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AEROSPACE & DEFENCE

Global Airborne ISR Market - Industry Trends and Forecast to 2032

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​REPORT OVERVIEW

Global Airborne ISR Market, By System Type (Manned Airborne ISR System, Unmanned Airborne ISR System), Operation (Intelligence, Surveillance, Reconnaissance), System (Airborne Early Warning and Control, Signals Intelligence, Maritime Patrol, Airborne Ground Surveillance, Electronic Warfare, Others), Application (Law Enforcement, Surveillance & Reconnaissance, Search & Rescue, Delivery & Logistics, Engineering, Surveying and Mapping, Others), Solution (Systems, Services, Software), Platform (Propulsion System, Military aircraft, Military helicopters, Unmanned systems), End-Use (Defense, Homeland security), Fuel Type (Hydrogen fuel cells, Solar powered, Battery operated, Alternate fuel, Gas electric hybrid), Region (North America, Europe, Asia-Pacific, South America, Middle East and Africa) – Industry Trends and Forecast to 2032.

Market Insights
The global Airborne ISR market size is valued to be USD 14.47 billion in 2023 and is expected to reach USD 24.54 billion by 2032, and it is expected to register a CAGR of 5.6% over the forecast period 2024-2032.

Airborne ISR stands for Airborne Intelligence, Surveillance, and Reconnaissance. It refers to the use of aircraft to gather information, monitor activities, and conduct reconnaissance missions.
Market Dynamics
DRIVERS
  • A rise in the purchase of airborne ISR systems as a result of increased regional and transnational stability
  • Growing demand of airborne surveillance, weather monitoring for commercial aircraft and battlefield surveillance
RESTRAINTS
  • High development and maintenance cost
  • High amount of time required for developing and deploying the systems
OPPORTUNITIES
  • Technological advancement is ISR ecosystem
  • Advanced data integration with a multi-level comparative analysis to provide data accuracy and management
CHALLENGES
  • Integrating new technology into current systems
  • Electronic countermeasures and detection

​SEGMENTATION

MARKET SEGMENTATION
  • System Type
    • Manned Airborne ISR System
    • Unmanned Airborne ISR System
  • Operation
    • Intelligence
    • Surveillance
    • Reconnaissance
  • System
    • Airborne Early Warning and Control
    • Signals Intelligence
    • Maritime Patrol
    • Airborne Ground Surveillance
    • Electronic Warfare
    • Others
  • Application
    • Law Enforcement
    • Surveillance & Reconnaissance
    • Search & Rescue
    • Delivery & Logistics
    • Engineering
    • Surveying and Mapping
    • Others
  • Solution
    • Systems
    • Services
    • Software
  • Platform
    • Propulsion System
    • Military aircraft
    • Military helicopters
    • Unmanned systems
  • End-Use
    • Defense
    • Homeland security
  • Fuel Type
    • Hydrogen fuel cells
    • Solar powered
    • Battery operated
    • Alternate fuel
    • Gas electric hybrid
The respective global report is completely customizable specific to regions (North America, Europe, Asia-Pacific, South America, Middle East and Africa), countries, segments, and key players as per the client requirements.
REGIONAL SEGMENTATION
  • North America
    • U.S.
    • Canada
    • Mexico
    • Rest of North America
  • Europe
    • Germany
    • U.K.
    • France
    • Italy
    • Spain
    • Russia
    • The Netherlands
    • Belgium
    • Turkey
    • Rest of Europe
  • Asia-Pacific
    • China
    • India
    • Japan
    • South Korea
    • Singapore
    • Malaysia
    • Australia
    • Thailand
    • Philippines
    • Rest of Asia-Pacific
  • South America
    • Brazil
    • Argentina
    • Chile
    • Colombia
    • Rest of South America
  • Middle East and Africa
    • Kingdom of Saudi Arabia
    • South Africa
    • U.A.E.
    • Egypt
    • Rest of Middle East and Africa

​KEY MARKET PLAYERS

  • BAE Systems Plc
  • L-3 Technologies Inc.
  • Lockheed Martin Corporation
  • Northrop Grumman Corporation
  • UTC Aerospace Systems
  • The Boeing Co.
  • General Dynamics Corporation
  • Raytheon Company
  • Rockwell Collins Inc.
  • Thales S.A

