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Report Description

Report Description

Forecast Period

2027-2031

Market Size (2025)

USD 5.12 Billion

CAGR (2026-2031)

14.91%

Fastest Growing Segment

Flight control

Largest Market

Asia Pacific

Market Size (2031)

USD 11.79 Billion

Market Overview

The Global Anti Jamming Market will grow from USD 5.12 Billion in 2025 to USD 11.79 Billion by 2031 at a 14.91% CAGR. The Global Anti-Jamming Market comprises specialized technologies designed to filter out intentional interference and maintain the integrity of critical navigation and communication signals. This sector is primarily driven by the escalating demand for secure satellite operations amid rising geopolitical tensions and the growing reliance of defense and civilian infrastructure on uninterrupted positioning data. The urgency of these drivers is highlighted by recent industry findings which quantify the escalating threat level. According to the International Air Transport Association, in 2024, Global Positioning System spoofing incidents spiked by 500% compared to the previous year, validating the critical need for robust protective measures.

Despite the clear operational necessity, the market faces a significant challenge regarding the high cost of technology development and deployment. The sophisticated engineering required to counter rapidly evolving jamming threats necessitates substantial research investment, resulting in premium pricing that limits accessibility for cost-sensitive commercial sectors. This financial barrier often restricts the adoption of the most advanced anti-jamming solutions to government and defense entities, thereby impeding widespread expansion into the broader civilian aviation and maritime markets.

Key Market Drivers

Increasing Global Defense Expenditure on Electronic Warfare Capabilities is a primary force accelerating the growth of the Global Anti-Jamming Market. As nations recognize the critical importance of the electromagnetic spectrum in modern warfare, they are aggressively increasing their budgets to procure advanced defensive systems that ensure the resilience of communication and navigation assets. This surge in funding supports the development and deployment of next-generation antenna systems and signal processing technologies capable of operating in contested environments. The scale of this financial prioritization is evident in recent spending trends; according to the Stockholm International Peace Research Institute (SIPRI), April 2025, global military expenditure reached a record $2.72 trillion in 2024, driven significantly by the need to modernize electronic warfare defenses against peer adversaries.

Concurrently, the Proliferation of Accessible and Sophisticated Jamming Threats is compelling both military and civilian sectors to adopt robust counter-measures. State and non-state actors are increasingly utilizing low-cost jammers and high-grade spoofing techniques to disrupt critical infrastructure, particularly in geopolitically volatile zones. For instance, according to the Swedish Transport Agency, September 2025, reported GPS disruptions affecting civil aviation over the Baltic Sea surged to 733 cases in the first eight months of 2025, highlighting the acute operational risks faced by standard navigation systems. In response to such escalating vulnerabilities, governments are actively funding specific programs to enhance signal security; according to SSBCrack News, July 2025, the U.S. Space Force allocated approximately $240 million in its fiscal 2026 budget for the Protected Tactical SATCOM-Global initiative specifically to bolster satellite anti-jamming capabilities.

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Key Market Challenges

Based on the overview provided, the significant challenge hindering the expansion of the Global Anti-Jamming Market is the high cost associated with technology development and deployment. This financial barrier arises from the complex engineering required to counter increasingly sophisticated threats, which necessitates substantial research and development investment. As manufacturers pass these costs down to the end-user, the resulting premium pricing structure effectively creates a gatekeeping mechanism. While defense agencies operate with budgets that can accommodate such expenditures for mission-critical assets, commercial sectors often operate on thinner profit margins and struggle to justify the return on investment for high-end protection systems.

This price disparity directly restricts market growth by preventing the widespread adoption of anti-jamming solutions in the civilian sector, despite a clear and urgent operational need. The commercial aviation and maritime industries face a growing vulnerability gap where the frequency of interference outpaces their financial ability to equip fleets with advanced countermeasures. The scale of this unaddressed exposure is significant. According to the National Business Aviation Association, in 2024, the volume of daily flights affected by spoofing incidents rose to approximately 1,500, underscoring a massive addressable market that remains largely untapped due to cost constraints. Consequently, the market remains concentrated within government contracts, unable to fully capitalize on the volume potential of the broader commercial logistics and transportation industries.

