides insights, analysis, estimations, and forecasts, considering the COVID-19 impact on the market.

Cumulative Impact of 2022 Russia Ukraine Conflict:
We continuously monitor and update reports on political and economic uncertainty due to the Russian invasion of Ukraine. Negative impacts are significantly foreseen globally, especially across Eastern Europe, European Union, Eastern & Central Asia, and the United States. This contention has severely affected lives and livelihoods and represents far-reaching disruptions in trade dynamics. The potential effects of ongoing war and uncertainty in Eastern Europe are expected to have an adverse impact on the world economy, with especially long-term harsh effects on Russia.This report uncovers the impact of demand & supply, pricing variants, strategic uptake of vendors, and recommendations for Airborne Optronics market considering the current update on the conflict and its global response.

Competitive Strategic Window:
The Competitive Strategic Window analyses the competitive landscape in terms of markets, applications, and geographies to help the vendor define an alignment or fit between their capabilities and opportunities for future growth prospects. It describes the optimal or favorable fit for the vendors to adopt successive merger and acquisition strategies, geography expansion, research & development, and new product introduction strategies to execute further business expansion and growth during a forecast period.

FPNV Positioning Matrix:
The FPNV Positioning Matrix evaluates and categorizes the vendors in the Airborne Optronics Market based on Business Strategy (Business Growth, Industry Coverage, Financial Viability, and Channel Support) and Product Satisfaction (Value for Money, Ease of Use, Product Features, and Customer Support) that aids businesses in better decision making and understanding the competitive landscape.

Market Share Analysis:
The Market Share Analysis offers the analysis of vendors considering their contribution to the overall market. It provides the idea of its revenue generation into the overall market compared to other vendors in the space. It provides insights into how vendors are performing in terms of revenue generation and customer base compared to others. Knowing market share offers an idea of the size and competitiveness of the vendors for the base year. It reveals the market characteristics in terms of accumulation, fragmentation, dominance, and amalgamation traits.

Competitive Scenario:
The Competitive Scenario provides an outlook analysis of the various business growth strategies adopted by the vendors. The news covered in this section deliver valuable thoughts at the different stage while keeping up-to-date with the business and engage stakeholders in the economic debate. The competitive scenario represents press releases or news of the companies categorized into Merger & Acquisition, Agreement, Collaboration, & Partnership, New Product Launch & Enhancement, Investment & Funding, and Award, Recognition, & Expansion. All the news collected help vendor to understand the gaps in the marketplace and competitor’s strength and weakness thereby, providing insights to enhance product and service.

Company Usability Profiles:
The report profoundly explores the recent significant developments by the leading vendors and innovation profiles in the Global Airborne Optronics Market, including Aselsan, Bae Systems plc, Collins Aerospace, Cubert GmbH, Elbit Systems Ltd., Excelitas Technologies Corporation, Flir Systems, Inc., Headwall Photonics, Inc., Hensoldt Ag, Ii-Vi, Inc., Intevac, Inc., Israel Aerospace Industries, Kappa Optronics GmbH, L3Harris Technologies Inc., Leidos Holdings, Inc., Leonardo Spa, Lockheed Martin Corporation, Northrop Grumman Corporation, Osi Optoelectronics, Inc., Rafael Advanced Defense Systems Ltd., Resonon Inc., Safran, Stark Aerospace, Inc., Thales Sa, and Ximea GmbH.

The report provides insights on the following pointers:
1. Market Penetration: Provides comprehensive information on the market offered by the key players
2. Market Development: Provides in-depth information about lucrative emerging markets and analyze penetration across mature segments of the markets
3. Market Diversification: Provides detailed information about new product launches, untapped geographies, recent developments, and investments
4. Competitive Assessment & Intelligence: Provides an exhaustive assessment of market shares, strategies, products, certification, regulatory approvals, patent landscape, and manufacturing capabilities of the leading players
5. Product Development & Innovation: Provides intelligent insights on future technologies, R&D activities, and breakthrough product developments

