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GNSS Technology Market

Pages: 160 | Base Year: 2024 | Release: September 2025 | Author: Sunanda G.

Market Definition

Global navigation satellite system (GNSS) technology is a satellite-based positioning service that provides accurate location, navigation, and timing information. It enables precise mapping, vehicle tracking, and real-time route optimization across various sectors.

The scope of the market includes aviation navigation, maritime transport management, road fleet monitoring, precision agriculture, construction surveying, and emergency response coordination. Logistics companies, transportation operators, agricultural enterprises, and infrastructure developers implement GNSS technology to improve operational efficiency, enhance safety, and optimize resource utilization.

GNSS Technology Market Overview

The global GNSS technology market size was valued at USD 289.25 billion in 2024 and is projected to grow from USD 318.87 billion in 2025 to USD 683.26 billion by 2032, exhibiting a CAGR of 11.50% over the forecast period.

The market is expanding due to the growth in adoption of autonomous and connected vehicles, which rely on precise satellite positioning for navigation and safety systems. Additionally, advancements in multi-constellation and multi-frequency receivers enhance accuracy and reliability, supporting applications across transportation, mapping, and location-based services, thereby driving market adoption.

Key Highlights

  1. The GNSS technology industry size was valued at USD 289.25 billion in 2024.
  2. The market is projected to grow at a CAGR of 11.50% from 2025 to 2032.
  3. Asia Pacific held a market share of 35.72% in 2024, with a valuation of USD 103.32 billion.
  4. The global constellations segment garnered USD 191.92 billion in revenue in 2024.
  5. The navigation segment is expected to reach USD 304.56 billion by 2032.
  6. The automotive segment secured the largest revenue share of 31.25% in 2024.
  7. North America is anticipated to grow at a CAGR of 12.18% over the forecast period.

Major companies operating in the GNSS technology market are Trimble Inc., Garmin Ltd., Hexagon, Topcon Corporation, Septentrio N.V., Hemisphere GNSS, Inc., u-blox, FURUNO ELECTRIC CO., LTD., Qualcomm Technologies, Inc., Broadcom, MediaTek, STMicroelectronics, Intel Corporation, Texas Instruments Incorporated, and Quectel Wireless Solutions Co., Ltd.

GNSS Technology Market Size & Share, By Revenue, 2025-2032

Rising usage of navigation, ride-hailing, and mapping applications in smartphones is driving the growth of the market. Increasing dependence on accurate positioning is encouraging developers to integrate GNSS chips into mobile and wearable devices. Expanding urban transportation services are creating demand for real-time tracking, enhancing efficiency for drivers and passengers.

Moreover, the growing adoption of location-based advertising is supporting the need for precise geolocation capabilities in retail and marketing platforms. Rising investments in connected vehicle systems are increasing the requirement for reliable satellite-based navigation to improve route planning and safety.

  • In September 2024, the European GNSS Service Centre reported that two new Galileo satellites (Galileo 29 and 30) were integrated into the Galileo constellation, including validation of their navigation payloads across all signal bands (E5, E6, E1, and SAR).

Market Driver

Expansion of Autonomous and Connected Vehicles

The growing deployment of autonomous and connected vehicles is driving the growth of the GNSS technology market. Accurate satellite positioning is enabling self-driving systems to navigate safely through complex traffic environments. Expanding use of advanced driver assistance systems is increasing the need for precise location data to support lane keeping, adaptive cruise control, and collision avoidance. 

Rising integration of GNSS with onboard sensors is improving vehicle perception and route optimization. Additionally, increasing public investment in intelligent transportation infrastructure is supporting the adoption of GNSS solutions for vehicle-to-everything communication.

  • In May 2025, FocalPoint Positioning and STMicroelectronics integrated the S-GNSS Auto software into ST’s Teseo chipsets under the name Teseo + S-GNSS Auto. The combined solution improves GNSS signal resilience and measurement accuracy in complex multipath environments typical of urban canyons.

Market Challenge

Signal Interference and Vulnerability

A key challenge in the GNSS technology market is mitigating the risk of signal interference that affects positioning accuracy. GNSS signals are vulnerable to jamming, spoofing, and atmospheric disturbances, which can disrupt navigation and timing services. Such interruptions create reliability issues for applications in aviation, defense, logistics, and autonomous systems.

  • In July 2025, the Communications Regulatory Authority of Lithuania reported more than 1,022 instances of GPS interference recorded in June near the Russian enclave of Kaliningrad, up from 46 in the same month the previous year.

To address this challenge, market players are enhancing signal encryption, developing anti-jamming receivers, and deploying multi-frequency systems to improve resilience. These advancements are increasing operational reliability and supporting the expansion of GNSS technology across critical sectors.

