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Global Aviation Airborne System Surveillance Radar Market Size By Technology, By Application, By Frequency Band, By Geographic Scope And Forecast


Published on: 2024-08-08 | No of Pages : 320 | Industry : latest updates trending Report

Publisher : MIR | Format : PDF&Excel

Global Aviation Airborne System Surveillance Radar Market Size By Technology, By Application, By Frequency Band, By Geographic Scope And Forecast

Aviation Airborne System Surveillance Radar Market Size And Forecast

Aviation Airborne System Surveillance Radar Market size was valued at USD 2768.32 Million in 2023 and is projected to reach USD 3588.78 Million by 2030, growing at a CAGR of 4.43% during the forecast period 2024-2030.

Global Aviation Airborne System Surveillance Radar Market Drivers

The market drivers for the Aviation Airborne System Surveillance Radar Market can be influenced by various factors. These may include

  • Demand for Surveillance and Situational Awareness Has Increased One major driver is the increasing requirement for improved surveillance capabilities to keep an eye on airspace, identify and track any threats, and maintain situational awareness. To strengthen national security, governments and defence agencies frequently invest in airborne surveillance radar systems.
  • Programmes for Modernization and Upgradation Many nations make investments to acquire new, cutting-edge radar technologies or to upgrade their current radar systems in order to modernise their airborne surveillance capabilities. Programmes for modernization help the market expand as defence forces look for innovative technology to stay ahead of the competition.
  • Expanding Commercial Aviation Sector The need for airborne surveillance radar systems may be fueled by the growth of the commercial aviation industry, which includes both airlines and private aircraft. In congested airspace, these devices are essential for improving safety and preventing collisions.
  • Growing Risks and Security Issues The need for sophisticated surveillance and reconnaissance capabilities is driven by escalating geopolitical tensions and changing security threats. Radar devices for airborne surveillance are essential for the early identification and handling of such threats.
  • Technological Advancements The market can increase as a result of ongoing advancements in radar technology, including the integration of multi-mode capabilities, advanced signal processing, and improved target discrimination. Particularly sought after are innovations that improve radar performance and lower false alerts.
  • Government Budget Allocations The purchase of aerial surveillance radar equipment is influenced by government budgetary allotments for security and defence. Greater expenditures in these technologies may result from increases in defence spending.
  • Emphasis on Border Security To improve border security, governments frequently spend money on surveillance radar systems. The market for aerial surveillance radars may expand as a result of the necessity to keep an eye on and secure national borders against illegal activity.

Global Aviation Airborne System Surveillance Radar Market Restraints

Several factors can act as restraints or challenges for the Aviation Airborne System Surveillance Radar Market. These may include

  • High Costs The creation, manufacture, and upkeep of sophisticated radar systems for airborne surveillance can be costly. For both military and commercial organisations, high costs can be a major barrier, resulting in financial restrictions and postponed purchase choices.
  • Technological Difficulties Creating state-of-the-art radar technology while maintaining interoperability with legacy systems might be difficult. Technological obstacles have the potential to impede the rate of innovation and new capability adoption.
  • Regulatory Compliance Adherence to strict defence and aviation laws may provide a challenge. The development and implementation of aerial surveillance radar systems may become more complex due to the need to comply with standards, certifications, and regulatory requirements.
  • Restricted Frequency Spectrum There is a limited amount of frequency spectrum that is appropriate for radar operations, and electromagnetic spectrum congestion can be problematic. Radar system dependability and efficacy may be impacted by this constraint.
  • Problems with Integration It might be difficult to integrate new radar systems with current avionics and communication systems. Delays and extra expenses may result from compatibility problems and the requirement for smooth integration with other onboard systems.
  • Data Security Issues Data security issues and the possibility of cyberattacks may act as a brake on the advancement and interconnectivity of airborne surveillance radar systems. It is essential to prevent unauthorised access to sensitive information.
  • Global Economic Uncertainty Government budgets and discretionary spending on defence and aviation may be impacted by global economic downturns or uncertainties. This may result in financing for new radar system acquisitions being reduced and procurement plans being delayed.
  • Environmental Considerations Stricter laws governing the effects of radar systems on the environment might arise from heightened knowledge of environmental issues. Adherence to environmental norms and standards may present obstacles for producers.

Global Aviation Airborne System Surveillance Radar Market Segmentation Analysis

The Global Aviation Airborne System Surveillance Radar Market is Segmented on the basis of Technology, Application, Frequency Band, and Geography.

Aviation Airborne System Surveillance Radar Market, By Technology

  • Pulse Radar Traditional radar technology that emits short pulses of radiofrequency energy.
  • Doppler Radar Utilizes the Doppler effect to detect moving targets and differentiate them from stationary objects.
  • Synthetic Aperture Radar (SAR) Provides high-resolution images by processing radar signals collected over time.
  • Multi-mode Radar Integrates multiple radar modes, such as air-to-air, air-to-ground, and weather modes, for versatile capabilities.

Aviation Airborne System Surveillance Radar Market, By Application

  • Military Aviation Radar systems used for military purposes, including surveillance, reconnaissance, and threat detection.
  • Commercial Aviation Radar systems employed in commercial aircraft for weather detection, terrain mapping, and collision avoidance.
  • General Aviation Radar systems for small private and recreational aircraft.

Aviation Airborne System Surveillance Radar Market, By Frequency Band

  • X-Band Radar Commonly used for airborne radar due to its balance of resolution and range.
  • S-Band Radar Offers longer range compared to X-band and is often used for specific applications.
  • Ku-Band Radar Provides high-resolution imaging capabilities and is suitable for certain surveillance tasks.

Aviation Airborne System Surveillance Radar Market, By Geography

  • North America Market conditions and demand in the United States, Canada, and Mexico.
  • Europe Analysis of the Aviation Airborne System Surveillance Radar Market in European countries.
  • Asia-Pacific Focusing on countries like China, India, Japan, South Korea, and others.
  • Middle East and Africa Examining market dynamics in the Middle East and African regions.
  • Latin America Covering market trends and developments in countries across Latin America.

Key Players

The major players in the Aviation Airborne System Surveillance Radar Market are

  • Raytheon Technologies Corporation
  • Lockheed Martin Corporation
  • Thales Group
  • Northrop Grumman Corporation
  • Saab Group
  • Leonardo S.p.A.
  • BAE Systems
  • Boeing

Report Scope

REPORT ATTRIBUTESDETAILS
Study Period

2020-2030

Base Year

2023

Forecast Period

2024-2030

Historical Period

2020-2022

Unit

Value (USD Million)

Key Companies Profiled

Raytheon Technologies Corporation, Lockheed Martin, Corporation, Thales Group, Northrop Grumman Corporation, Saab Group, Leonardo S.p.A, BAE Systems Boeing.

Segments Covered

By Technology, By Application, By Frequency Band, And By Geography.

Customization scope

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