​Table OF CONTENTS

  • SECTION 1 - INTRODUCTION
  • 1.1 Taxonomy
  • 1.2 Market Overview
  • 1.3 Currency and Limitations
  •     1.3.1 Currency
  •     1.3.2 Limitations
  • 1.4 Key Competitors

  • SECTION 2 - RESEARCH METHODOLOGY
  • 2.1 Research Approach
  • 2.2 Data Collection and Validation
  •     2.2.1 Secondary Research
  •     2.2.2 Primary Research
  • 2.3 Market Assessment
  •     2.3.1 Market Size Estimation
  •     2.3.2 Bottom-up Approach
  •     2.3.3 Top-down Approach
  •     2.3.4 Growth Forecast
  • 2.4 Market Study Assumptions
  • 2.5 Data Sources

  • SECTION 3 - EXECUTIVE SUMMARY
  • 3.1 Global Airborne ISR Market, by System Type
  • 3.2 Global Airborne ISR Market, by Operation
  • 3.3 Global Airborne ISR Market, by System
  • 3.4 Global Airborne ISR Market, by Application
  • 3.5 Global Airborne ISR Market, by Solution
  • 3.6 Global Airborne ISR Market, by Platform
  • 3.7 Global Airborne ISR Market, by End-Use
  • 3.8 Global Airborne ISR Market, by Fuel Type
  • 3.10 Global Airborne ISR Market, by Geography
  • 3.11 Market Position Grid

  • SECTION 4 - PREMIUM INSIGHTS
  • 4.1 Regulatory Framework
  •     4.1.1 Standards
  •     4.1.2 Regulatory Landscape
  • 4.2 Value Chain Analysis
  • 4.3 Supply Chain Analysis
  • 4.4 COVID-19 Impact
  • 4.5 Russia-Ukraine War Impact
  • 4.6 PORTER's Five Force Analysis
  • 4.7 PESTLE Analysis
  • 4.8 SWOT Analysis
  • 4.9 Go to Market Strategy
  • 4.10 Opportunity Orbit
  • 4.11 Multivariate Modelling
  • 4.12 Pricing Analysis

  • SECTION 5 - MARKET DYNAMICS
  • 5.1 Trends
  •     5.1.1 Trend 1
  •     5.1.2 Trend 2
  •     5.1.3 Trend 3
  • 5.2 Drivers
  •     5.2.1 A rise in the purchase of airborne ISR systems as a result of increased regional and transnational stability
  •     5.2.2 Growing demand of airborne surveillance, weather monitoring for commercial aircraft and battlefield surveillance
  •     5.2.3 Driver 3
  •     5.2.4 Driver 4
  • 5.3 Restraints
  •     5.3.1 High development and maintenance cost
  •     5.3.2 High amount of time required for developing and deploying the systems
  •     5.3.3 Restraint 3
  • 5.4 Opportunities
  • 5.4.1 Technological advancement is ISR ecosystem
  •     5.4.2 Advanced data integration with a multi-level comparative analysis to provide data accuracy and management
  •     5.4.3 Opportunity 3
  •     5.4.4 Opportunity 4
  • 5.5 Challenges
  •     5.5.1 Integrating new technology into current systems
  •     5.5.2 Electronic countermeasures and detection
  •     5.5.3 Challenge 3

  • SECTION 6 - GLOBAL AIRBORNE ISR MARKET, BY SYSTEM TYPE
  • 6.1 System Type Summary
  • 6.2 Market Attractive Index
  • 6.3 Global Airborne ISR Market, by System Type (2019-2032)

  • SECTION 7 - GLOBAL AIRBORNE ISR MARKET, BY OPERATION
  • 7.1 Operation Summary
  • 7.2 Market Attractive Index
  • 7.3 Global Airborne ISR Market, by Operation (2019-2032)

  • SECTION 8 - GLOBAL AIRBORNE ISR MARKET, BY SYSTEM
  • 8.1 System Summary
  • 8.2 Market Attractive Index
  • 8.3 Global Airborne ISR Market, by System (2019-2032)

  • SECTION 9 - GLOBAL AIRBORNE ISR MARKET, BY APPLICATION
  • 9.1 Application Summary
  • 9.2 Market Attractive Index
  • 9.3 Global Airborne ISR Market, by Application (2019-2032)