Key Market Trends

The Development of Low-Size, Weight, and Power (SWaP) Systems is fundamentally reshaping the market by enabling the integration of anti-jamming capabilities into previously incompatible platforms such as precision-guided munitions and handheld soldier systems. Unlike traditional and bulky antenna arrays restricted to large vehicles, modern miniaturized modules allow for ubiquitous deployment across the tactical edge to ensure resilience for cost-sensitive and space-constrained assets. This shift towards compact and high-performance components is evidenced by major procurement activities. According to Global Defense Corp, July 2024, in the 'BAE Systems awarded contract to produce jam-resistance GPS' article, BAE Systems secured a $325.5 million contract to supply advanced M-Code GPS modules specifically designed to equip ground forces and munitions with robust interference protection.

Simultaneously, the Integration of Quantum Sensing Technologies for Navigation represents a paradigm shift from radio-frequency filtering to physics-based unjammable references. As adversarial electronic warfare becomes sophisticated enough to overwhelm conventional digital signal processing, the industry is pivoting toward hybrid solutions that utilize crustal magnetic field maps and quantum sensors to maintain positioning without reliance on satellite signals. The operational viability of this non-RF approach is rapidly maturing. According to Defense Advancement, June 2024, in the 'AI & Quantum Powered Navigation System to Counter GPS Jamming Threats' article, SandboxAQ’s novel AQNav system successfully completed over 200 flight-hours of testing to validate the effectiveness of AI-enhanced quantum magnetometry in providing continuous navigation in GPS-denied environments.

Segmental Insights

The Flight Control segment has emerged as the fastest-growing category within the Global Anti-Jamming Market, driven by the expanding reliance on Unmanned Aerial Vehicles (UAVs) and autonomous aircraft. Since these platforms depend heavily on continuous satellite data for stability and course correction, they are uniquely vulnerable to signal disruption. Consequently, defense organizations and commercial aviation entities are prioritizing the integration of resilient anti-jamming technologies to secure navigation systems. This heightened focus aims to prevent loss of vehicle control in contested environments, ensuring operational safety and mission continuity.

Regional Insights

Asia Pacific holds a dominant position in the global anti-jamming market, driven by substantial investments in defense modernization and the rapid expansion of indigenous satellite navigation infrastructures. Nations such as China and India are actively integrating anti-jamming capabilities to protect critical systems, including BeiDou and NAVIC, from intentional signal interference. This regional growth is further accelerated by rising geopolitical security challenges, which necessitate resilient communication networks for military operations. Consequently, defense agencies prioritize the procurement of robust navigation warfare technologies to maintain operational integrity in contested environments.