The report answers questions such as:
1. What is the market size and forecast of the Global Airborne Optronics Market?
2. What are the inhibiting factors and impact of COVID-19 shaping the Global Airborne Optronics Market during the forecast period?
3. Which are the products/segments/applications/areas to invest in over the forecast period in the Global Airborne Optronics Market?
4. What is the competitive strategic window for opportunities in the Global Airborne Optronics Market?
5. What are the technology trends and regulatory frameworks in the Global Airborne Optronics Market?
6. What is the market share of the leading vendors in the Global Airborne Optronics Market?
7. What modes and strategic moves are considered suitable for entering the Global Airborne Optronics Market?

レポート目次

1. Preface
1.1. Objectives of the Study
1.2. Market Segmentation & Coverage
1.3. Years Considered for the Study
1.4. Currency & Pricing
1.5. Language
1.6. Limitations
1.7. Assumptions
1.8. Stakeholders

2. Research Methodology
2.1. Define: Research Objective
2.2. Determine: Research Design
2.3. Prepare: Research Instrument
2.4. Collect: Data Source
2.5. Analyze: Data Interpretation
2.6. Formulate: Data Verification
2.7. Publish: Research Report
2.8. Repeat: Report Update

3. Executive Summary

4. Market Overview

5. Market Insights
5.1. Market Dynamics
5.1.1. Drivers
5.1.1.1. Increasing fleet of commercial and combat aircraft
5.1.1.2. Rising deployment in unmanned vehicles
5.1.1.3. Improvement of the airborne optronic sensor performance predictor
5.1.1.4. Growing defense budgets and expansion of military air fleet
5.1.2. Restraints
5.1.2.1. Incapability in extreme weather conditions
5.1.3. Opportunities
5.1.3.1. Innovations in the field of airborne remote sensing
5.1.3.2. Emergence of new and advanced modes of transportation and urban air mobility platforms
5.1.3.3. Rapid growth of the technologically advanced optronics
5.1.4. Challenges
5.1.4.1. Rising risk of the cross border infiltration and terrorism
5.2. Cumulative Impact of COVID-19

6. Airborne Optronics Market, by System
6.1. Introduction
6.2. Countermeasure System
6.3. Navigation and Guidance System
6.4. Reconnaissance System
6.5. Search and Track System
6.6. Special Mission System
6.7. Surveillance System
6.8. Targeting System
6.9. Warning/Detection System

7. Airborne Optronics Market, by Technology
7.1. Introduction
7.2. Hyperspectral
7.3. Multispectral

8. Airborne Optronics Market, by Aircraft Type
8.1. Introduction
8.2. Fixed Wing
8.3. Rotary Wing
8.4. Unmanned Aerial Vehicles
8.5. Urban Air Mobility

9. Airborne Optronics Market, by Application
9.1. Introduction
9.2. Commercial
9.3. Military
9.4. Space

10. Airborne Optronics Market, by End Use
10.1. Introduction
10.2. Aftermarket
10.3. Original Equipment Manufacturer

11. Americas Airborne Optronics Market
11.1. Introduction
11.2. Argentina
11.3. Brazil
11.4. Canada
11.5. Mexico
11.6. United States

12. Asia-Pacific Airborne Optronics Market
12.1. Introduction
12.2. Australia
12.3. China
12.4. India
12.5. Indonesia
12.6. Japan
12.7. Malaysia
12.8. Philippines
12.9. Singapore
12.10. South Korea
12.11. Taiwan
12.12. Thailand
12.13. Vietnam

13. Europe, Middle East & Africa Airborne Optronics Market
13.1. Introduction
13.2. Denmark
13.3. Egypt
13.4. Finland
13.5. France
13.6. Germany
13.7. Israel
13.8. Italy
13.9. Netherlands
13.10. Nigeria
13.11. Norway
13.12. Poland
13.13. Qatar
13.14. Russia
13.15. Saudi Arabia
13.16. South Africa
13.17. Spain
13.18. Sweden
13.19. Switzerland
13.20. Turkey
13.21. United Arab Emirates
13.22. United Kingdom