  • In September 2024, Quectel launched the QLM29H dual-band, multi-constellation GNSS receiver series. The QLM29H supports L1 and L5 frequency bands and includes internal LNA, diplexer, and SAW filters to enhance anti-interference capability and mitigate multipath effects.

Market Trend

Advancements in Multi-Constellation and Multi-Frequency Receivers

A key trend in the GNSS technology market is the development of receivers supporting multiple constellations and signal frequencies. These receivers are combining inputs from Global Positioning System (GPS), Galileo, Global Navigation Satellite System (GLONASS), and BeiDou Navigation Satellite System (BDS) to maintain accurate positioning even in challenging environments.

  • In September 2024, Quectel launched the QLM29H GNSS receiver series. The QLM29H is a dual-band, multi-constellation GNSS smart antenna receiver. It supports GPS, GLONASS, Galileo, BDS, Navigation with Indian Constellation (NavIC), Quasi-Zenith Satellite System (QZSS), and Satellite-Based Others System (SBAS). It also offers approximately 1-meter accuracy in autonomous mode and delivers centimeter-level precision when using Real-Time Kinematic (RTK) positioning.

The use of multiple frequencies enhances resistance to ionospheric delays and signal interference, resulting in higher precision for critical applications. Industries including transportation, construction, agriculture, and surveying are adopting these devices to enhance operational reliability and efficiency. 

Growing requirements for precise positioning and reliable navigation in autonomous vehicles and smart infrastructure are encouraging investment in resilient, high-accuracy receivers. The market is advancing through solutions that increase positioning consistency and enable dependable navigation across diverse sectors.

GNSS Technology Market Report Snapshot

Segmentation

Details

By Type

Global Constellations, Regional Constellations, Satellite based Augmentation

By Application

Navigation, Mapping & Surveying, Location Based Services (LBS), Telematics, Others

By End User

Automotive, Aviation, Rail, Maritime, Agriculture, Others

By Region

North America: U.S., Canada, Mexico

Europe: France, UK, Spain, Germany, Italy, Russia, Rest of Europe

Asia-Pacific: China, Japan, India, Australia, ASEAN, South Korea, Rest of Asia-Pacific

Middle East & Africa: Turkey, U.A.E., Saudi Arabia, South Africa, Rest of Middle East & Africa

South America: Brazil, Argentina, Rest of South America

Market Segmentation

  • By Type (Global Constellations, Regional Constellations, and Satellite based Augmentation): The global constellations segment earned USD 191.92 billion in 2024, due to its ability to provide higher satellite coverage and improved positioning accuracy.
  • By Application (Navigation, Mapping & Surveying, Location Based Services (LBS), Telematics, and Others): The navigation segment held 44.70% of the market in 2024, due to the increasing demand for precise positioning in automotive, aviation, and personal navigation applications.
  • By End User (Automotive, Aviation, Rail, and Maritime, Agriculture, and Others): The automotive segment is projected to reach USD 229.92 billion by 2032, owing to the increasing integration of satellite navigation systems in vehicles for advanced driver-assistance, autonomous driving, and connected car applications.

GNSS Technology Market Regional Analysis

Based on region, the market has been classified into North America, Europe, Asia Pacific, Middle East & Africa, and South America.

GNSS Technology Market Size & Share, By Region, 2025-2032

The Asia Pacific GNSS technology market share stood at 35.72% in 2024, with a valuation of USD 103.32 billion. This dominance is due to the rapid expansion of smart mobility projects and digital infrastructure across the region. Governments are investing in intelligent transportation systems, high-speed rail corridors, and urban traffic management solutions that depend on precise satellite positioning.

  • In September 2025, Geely launched 11 satellites aboard its Smart Dragon-3 rocket as part of its GEESATCOM constellation. The launch increased the constellation size to 52 satellites, aiming for 64 satellites to achieve near-global IoT coverage. GEESATCOM supports connected vehicles, fleet management, emergency satellite communications, and “always-connected” services with network availability above 99.97%.

Telecom operators and technology firms are integrating GNSS services into 5G networks to support real-time navigation for connected vehicles. Large-scale logistics platforms are adopting multi constellation receivers to improve tracking accuracy for cross-border freight movement.

The GNSS technology industry in North America is expected to experience a significant CAGR of 12.18% over the forecast period. This growth is due to the rapid use of GNSS for aviation navigation and unmanned aerial vehicle operations in the region. 

Airlines and airport authorities are upgrading navigation systems to support satellite based landing procedures that improve efficiency in congested airspace. Drone operators are using high-accuracy receivers to enable surveying, package delivery, and infrastructure inspection.