Recent Developments

  • In September 2025, Raytheon UK secured a contract from BAE Systems to supply Landshield Plus anti-jam antennas for the CV90 infantry fighting vehicle. This collaboration involves the delivery of advanced protection systems between 2025 and 2029, aimed at hardening the vehicles against sophisticated electronic warfare attacks. The Landshield Plus technology integrates a multi-element antenna with an anti-jam processor into a single unit, enabling it to detect and mitigate interference from multiple jammers simultaneously. The Managing Director of Raytheon UK emphasized that this solution would ensure reliable navigation and situational awareness for the tracked vehicles in GPS-denied environments.
  • In June 2025, Safran Electronics & Defense introduced two resilient navigation systems, Skylight and BlackNaute, at the Paris Air Show to counter the growing threat of GNSS spoofing and jamming. Skylight was presented as a compact dual-mode GNSS receiver capable of processing both Galileo PRS and GPS M-Code signals, offering enhanced security for military operations. Simultaneously, the company launched BlackNaute, a hybrid navigation solution that combines inertial sensors with GNSS capabilities to maintain accurate positioning even when satellite signals are compromised. The Executive Vice President of the company noted that these innovations provide a critical operational guarantee for forces operating in contested airspaces.
  • In December 2024, NovAtel, a brand of Hexagon, launched the GAJT-310, which was marketed as the company's smallest and lightest GNSS Anti-Jam Technology to date. This new product was engineered to provide assured positioning, navigation, and timing (A-PNT) by actively mitigating hostile radio frequency interference across land, air, and marine environments. The company stated that the system offers low-latency protection for both L1 and L2 bands, addressing the urgent need for robust defenses against jamming in unstable geopolitical zones. Its compact form factor allows for easy integration into space-constrained platforms, including small autonomous vehicles and drones.
  • In May 2024, Israel Aerospace Industries (IAI) unveiled the Compact ADA, a new jam-resistant Global Navigation Satellite System (GNSS) solution designed specifically for airborne tactical platforms. This advanced system was developed to protect sensitive avionic electronics from GNSS jamming interferences, which can disrupt essential positioning, navigation, and timing (PNT) functions. The company highlighted that the product features reduced size, weight, and power (SWaP) specifications, making it highly suitable for integration into unmanned aerial vehicles (UAVs) and guided munitions. The system ensures continuous operational availability in contested electronic warfare environments, leveraging the manufacturer's extensive history in developing immune navigation technologies.

Key Market Players

  • Raytheon Technologies Corporation
  • BAE Systems plc
  • Northrop Grumman Corporation
  • Thales Group
  • The Boeing Company
  • Lockheed Martin Corporation
  • Hexagon AB
  • L3Harris Technologies, Inc.
  • Advent International
  • Rockwell Collins, Inc.

By Receiver Type

By Anti Jamming Technique

By Application

By End User

By Region

  • Military & Government Grade and Commercial Transportation Grade
  • Nulling Technique
  • Beam Steering Technique and Civilian Techniques
  • Flight Control
  • Surveillance & Reconnaissance
  • Position and Others
  • Military and Civilian
  • North America
  • Europe
  • Asia Pacific
  • South America
  • Middle East & Africa

Report Scope:

In this report, the Global Anti Jamming Market has been segmented into the following categories, in addition to the industry trends which have also been detailed below:

  • Anti Jamming Market, By Receiver Type:
  • Military & Government Grade and Commercial Transportation Grade
  • Anti Jamming Market, By Anti Jamming Technique:
  • Nulling Technique
  • Beam Steering Technique and Civilian Techniques
  • Anti Jamming Market, By Application:
  • Flight Control
  • Surveillance & Reconnaissance
  • Position and Others
  • Anti Jamming Market, By End User:
  • Military and Civilian
  • Anti Jamming Market, By Region:
  • North America
    • United States
    • Canada
    • Mexico
  • Europe
    • France
    • United Kingdom
    • Italy
    • Germany
    • Spain
  • Asia Pacific
    • China
    • India
    • Japan
    • Australia
    • South Korea
  • South America
    • Brazil
    • Argentina
    • Colombia
  • Middle East & Africa
    • South Africa
    • Saudi Arabia
    • UAE

Competitive Landscape

Company Profiles: Detailed analysis of the major companies present in the Global Anti Jamming Market.

Available Customizations:

Global Anti Jamming Market report with the given market data, TechSci Research offers customizations according to a company's specific needs. The following customization options are available for the report:

Company Information

  • Detailed analysis and profiling of additional market players (up to five).