14. Competitive Landscape
14.1. FPNV Positioning Matrix
14.1.1. Quadrants
14.1.2. Business Strategy
14.1.3. Product Satisfaction
14.2. Market Ranking Analysis, By Key Player
14.3. Market Share Analysis, By Key Player
14.4. Competitive Scenario
14.4.1. Merger & Acquisition
14.4.2. Agreement, Collaboration, & Partnership
14.4.3. New Product Launch & Enhancement
14.4.4. Investment & Funding
14.4.5. Award, Recognition, & Expansion

15. Company Usability Profiles
15.1. Aselsan
15.1.1. Business Overview
15.1.2. Key Executives
15.1.3. Product & Services
15.2. Bae Systems plc
15.2.1. Business Overview
15.2.2. Key Executives
15.2.3. Product & Services
15.3. Collins Aerospace
15.3.1. Business Overview
15.3.2. Key Executives
15.3.3. Product & Services
15.4. Cubert GmbH
15.4.1. Business Overview
15.4.2. Key Executives
15.4.3. Product & Services
15.5. Elbit Systems Ltd.
15.5.1. Business Overview
15.5.2. Key Executives
15.5.3. Product & Services
15.6. Excelitas Technologies Corporation
15.6.1. Business Overview
15.6.2. Key Executives
15.6.3. Product & Services
15.7. Flir Systems, Inc.
15.7.1. Business Overview
15.7.2. Key Executives
15.7.3. Product & Services
15.8. Headwall Photonics, Inc.
15.8.1. Business Overview
15.8.2. Key Executives
15.8.3. Product & Services
15.9. Hensoldt Ag
15.9.1. Business Overview
15.9.2. Key Executives
15.9.3. Product & Services
15.10. Ii-Vi, Inc.
15.10.1. Business Overview
15.10.2. Key Executives
15.10.3. Product & Services
15.11. Intevac, Inc.
15.11.1. Business Overview
15.11.2. Key Executives
15.11.3. Product & Services
15.12. Israel Aerospace Industries
15.12.1. Business Overview
15.12.2. Key Executives
15.12.3. Product & Services
15.13. Kappa Optronics GmbH
15.13.1. Business Overview
15.13.2. Key Executives
15.13.3. Product & Services
15.14. L3Harris Technologies Inc.
15.14.1. Business Overview
15.14.2. Key Executives
15.14.3. Product & Services
15.15. Leidos Holdings, Inc.
15.15.1. Business Overview
15.15.2. Key Executives
15.15.3. Product & Services
15.16. Leonardo Spa
15.16.1. Business Overview
15.16.2. Key Executives
15.16.3. Product & Services
15.17. Lockheed Martin Corporation
15.17.1. Business Overview
15.17.2. Key Executives
15.17.3. Product & Services
15.18. Northrop Grumman Corporation
15.18.1. Business Overview
15.18.2. Key Executives
15.18.3. Product & Services
15.19. Osi Optoelectronics, Inc.
15.19.1. Business Overview
15.19.2. Key Executives
15.19.3. Product & Services
15.20. Rafael Advanced Defense Systems Ltd.
15.20.1. Business Overview
15.20.2. Key Executives
15.20.3. Product & Services
15.21. Resonon Inc.
15.21.1. Business Overview
15.21.2. Key Executives
15.21.3. Product & Services
15.22. Safran
15.22.1. Business Overview
15.22.2. Key Executives
15.22.3. Product & Services
15.23. Stark Aerospace, Inc.
15.23.1. Business Overview
15.23.2. Key Executives
15.23.3. Product & Services
15.24. Thales Sa
15.24.1. Business Overview
15.24.2. Key Executives
15.24.3. Product & Services
15.25. Ximea GmbH
15.25.1. Business Overview
15.25.2. Key Executives
15.25.3. Product & Services

16. Appendix
16.1. Discussion Guide
16.2. License & Pricing