Synopsis
This report is the result of SDI's extensive market and company research covering the global military radar industry. It provides detailed analysis of both historic and forecast global industry values, factors influencing demand, the challenges faced by industry participants, analysis of the leading companies in the industry, and key news.
Summary
Why was the report written?
“The Global Military Radar Market 2013-2023” offers the reader detailed analysis of the global military radar market over the next ten years, alongside potential market opportunities to enter the industry, using detailed market size forecasts.
What are the key drivers behind recent market changes?
The global defense industry is investing significantly in research and development (RandD) to increase the capabilities of modern military aircraft, naval vessels and missile defense systems which has led to the development of new and ground-breaking radar system technologies, which can enhance the detection capabilities, surveillance duration and resolution, incoming projectile defense capabilities, base and area protection capabilities and early warning system capabilities of the various types of military aircraft, naval vessels and ground-based forward forces. Current innovations are oriented towards integrating various band capabilities of different radars into a single module and developing multi-platform radars, based on modularity, without compromising on advanced technological features. The US is developing dual band radar that merges the X band SPY-3 radar with the S band volume search radar (VSR) system, and has also completed work on the new LONGBOW Block III Fire Control Radar incorporating improvements such as reduced size, weight, and maintenance and power requirements.
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The global military radar market Research Report At Researchmoz 2013 2023
1. The Global Military Radar Market 2013 - 2023
Synopsis
This report is the result of SDI's extensive market and company research covering the global military radar
industry. It provides detailed analysis of both historic and forecast global industry values, factors influencing
demand, the challenges faced by industry participants, analysis of the leading companies in the industry, and
key news.
Summary
Why was the report written?
“The Global Military Radar Market 2013-2023” offers the reader detailed analysis of the global
military radar market over the next ten years, alongside potential market opportunities to enter the industry,
using detailed market size forecasts.
What are the key drivers behind recent market changes?
The global defense industry is investing significantly in research and development (RandD) to increase the
capabilities of modern military aircraft, naval vessels and missile defense systems which has led to the
development of new and ground-breaking radar system technologies, which can enhance the detection
capabilities, surveillance duration and resolution, incoming projectile defense capabilities, base and area
protection capabilities and early warning system capabilities of the various types of military aircraft, naval
vessels and ground-based forward forces. Current innovations are oriented towards integrating various band
capabilities of different radars into a single module and developing multi-platform radars, based on
modularity, without compromising on advanced technological features. The US is developing dual band radar
that merges the X band SPY-3 radar with the S band volume search radar (VSR) system, and has also
completed work on the new LONGBOW Block III Fire Control Radar incorporating improvements such as
reduced size, weight, and maintenance and power requirements.
What makes this report unique and essential to read?
“The Global Military Radar Market 2013-2023” provides detailed analysis of the current
industry size and growth expectations from 2013 to 2023, including highlights of key growth stimulators. It
also benchmarks the industry against key global markets and provides detailed understanding of emerging
opportunities in specific areas.
Scope
The report provides detailed analysis of the market for military radar during 2013-2023, including the factors
that influence why countries are investing or cutting expenditure on military radars. It provides detailed
expectations of growth rates and projected total expenditure. A significant number of countries are investing in
the development of their domestic military radar producing capabilities by establishing strategic alliances and
technology transfer agreements with established global manufacturers. In addition to improving the
indigenous capabilities of a domestic firm, this provides the foreign company with an opportunity to cater to a
new market. Partnerships between countries that possess an advance defense industrial base, such as Canada
and India, aid the mutual sharing of advanced technology. The military electronics sector is currently
witnessing a phase of consolidation. This is reminiscent of the post-cold war era when companies such as
BAE Systems, Lockheed Martin, Northrop Grumman and Raytheon rose to dominance through mergers and
The Global Military Radar Market 2013 - 2023
2. acquisitions. As defense spending has leveled off in recent years, companies operating in all areas of defense
are looking to diversify their offerings in order to compete for the various contracts on offer and add more
revenue streams to their existing lines of business. Also, heads of the major companies also feel that the
military radars sector currently has too many companies operating during a period of declining demand, and
consolidation may be the only way to preserve their skills and facilities.
Reasons To Buy
Most of the weight and space requirement for military radars comes from its need for power and cooling.
Power storage, power conversion, and cooling require weight and space, all of which are usually in short
supply on a warship. Powerful and technologically advanced radars need more power to drive them and will
not be suitable for the older ships with 7.5 MW capacities, such as DDG-51 Flight I/II/IIAs. In the case of
aircraft retrofits, performance and accuracy of radar systems must be improved within existing system design
limits. Even if ample space exists, the additional equipment and antennas must be installed to avoid undue
effects on the ship's balance and center of gravity, and its sea keeping abilities. Managing and reducing size,
weight, and power (SWaP) in military radars is essential for improving operational efficiency, as controlling
these factors increases the mission life of the radar systems and reduces the total cost of system ownership.