Global Anti Jamming Market is an upcoming report to be released soon. If you wish an early delivery of this report or want to confirm the date of release, please contact us at [email protected]

Table of content

Table of content

1.    Product Overview

1.1.  Market Definition

1.2.  Scope of the Market

1.2.1.  Markets Covered

1.2.2.  Years Considered for Study

1.2.3.  Key Market Segmentations

2.    Research Methodology

2.1.  Objective of the Study

2.2.  Baseline Methodology

2.3.  Key Industry Partners

2.4.  Major Association and Secondary Sources

2.5.  Forecasting Methodology

2.6.  Data Triangulation & Validation

2.7.  Assumptions and Limitations

3.    Executive Summary

3.1.  Overview of the Market

3.2.  Overview of Key Market Segmentations

3.3.  Overview of Key Market Players

3.4.  Overview of Key Regions/Countries

3.5.  Overview of Market Drivers, Challenges, Trends

4.    Voice of Customer

5.    Global Anti Jamming Market Outlook

5.1.  Market Size & Forecast

5.1.1.  By Value

5.2.  Market Share & Forecast

5.2.1.  By Receiver Type (Military & Government Grade and Commercial Transportation Grade)

5.2.2.  By Anti Jamming Technique (Nulling Technique, Beam Steering Technique and Civilian Techniques)

5.2.3.  By Application (Flight Control, Surveillance & Reconnaissance, Position and Others)

5.2.4.  By End User (Military and Civilian)

5.2.5.  By Region

5.2.6.  By Company (2025)

5.3.  Market Map

6.    North America Anti Jamming Market Outlook

6.1.  Market Size & Forecast

6.1.1.  By Value

6.2.  Market Share & Forecast

6.2.1.  By Receiver Type

6.2.2.  By Anti Jamming Technique

6.2.3.  By Application

6.2.4.  By End User

6.2.5.  By Country

6.3.    North America: Country Analysis

6.3.1.    United States Anti Jamming Market Outlook

6.3.1.1.  Market Size & Forecast

6.3.1.1.1.  By Value

6.3.1.2.  Market Share & Forecast

6.3.1.2.1.  By Receiver Type

6.3.1.2.2.  By Anti Jamming Technique

6.3.1.2.3.  By Application

6.3.1.2.4.  By End User

6.3.2.    Canada Anti Jamming Market Outlook

6.3.2.1.  Market Size & Forecast

6.3.2.1.1.  By Value

6.3.2.2.  Market Share & Forecast

6.3.2.2.1.  By Receiver Type

6.3.2.2.2.  By Anti Jamming Technique

6.3.2.2.3.  By Application

6.3.2.2.4.  By End User

6.3.3.    Mexico Anti Jamming Market Outlook

6.3.3.1.  Market Size & Forecast

6.3.3.1.1.  By Value

6.3.3.2.  Market Share & Forecast

6.3.3.2.1.  By Receiver Type

6.3.3.2.2.  By Anti Jamming Technique

6.3.3.2.3.  By Application

6.3.3.2.4.  By End User

7.    Europe Anti Jamming Market Outlook

7.1.  Market Size & Forecast

7.1.1.  By Value

7.2.  Market Share & Forecast

7.2.1.  By Receiver Type

7.2.2.  By Anti Jamming Technique

7.2.3.  By Application

7.2.4.  By End User

7.2.5.  By Country

7.3.    Europe: Country Analysis

7.3.1.    Germany Anti Jamming Market Outlook

7.3.1.1.  Market Size & Forecast

7.3.1.1.1.  By Value

7.3.1.2.  Market Share & Forecast

7.3.1.2.1.  By Receiver Type

7.3.1.2.2.  By Anti Jamming Technique

7.3.1.2.3.  By Application

7.3.1.2.4.  By End User

7.3.2.    France Anti Jamming Market Outlook