  • SECTION 10 - GLOBAL AIRBORNE ISR MARKET, BY SOLUTION
  • 10.1 Solution Summary
  • 10.2 Market Attractive Index
  • 10.3 Global Airborne ISR Market, by Solution (2019-2032)

  • SECTION 11 - GLOBAL AIRBORNE ISR MARKET, BY PLATFORM
  • 11.1 Platform Summary
  • 11.2 Market Attractive Index
  • 11.3 Global Airborne ISR Market, by Platform (2019-2032)

  • SECTION 12 - GLOBAL AIRBORNE ISR MARKET, BY END-USE
  • 12.1 End-Use Summary
  • 12.2 Market Attractive Index
  • 12.3 Global Airborne ISR Market, by End-Use (2019-2032)

  • SECTION 13 - GLOBAL AIRBORNE ISR MARKET, BY FUEL TYPE
  • 13.1 Fuel Type Summary
  • 13.2 Market Attractive Index
  • 13.3 Global Airborne ISR Market, by Fuel Type (2019-2032)

  • SECTION 14 - GLOBAL AIRBORNE ISR MARKET, BY GEOGRAPHY
  • 14.1 Regional Summary
  • 14.2 Market Attractive Index
  • 14.3 Global Airborne ISR Market, by Geography (2019-2032)

  • SECTION 15 - NORTH AMERICA AIRBORNE ISR MARKET
  • 15.1 North America Summary
  • 15.2 Market Attractive Index
  • 15.3 North America Airborne ISR Market, by System Type (2019-2032)
  • 15.4 North America Airborne ISR Market, by Operation (2019-2032)
  • 15.5 North America Airborne ISR Market, by System (2019-2032)
  • 15.6 North America Airborne ISR Market, by Application (2019-2032)
  • 15.7 North America Airborne ISR Market, by Solution (2019-2032)
  • 15.8 North America Airborne ISR Market, by Platform (2019-2032)
  • 15.9 North America Airborne ISR Market, by End-Use (2019-2032)
  • 15.10 North America Airborne ISR Market, by Fuel Type (2019-2032)
  • 15.11 North America Airborne ISR Market, by Country (2019-2032)
  •     15.11.1 U.S.
  •     15.11.2 Canada
  •     15.11.3 Mexico
  •     15.11.4 Rest of North America
  • SECTION 16 - EUROPE AIRBORNE ISR MARKET
  • 16.1 Europe Summary
  • 16.2 Market Attractive Index
  • 16.3 Europe Airborne ISR Market, by System Type (2019-2032)
  • 16.4 Europe Airborne ISR Market, by Operation (2019-2032)
  • 16.5 Europe Airborne ISR Market, by System (2019-2032)
  • 16.6 Europe Airborne ISR Market, by Application (2019-2032)
  • 16.7 Europe Airborne ISR Market, by Solution (2019-2032)
  • 16.8 Europe Airborne ISR Market, by Platform (2019-2032)
  • 16.9 Europe Airborne ISR Market, by End-Use (2019-2032)
  • 16.10 Europe Airborne ISR Market, by Fuel Type (2019-2032)
  • 16.11 Europe Airborne ISR Market, by Country (2019-2032)
  •     16.11.1 Germany
  •     16.11.2 U.K.
  •     16.11.3 France
  •     16.11.4 Italy
  •     16.11.5 Spain
  •     16.11.6 Russia
  •     16.11.7 The Netherlands
  •     16.11.8 Belgium
  •     16.11.9 Turkey
  •     16.11.10 Rest of Europe

  • SECTION 17 - ASIA-PACIFIC AIRBORNE ISR MARKET
  • 17.1 Asia-Pacific Summary
  • 17.2 Market Attractive Index
  • 17.3 Asia-Pacific Airborne ISR Market, by System Type (2019-2032)
  • 17.4 Asia-Pacific Airborne ISR Market, by Operation (2019-2032)
  • 17.5 Asia-Pacific Airborne ISR Market, by System (2019-2032)
  • 17.6 Asia-Pacific Airborne ISR Market, by Application (2019-2032)
  • 17.7 Asia-Pacific Airborne ISR Market, by Solution (2019-2032)
  • 17.8 Asia-Pacific Airborne ISR Market, by Platform (2019-2032)
  • 17.9 Asia-Pacific Airborne ISR Market, by End-Use (2019-2032)
  • 17.10 Asia-Pacific Airborne ISR Market, by Fuel Type (2019-2032)
  • 17.11 Asia-Pacific Airborne ISR Market, by Country (2019-2032)
  •     17.11.1 China
  •     17.11.2 India
  •     17.11.3 Japan
  •     17.11.4 South Korea
  •     17.11.5 Singapore
  •     17.11.6 Malaysia
  •     17.11.7 Australia
  •     17.11.8 Thailand
  •     17.11.9 Philippines
  •     17.11.10 Rest of Asia-Pacific