  • In March 2025, Systork launched its Linnet GNSS modules, which are RTK-capable and provide centimetre-level accuracy for drone navigation and autonomous unmanned systems. The modules support multi-constellation reception (GPS, GLONASS, Galileo, BeiDou, QZSS), include onboard anti-jamming and anti-spoofing protection, and offer rugged design suited for UAVs in varied environments.

Moreover, federal authorities are supporting certification programs that include GNSS-based positioning for beyond visual line of sight flights. Equipment manufacturers are introducing rugged modules designed for commercial drones and aviation platforms. These developments are expanding the applications of satellite navigation within air transport and drone services across the region.

Regulatory Frameworks

  • The U.S. regulates GPS (Global Positioning System) through the Department of Defense and the National Space-Based Positioning, Navigation, and Timing Executive Committee, which defines service standards and long-term policies. The Federal Communications Commission enforces Section 302(b) of the Communications Act, banning the sale or use of signal jammers. The Federal Aviation Administration mandates compliance with Performance-Based Navigation rules that set accuracy, continuity, and integrity requirements for GNSS-based aircraft navigation and satellite-aided landing procedures.
  • The European Union (EU) regulates Galileo, its global navigation satellite system under the EU Space Programme and Galileo Services Regulation, which safeguard signal integrity, availability, and encrypted Public Regulated Service access. Agencies require member states to maintain security procedures for controlled service use. Satellite Others systems and GNSS-based aviation services must meet European Aviation Safety Agency certification standards.
  • China governs its BeiDou Navigation Satellite System through the China National Space Administration and the Ministry of Transport, which set standards for accuracy, signal integrity, and coverage. The Ministry of Industry and Information Technology certifies receivers and modules to ensure compatibility with domestic signals.
  • Japan regulates its Quasi-Zenith Satellite System under the Basic Space Law and publishes technical and performance specifications. These documents define signal characteristics, service availability, and interoperability with the Global Positioning System. Manufacturers supplying GNSS-enabled drones, vehicles, or mapping tools must meet strict reliability and accuracy standards for commercial deployment.
  • South Korea regulates GNSS through the Ministry of Land, Infrastructure and Transport, the Korea Communications Commission, and the Office of Civil Aviation. These agencies coordinate spectrum allocation, certify GNSS receivers, and manage anti-interference protections for navigation signals. Intelligent transport systems and drone operations must use equipment meeting national reliability standards.

Competitive Landscape

Major players in the GNSS technology industry are adopting strategies such as making significant investments in research and development, forming strategic partnerships, and advancing GNSS hardware and software technologies to remain competitive in the market. 

Market players are expanding capabilities for unmanned aerial vehicles, autonomous systems, and surveying applications. These approaches help companies sustain a strong position in a rapidly evolving and competitive market.

  • In September 2024, Trimble launched the APX RTX portfolio for UAV mapping. It integrates Trimble’s CenterPoint RTX real-time and post-mission direct georeferencing service to enable UAVs with centimeter-level positioning accuracy without using base stations. It offers GNSS-inertial hardware variants to support different flying heights, beyond-visual-line-of-sight (BVLOS) operations, and accurate roll, pitch, and heading measurements.

Key Companies in GNSS Technology Market:

  • Trimble Inc.
  • Garmin Ltd.
  • Hexagon
  • Topcon Corporation
  • Septentrio N.V.
  • Hemisphere GNSS, Inc.
  • u-blox
  • FURUNO ELECTRIC CO., LTD. 
  • Qualcomm Technologies, Inc. 
  • Broadcom
  • MediaTek
  • STMicroelectronics 
  • Intel Corporation
  • Texas Instruments Incorporated.
  • Quectel Wireless Solutions Co., Ltd.

Recent Developments (Product Launch/ Partnership/Collaboration)

  • In September 2025, ComNav Technology introduced its K9 series GNSS chips and upcoming M20X and M30X receivers at ION GNSS+ 2025. The K9 series supports all major global satellite systems and full-frequency signals and is compatible with positioning modes such as RTK, PPP, and SPP.
  • In September 2024, u-blox AG and Topcon Positioning Systems partnered to offer comprehensive GNSS positioning services with unmatched coverage. The two companies plan to combine their expertise and service infrastructure to deliver high-precision correction services globally. They aim to support mass-market applications such as autonomous vehicles, precision agriculture, smart construction equipment, and drone-based surveying.
  • In May 2024, ADI and Bynav collaborated to introduce a GNSS/INS (Inertial Navigation System) receiver board named A1 GNSS/INS. The device is designed to provide stable, high-precision positioning and attitude estimation in harsh environments such as tunnels, elevated roads, urban canyons, or under foliage.

Frequently Asked Questions

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