However, accomplishing these tasks is a challenge for the military radar industry given the varying set of
constraints presented by every individual platform. System upgrades are also driving added functionality and
increased performance, placing additional attention on SWaP. As a consequence, enabling radars with smaller
footprints, lighter weight, and smaller batteries is a key challenge for the military radar industry. Wind
turbines, whose spinning blades are about the same size as a passenger jet wing, can disrupt radar systems and
one of the problems with wind farms is the effect of their turbine blades on air traffic control and defense
radars. Wind turbine blades have extremely large radar signatures, especially when grouped in a farm. Wind
turbines, with tip speeds of 6-7 times the wind speed, can create clutter interference and possibly significant
Doppler interference with the very sensitive radars. Aircraft targets can be temporarily lost, failed to be
located, shadowed by the radar signature of the turbine farm, or misidentified, and the wind turbines may also
lead to false detection of aircraft.
Key Highlights
The AESA radar system, developed by Northrop Grumman, is quickly gaining popularity for the next
generation defense platforms. Continued evolution of this technology on next generation fast jet platforms,
retrofitting of these capabilities on existing fast jet platforms and the extension of AESA capabilities on to
land, naval and other airborne platforms is a recent market trend in the military radar market and offers
significant gains in reliability. By focusing power in specific directions, the pilot can gain a better detection
range, enabling first shoot/first kill by missiles fired in Beyond Visual Range (BVR) mode. The longer
standoff range also allows more time for persistent target observation, information sharing, tactical analysis
and commander assessment before making critical decisions. Therefore, AESA radars can sustain certain
degree of failure without grounding the aircraft or disabling the entire radar system. The development of
anti-stealth technology and weapons systems has become an important and urgent task. To counter aerial
stealth proliferation, countries are expected to concentrate on development of passive radars, which can detect,
track, and target piloted and unpiloted stealth systems and provide cuing for anti-air weapons by integrating a
system of netted receivers. Additionally, a passive radar system detects targets continuously, often multiple
times per second and emits no radio energy so can be well disguised in both urban and rural landscapes. It
cannot be detected when in operation, since it has no active transmitter as an element of the system. Passive
radar can detect targets over a wide area, whose radius is often measured in hundreds, or thousands, of
The Global Military Radar Market 2013 - 2023
3. kilometers and is relatively inexpensive as it requires only a receiver, an accurate time source and adequate
signal processing capability. The only set back in the development of sophisticated passive radar systems is
having enough computational power to be able to process very large volumes of data.
table Of Content
1 Introduction
1.1 What Is This Report About?
1.2 Definitions
1.3 Summary Methodology
1.4 About Strategic Defence Intelligence
2 Executive Summary
3 Global Military Radar Market Size And Drivers
3.1 Military Radar Market Size And Forecast 2013-2023
3.1.1 Global Military Radar Market To Increase During The Forecast Period
3.2 Global Military Radar Market - Regional Analysis
3.2.1 North America Dominates The Global Military Radar Market
3.2.2 Demand For Airborne And Ground-based Radars In The Us To Support The Global Military Radar
Market
3.2.3 Asia Set To Be A Lucrative Market For Military Radars
3.2.4 European Defense Budget Cuts Reflected In The Decline Of The Military Radars Market
3.2.5 Markets In The Middle East Forecast To Witness Robust Spending On Military Radars
3.2.6 Brazil Expected To Be The Highest Spender In The Military Radar Sector In The Latin American
Region
3.2.7 African Markets Expected To Increase During The Forecast Period
3.3 Military Radar Sub-sector Market Size Composition
3.3.1 Airborne Radar To Record Strong Cagr Growth
3.3.2 Airborne Radar Market Size Expected To Increase During The Forecast Period
3.3.3 Ground-based Radar System To Account For The Second Largest Market Over The Forecast Period
3.3.4 Market For Naval Radars Expected To Record An Increase And Reach Us$2 Billion By 2023