7.3.2.1.  Market Size & Forecast

7.3.2.1.1.  By Value

7.3.2.2.  Market Share & Forecast

7.3.2.2.1.  By Receiver Type

7.3.2.2.2.  By Anti Jamming Technique

7.3.2.2.3.  By Application

7.3.2.2.4.  By End User

7.3.3.    United Kingdom Anti Jamming Market Outlook

7.3.3.1.  Market Size & Forecast

7.3.3.1.1.  By Value

7.3.3.2.  Market Share & Forecast

7.3.3.2.1.  By Receiver Type

7.3.3.2.2.  By Anti Jamming Technique

7.3.3.2.3.  By Application

7.3.3.2.4.  By End User

7.3.4.    Italy Anti Jamming Market Outlook

7.3.4.1.  Market Size & Forecast

7.3.4.1.1.  By Value

7.3.4.2.  Market Share & Forecast

7.3.4.2.1.  By Receiver Type

7.3.4.2.2.  By Anti Jamming Technique

7.3.4.2.3.  By Application

7.3.4.2.4.  By End User

7.3.5.    Spain Anti Jamming Market Outlook

7.3.5.1.  Market Size & Forecast

7.3.5.1.1.  By Value

7.3.5.2.  Market Share & Forecast

7.3.5.2.1.  By Receiver Type

7.3.5.2.2.  By Anti Jamming Technique

7.3.5.2.3.  By Application

7.3.5.2.4.  By End User

8.    Asia Pacific Anti Jamming Market Outlook

8.1.  Market Size & Forecast

8.1.1.  By Value

8.2.  Market Share & Forecast

8.2.1.  By Receiver Type

8.2.2.  By Anti Jamming Technique

8.2.3.  By Application

8.2.4.  By End User

8.2.5.  By Country

8.3.    Asia Pacific: Country Analysis

8.3.1.    China Anti Jamming Market Outlook

8.3.1.1.  Market Size & Forecast

8.3.1.1.1.  By Value

8.3.1.2.  Market Share & Forecast

8.3.1.2.1.  By Receiver Type

8.3.1.2.2.  By Anti Jamming Technique

8.3.1.2.3.  By Application

8.3.1.2.4.  By End User

8.3.2.    India Anti Jamming Market Outlook

8.3.2.1.  Market Size & Forecast

8.3.2.1.1.  By Value

8.3.2.2.  Market Share & Forecast

8.3.2.2.1.  By Receiver Type

8.3.2.2.2.  By Anti Jamming Technique

8.3.2.2.3.  By Application

8.3.2.2.4.  By End User

8.3.3.    Japan Anti Jamming Market Outlook

8.3.3.1.  Market Size & Forecast

8.3.3.1.1.  By Value

8.3.3.2.  Market Share & Forecast

8.3.3.2.1.  By Receiver Type

8.3.3.2.2.  By Anti Jamming Technique

8.3.3.2.3.  By Application

8.3.3.2.4.  By End User

8.3.4.    South Korea Anti Jamming Market Outlook

8.3.4.1.  Market Size & Forecast

8.3.4.1.1.  By Value

8.3.4.2.  Market Share & Forecast

8.3.4.2.1.  By Receiver Type

8.3.4.2.2.  By Anti Jamming Technique

8.3.4.2.3.  By Application

8.3.4.2.4.  By End User

8.3.5.    Australia Anti Jamming Market Outlook

8.3.5.1.  Market Size & Forecast

8.3.5.1.1.  By Value

8.3.5.2.  Market Share & Forecast

8.3.5.2.1.  By Receiver Type

8.3.5.2.2.  By Anti Jamming Technique

8.3.5.2.3.  By Application

8.3.5.2.4.  By End User

9.    Middle East & Africa Anti Jamming Market Outlook

9.1.  Market Size & Forecast

9.1.1.  By Value

9.2.  Market Share & Forecast

9.2.1.  By Receiver Type

9.2.2.  By Anti Jamming Technique

9.2.3.  By Application

9.2.4.  By End User

9.2.5.  By Country

9.3.    Middle East & Africa: Country Analysis

9.3.1.    Saudi Arabia Anti Jamming Market Outlook

9.3.1.1.  Market Size & Forecast

9.3.1.1.1.  By Value

9.3.1.2.  Market Share & Forecast

9.3.1.2.1.  By Receiver Type

9.3.1.2.2.  By Anti Jamming Technique

9.3.1.2.3.  By Application