  • SECTION 18 - SOUTH AMERICA AIRBORNE ISR MARKET
  • 18.1 South America Summary
  • 18.2 Market Attractive Index
  • 18.3 South America Airborne ISR Market, by System Type (2019-2032)
  • 18.4 South America Airborne ISR Market, by Operation (2019-2032)
  • 18.5 South America Airborne ISR Market, by System (2019-2032)
  • 18.6 South America Airborne ISR Market, by Application (2019-2032)
  • 18.7 South America Airborne ISR Market, by Solution (2019-2032)
  • 18.8 South America Airborne ISR Market, by Platform (2019-2032)
  • 18.9 South America Airborne ISR Market, by End-Use (2019-2032)
  • 18.10 South America Airborne ISR Market, by Fuel Type (2019-2032)
  • 18.11 South America Airborne ISR Market, by Country (2019-2032)
  •     18.11.1 Brazil
  •     18.11.2 Argentina
  •     18.11.3 Chile
  •     18.11.4 Colombia
  •     18.11.5 Rest of South America

  • SECTION 19 - MIDDLE EAST AND AFRICA AIRBORNE ISR MARKET
  • 19.1 Middle East and Africa Summary
  • 19.2 Market Attractive Index
  • 19.3 Middle East and Africa Airborne ISR Market, by System Type (2019-2032)
  • 19.4 Middle East and Africa Airborne ISR Market, by Operation (2019-2032)
  • 19.5 Middle East and Africa Airborne ISR Market, by System (2019-2032)
  • 19.6 Middle East and Africa Airborne ISR Market, by Application (2019-2032)
  • 19.7 Middle East and Africa Airborne ISR Market, by Solution (2019-2032)
  • 19.8 Middle East and Africa Airborne ISR Market, by Platform (2019-2032)
  • 19.9 Middle East and Africa Airborne ISR Market, by End-Use (2019-2032)
  • 19.10 Middle East and Africa Airborne ISR Market, by Fuel Type (2019-2032)
  • 19.11 Middle East and Africa Airborne ISR Market, by Country (2019-2032)
  •     19.11.1 Kingdom of Saudi Arabia
  •     19.11.2 South Africa
  •     19.11.3 U.A.E.
  •     19.11.4 Egypt
  •     19.11.5 Rest of Middle East and Africa

  • SECTION 20 - COMPANY SHARE ANALYSIS
  • 20.1 Global Airborne ISR Market, Company Share Analysis
  • 20.2 North America Airborne ISR Market, Company Share Analysis
  • 20.3 Europe Airborne ISR Market, Company Share Analysis
  • 20.4 Asia-Pacific Airborne ISR Market, Company Share Analysis