3.3.5 Market For Space-based Radars To Register A Cagr Of 1.16% Over The Forecast Period
3.4 Demand Drivers And Growth Stimulators
3.4.1 Development Of Active Electronically Scanned Array (aesa) Technology
3.4.2 Increasing Use Of Radars On Unmanned Aerial Vehicles (uavs)
3.4.3 Modernization Of Air Defense Networks
3.4.4 Border And Coastal Surveillance Programs In Latin American Region
3.5 Defense Budget Spending Review
3.5.1 European Capital Expenditure Expected To Increase During The Forecast Period
The Global Military Radar Market 2013 - 2023
4. 3.5.2 Asian Defense Budgets Expected To Increase At A Robust Pace
3.5.3 North American Defense Expenditure Projected To Increase Marginally During The Forecast Period
3.5.4 Modernization Programs Likely To Drive Defense Expenditure In South American Countries
3.5.5 Military Budgets Of African Countries Expected To Increase During The Forecast Period
3.5.6 Middle Eastern Defense Budgets Likely To Increase During The Forecast Period
3.6 Defense Modernization Review
3.6.1 European Debt Crisis Leading To Postponement Of Modernization Plans
3.6.2 The Arms Race In Asia Is Reflected In Modernization Plans
3.6.3 North American Modernization Plans Will Be Marginally Affected By Economic Recession
3.6.4 Modernization Programs In South America Driven By Replacement Of Obsolete Armaments
3.6.5 African Countries Mainly Spending On Infantry Weapons, And Surveillance And Monitoring
Equipment, To Slow The Growing Crime Rate
3.6.6 Middle Eastern Countries Pursuing Modernization Of Air Force And Air Defense Systems
4 Industry Trends, Recent Developments And Challenges
4.1 Technological Developments
4.1.1 Millimeter Wave Amplifier Technology Expected To Revolutionize Communications And Radar
Capabilities In The Us
4.1.2 New Radar Technology That Enables Vision Through Solid Walls To Provide Real Time Images
Beyond Barriers
4.1.3 Digital Beam Forming Radar Systems To Help Defeat Overwhelming Attacks On Us Warships
4.1.4 Beam Steering Antenna Technology
4.2 Market Trends
4.2.1 Shift Towards Aesa Based Platforms
4.2.2 Passive Radars To Provide Anti-stealth Defense Options
4.3 Industry Consolidation
4.3.1 Joint Randd Programs Expected To Increase Over The Forecast Period
4.3.2 Companies Are Also Expected To Consolidate In The Face Of Global Defense Budget Cuts
4.4 Key Challenges
4.4.1 Reduced Space In Naval Ships And Falling Capacity Poses Key Challenges For Military Radar Market
4.4.2 Challenge From Wind Turbines
5 Swot Analysis Of The Military Radar Market
5.1 Strengths
5.1.1 Priority Procurement
5.1.2 Technological Advancements Driving The Market
5.1.3 Past And Future Asymmetric Warfare
5.2 Weaknesses
5.2.1 Cost Of Space-based Radars
5.2.2 Advent Of Stealth Radar Evasion Systems Posing An Immense Barrier To Radar Reliability
5.3 Opportunities
The Global Military Radar Market 2013 - 2023
5. 5.3.1 Increasing Demand In Missile Defense Applications
5.3.2 Multi-mission Radars
5.3.3 Demand For Littoral Combat Ships (lcs) Radars
5.4 Threats
5.4.1 Us And European Economic Crisis
5.4.2 Shrinking Military Expenditure To Impact Demand For Advanced Technology Radar Systems
6 Country Analysis - Military Radar Market
6.1 United States Market Size And Forecast 2013-2023
6.1.1 Airborne Radars Expected To Constitute The Largest Market Share In The Us
6.1.2 Ground-based Radars Expected To Account For The Second Largest Share Of Us Military Radar
Expenditure
6.1.3 Demand For Naval Radars Expected To Increase During The Forecast Period
6.2 China Market Size And Forecast 2013-2023
6.2.1 Ground-based Radars Segment To Attract Significant Funding During The Forecast Period
6.2.2 Spending On Airborne Radars Segment Expected To Be Driven By Hostile Political Environment
6.2.3 Naval Radars To Account For The Third Largest Segment Of The Chinese Military Radar Market
6.3 Indian Market Size And Forecast 2013-2023
6.3.1 Ground-based Radars Segment Expected To Account For The Largest Share
6.3.2 Airborne Radar Systems To Account For The Second Largest Expenditure
6.3.3 Spending On Naval Radars To Be Robust During The Forecast Period
6.4 South Korea Market Size And Forecast 2013-2023
6.4.1 Airborne Radars To Account For The Largest Share Of Expenditure During The Forecast Period
6.4.2 South Korea's Unresolved Conflict With North Korea To Drive The Spending On Ground-based Radars
6.4.3 Naval Radars To Account For The Third Largest Sector In The South Korean Military Radar Market
6.5 Russia Market Size And Forecast 2013-2023