9.3.1.2.4.  By End User

9.3.2.    UAE Anti Jamming Market Outlook

9.3.2.1.  Market Size & Forecast

9.3.2.1.1.  By Value

9.3.2.2.  Market Share & Forecast

9.3.2.2.1.  By Receiver Type

9.3.2.2.2.  By Anti Jamming Technique

9.3.2.2.3.  By Application

9.3.2.2.4.  By End User

9.3.3.    South Africa Anti Jamming Market Outlook

9.3.3.1.  Market Size & Forecast

9.3.3.1.1.  By Value

9.3.3.2.  Market Share & Forecast

9.3.3.2.1.  By Receiver Type

9.3.3.2.2.  By Anti Jamming Technique

9.3.3.2.3.  By Application

9.3.3.2.4.  By End User

10.    South America Anti Jamming Market Outlook

10.1.  Market Size & Forecast

10.1.1.  By Value

10.2.  Market Share & Forecast

10.2.1.  By Receiver Type

10.2.2.  By Anti Jamming Technique

10.2.3.  By Application

10.2.4.  By End User

10.2.5.  By Country

10.3.    South America: Country Analysis

10.3.1.    Brazil Anti Jamming Market Outlook

10.3.1.1.  Market Size & Forecast

10.3.1.1.1.  By Value

10.3.1.2.  Market Share & Forecast

10.3.1.2.1.  By Receiver Type

10.3.1.2.2.  By Anti Jamming Technique

10.3.1.2.3.  By Application

10.3.1.2.4.  By End User

10.3.2.    Colombia Anti Jamming Market Outlook

10.3.2.1.  Market Size & Forecast

10.3.2.1.1.  By Value

10.3.2.2.  Market Share & Forecast

10.3.2.2.1.  By Receiver Type

10.3.2.2.2.  By Anti Jamming Technique

10.3.2.2.3.  By Application

10.3.2.2.4.  By End User

10.3.3.    Argentina Anti Jamming Market Outlook

10.3.3.1.  Market Size & Forecast

10.3.3.1.1.  By Value

10.3.3.2.  Market Share & Forecast

10.3.3.2.1.  By Receiver Type

10.3.3.2.2.  By Anti Jamming Technique

10.3.3.2.3.  By Application

10.3.3.2.4.  By End User

11.    Market Dynamics

11.1.  Drivers

11.2.  Challenges

12.    Market Trends & Developments

12.1.  Merger & Acquisition (If Any)

12.2.  Product Launches (If Any)

12.3.  Recent Developments

13.    Global Anti Jamming Market: SWOT Analysis

14.    Porter's Five Forces Analysis

14.1.  Competition in the Industry

14.2.  Potential of New Entrants

14.3.  Power of Suppliers

14.4.  Power of Customers

14.5.  Threat of Substitute Products

15.    Competitive Landscape

15.1.  Raytheon Technologies Corporation

15.1.1.  Business Overview

15.1.2.  Products & Services

15.1.3.  Recent Developments

15.1.4.  Key Personnel

15.1.5.  SWOT Analysis

15.2.  BAE Systems plc

15.3.  Northrop Grumman Corporation

15.4.  Thales Group

15.5.  The Boeing Company

15.6.  Lockheed Martin Corporation

15.7.  Hexagon AB

15.8.  L3Harris Technologies, Inc.

15.9.  Advent International

15.10.  Rockwell Collins, Inc.

16.    Strategic Recommendations

17.    About Us & Disclaimer

Figures and Tables

Frequently asked questions

Frequently asked questions

The market size of the Global Anti Jamming Market was estimated to be USD 5.12 Billion in 2025.

Asia Pacific is the dominating region in the Global Anti Jamming Market.

Flight control segment is the fastest growing segment in the Global Anti Jamming Market.

The Global Anti Jamming Market is expected to grow at 14.91% between 2026 to 2031.

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