  • SECTION 21 - COMPANY PROFILES
  • 21.1 BAE Systems Plc
  •     21.1.1 Company Snapshot
  •     21.1.2 Financial Overview
  •     21.1.3 Product Portfolio
  •     21.1.4 Recent Developments
  • 21.2 L-3 Technologies Inc.
  •     21.2.1 Company Snapshot
  •     21.2.2 Financial Overview
  •     21.2.3 Product Portfolio
  •     21.2.4 Recent Developments
  • 21.3 Lockheed Martin Corporation
  •     21.3.1 Company Snapshot
  •     21.3.2 Financial Overview
  •     21.3.3 Product Portfolio
  •     21.3.4 Recent Developments
  • 21.4 Northrop Grumman Corporation
  •     21.4.1 Company Snapshot
  •     21.4.2 Financial Overview
  •     21.4.3 Product Portfolio
  •     21.4.4 Recent Developments
  • 21.5 UTC Aerospace Systems
  •     21.5.1 Company Snapshot
  •     21.5.2 Financial Overview
  •     21.5.3 Product Portfolio
  •     21.5.4 Recent Developments
  • 21.6 The Boeing Co.
  •     21.6.1 Company Snapshot
  •     21.6.2 Financial Overview
  •     21.6.3 Product Portfolio
  •     21.6.4 Recent Developments
  • 21.7 General Dynamics Corporation
  •     21.7.1 Company Snapshot
  •     21.7.2 Financial Overview
  •     21.7.3 Product Portfolio
  •     21.7.4 Recent Developments
  • 21.8 Raytheon Company
  •     21.8.1 Company Snapshot
  •     21.8.2 Financial Overview
  •     21.8.3 Product Portfolio
  •     21.8.4 Recent Developments
  • 21.9 Rockwell Collins Inc.
  •     21.9.1 Company Snapshot
  •     21.9.2 Financial Overview
  •     21.9.3 Product Portfolio
  •     21.9.4 Recent Developments
  • 21.10 Thales S.A
  •     21.10.1 Company Snapshot
  •     21.10.2 Financial Overview
  •     21.10.3 Product Portfolio
  •     21.10.4 Recent Developments

  • SECTION 22 - RELATED REPORTS

  • SECTION 23 - DISCLAIMER

​RESEARCH METHODOLOGY

The research methodology employed in Uniprism Market Research involves four basic steps namely research and data collection, data pre-processing, modeling and forecasting, quality assurance and output.
RESEARCH AND DATA COLLECTION
A tripod model research technique is followed for research and data collection in which various approaches such as primary research, secondary research, and product mapping are considered.

Primary research basically involves the process of conducting personalized interviews with market related professionals of major market players, investors, distributors, vendors and many more.

The secondary research include data published by government, annual reports, press releases, investor presentations of companies, white papers, certified publications, annual manufacturing limit of the respective industries related to the market, production consumption analysis of certain products respective to the market and many more.

Below mention are few of the sources which we have considered while estimating the market size:
For instance,
  • Research articles published on Technium
  • Science and MDPI
  • Research publications by government approved associations and societies

Product mapping means the process of mapping the list of products that a key player contributes to the market as well as estimating the revenue of those products in order to define the Global Company share analysis of the respective Global Company in global, regional, and country level markets.
DATA PRE-PROCESSING

The term "data pre-processing" refers to the collection of procedures and methods used to clean, modify, and make ready for analysis the raw data gathered during research and data collection. The completion of this phase is necessary to guarantee that the data are reliable, consistent, and appropriate for statistical analysis and other data-driven tasks. The data pre-processing ensures that the information gathered from research and data collection is comparable and expressed in standard units, by the integration of missing data pointers and algorithmic approaches.

MODELING AND FORECASTING
The process of developing mathematical, statistical, or computational representations of real-world occurrences or relationships is known as modelling. These models are intended to replicate and explain market interactions, interdependence, and dynamics. These models are used by Uniprism Market Research to acquire a better knowledge of numerous market characteristics such as customer preferences, pricing elasticity, competition dynamics, and more. Depending on the individual study aims, many types of models are utilized, such as regression models, econometric models, decision tree models, and machine learning models.

Forecasting is the process of predicting future market conditions, trends, and occurrences using past data and models. Forecasting is used by Uniprism Market Research to estimate future sales, demand for products or services, market growth, and other important performance metrics. Forecasting accurately can assist organizations in making educated decisions about resource allocation, pricing, inventory management, and marketing tactics.

We create standardized bottom-up or top-down models that scale by leveraging data science and machine learning technology. All our market models consider the unique market characteristics of each country. Forecasting is based on major market indicators and a combination of traditional methodologies, such as exponential smoothing, time series analysis, regression analysis, and more modern techniques such as machine learning algorithms are all forecasting methodologies. The method chosen is determined on the nature of the data and the specific forecasting aims.
QUALITY ASSURANCE AND OUTPUT

Quality assurance and output involves the process of validation, adjustments, further publications of key market indicators. Extensive plausibility and consistency tests are performed on derived time series to ensure the high degree of quality of our market analysis. This quality assurance procedure also includes rigorous inspection, validation, and editing by an experienced management team to assure the dependability of the published data.

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