6.5.1 Demand For Airborne Military Radar Systems To Increase During The Forecast Period
6.5.2 Ground-based Radar Segment To Register A Cagr Of 0.62% Over The Forecast Period
6.5.3 Procurement Of Naval Radar System Expected To Continue Till 2018
6.6 Germany Market Size And Forecast 2013-2023
6.6.1 Demand For Airborne Military Radars In Germany To Remain High
6.6.2 Space-based Radars To Account For The Second Largest Area Of Expenditure In Germany
6.6.3 Bodenüberwachungsradar Program To Drive Ground-based Radar Segment In Germany
6.7 The United Kingdom Market Size And Forecast 2013-2023
6.7.1 Airborne Military Radar Market In The Uk To Increase During The Forecast Period
6.7.2 Naval Radar Segment Is Expected To Constitute The Second Largest Market Share In Uk
6.8 Uae Market Size And Forecast 2013-2023
6.8.1 Expenditure On The Ground-based Military Radars Expected To Decline During The Forecast Period
6.8.2 Augmented By High Expenditure On Sophisticated Fighter Aircrafts, The Uae Airborne Military Radars
Market Will Continue To Have Upward Trend During The Forecast Period
6.9 Saudi Arabia Market Size And Forecast 2013-2023
6.9.1 The Market For Airborne Military Radars Expected To Increase During The Forecast Period
The Global Military Radar Market 2013 - 2023
6. 6.9.2 The Procurement Of Radars For Thaad Missiles To Drive The Ground-based Radar Market
6.1 Brazil Market Size And Forecast 2013-2023
6.10.1 Brazil Ground-based Radar Procurement Expected To Continue Till 2019
6.10.2 Airborne Radar To Account For Second Largest Share Of Brazilian Radar Spending
6.10.3 Naval Radars To Register A Cagr Of 9.9% Over The Forecast Period
6.11 South Africa Market Size And Forecast 2013-2023
6.11.1 Airborne Military Radars Market To Increase During The Forecast Period
6.11.2 Naval Radars Account For Second Largest Share Of South African Radar Spending
6.12 Algeria Market Size And Forecast 2013-2023
6.12.1 Airborne Military Radar Market To Decline During The Forecast Period
6.12.2 Algeria Expected To Procure Naval Radar Systems
7 Major Military Radar Programs
7.1 Ground-based
7.1.1 India - Long Range Tracking Radars
7.1.2 India - X-band
7.1.3 Us - Space Fence Program
7.2 Space-based
7.2.1 Germany - Sarah - Satellite-based Radar Reconnaissance System
7.2.2 Vietnam/japan - Radar Imaging Satellites
7.2.3 Canada - Radarsat Constellation Mission
7.3 Airborne
7.3.1 Uk/germany/italy/spain - Captor Radar Systems
7.3.2 Us - Joint Surveillance Target Attack Radar System (joint Stars)
7.4 Naval
7.4.1 Us - Air And Missile Defense Radar Program
7.4.1 Germany - Trs-4d/nr Radar Program
8 Competitive Landscape And Strategic Insights
8.1 Competitive Landscape Overview
8.1.1 Lockheed Martin Corporation: Overview
8.1.2 Lockheed Martin Corporation: Products And Services
8.1.3 Lockheed Martin Corporation: Recent Announcements And Strategic Initiatives
8.1.4 Lockheed Martin Corporation: Alliances
8.1.5 Lockheed Martin Corporation: Recent Contract Wins
8.1.6 Lockheed Martin Corporation: Financial Analysis
8.1.7 Boeing: Overview
8.1.8 Boeing: Products And Services
8.1.9 Boeing: Recent Announcements And Strategic Initiatives
8.1.10 Boeing: Alliances
8.1.11 Boeing: Recent Contract Wins
The Global Military Radar Market 2013 - 2023
8. 8.1.55 Esterline Technologies Corporation: Overview
8.1.56 Esterline Technologies Corporation: Products And Services
8.1.57 Esterline Technologies Corporation: Recent Announcements And Strategic Initiatives
8.1.58 Esterline Technologies Corporation: Alliances
8.1.59 Esterline Technologies Corporation: Recent Contract Wins
8.1.60 Esterline Technologies Corporation: Financial Analysis
8.1.61 Almaz-antei: Overview
8.1.62 Almaz-antei: Products And Services
8.1.63 Almaz-antei: Recent Announcements And Strategic Initiatives
8.1.64 Almaz-antei: Recent Contract Wins
8.1.65 Honeywell International: Overview
8.1.66 Honeywell International: Products And Services
8.1.67 Honeywell International: Recent Announcements And Strategic Initiatives
8.1.68 Honeywell International: Alliances
8.1.69 Honeywell International: Recent Contract Wins
8.1.70 Honeywell International: Financial Analysis
8.1.71 Aselsan: Overview
8.1.72 Aselsan: Products And Services
8.1.73 Aselsan: Recent Announcements And Strategic Initiatives
8.1.74 Aselsan: Alliances
8.1.75 Aselsan: Recent Contract Wins
8.1.76 Aselsan: Financial Analysis
9 Appendix
9.1 Methodology
9.2 About Sdi
9.3 Disclaimer
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The Global Military Radar Market 2013 - 2023