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市場調查報告書
商品編碼
1871145
車聯網(V2X)通訊模組市場機會、成長促進因素、產業趨勢分析及預測(2025-2034年)Vehicle-to-Everything (V2X) Communication Module Market Opportunity, Growth Drivers, Industry Trend Analysis, and Forecast 2025 - 2034 |
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2024 年全球車聯網通訊模組市場價值為 11.3 億美元,預計到 2034 年將以 16.2% 的複合年成長率成長至 49.8 億美元。

由於對互聯出行需求的不斷成長、日益嚴格的安全法規以及自動駕駛和半自動駕駛汽車技術的演進,市場正經歷著快速發展。汽車製造商和一級供應商正在加速整合高性能V2X模組,以實現車輛、基礎設施、網路和行人之間的無縫通訊。這些先進模組正與低延遲5G和DSRC系統、邊緣AI處理器以及即時感測器融合技術相結合,以提升安全性、交通效率和駕駛自動化等級。各國政府正在加強監管並資助支持智慧交通系統的項目,從而鼓勵V2X技術在全球市場的部署。減少道路擁塞、降低排放和建立智慧交通系統的努力持續推動私人和公共交通領域對嵌入式V2X解決方案的需求。對於希望提昇道路安全和交通效率的汽車製造商和政府機構而言,將基於人工智慧的分析和遠端資訊處理技術整合到V2X模組中正成為一項戰略需求。這些模組正與自動駕駛汽車生態系統和ADAS平台整合,以提供即時環境感知、快速決策以及與周圍基礎設施和道路使用者的準確通訊。
| 市場範圍 | |
|---|---|
| 起始年份 | 2024 |
| 預測年份 | 2025-2034 |
| 起始值 | 11.3億美元 |
| 預測值 | 49.8億美元 |
| 複合年成長率 | 16.2% |
2024年,乘用車市佔率達到79%,預計到2034年將以15.8%的複合年成長率成長。這一主導地位主要得益於大眾市場和高階車型中智慧功能和互聯系統的積極推廣。現代乘用車如今依賴高頻寬、低延遲的模組來支援車道併線輔助、自適應巡航控制和緊急通訊等應用。隨著汽車製造商不斷致力於打造更安全、更智慧的駕駛體驗,預計乘用車中嵌入式V2X系統的應用將顯著擴展。
預計到2024年,OEM廠商將佔據73%的市場。這一領先地位主要歸功於車輛生產階段V2X通訊模組的廣泛整合。原始設備製造商傾向於將V2X技術直接嵌入新車型,以支援先進的車輛功能並確保符合全球汽車安全標準。原廠安裝的系統性能更佳,並可與智慧基礎設施、連網車輛和移動出行平台實現完全互通,這使得OEM廠商在與售後市場安裝的競爭中佔據明顯優勢。
2024年,美國車聯網(V2X)通訊模組市場佔86%的市場佔有率,市場規模達3.362億美元。美國在互聯和自動駕駛汽車平台中廣泛採用基於V2X的應用方面繼續保持領先地位。汽車製造商和系統供應商正在快速部署4G LTE和5G NR-V2X模組,以實現智慧車輛互動和高效的道路安全系統。在國家安全計畫和基礎設施現代化措施的大力支持下,V2X模組的部署正在高速公路、城區和物流走廊等區域迅速推進。
全球車聯網(V2X)通訊模組市場的主要參與者包括恩智浦半導體(NXP)、高通技術公司(Qualcomm Technologies)、瑞薩電子(Renesas Electronics)、意法半導體( STMicroelectronics) 、華為技術有限公司(Huawei Technologies)、電裝(Denso)、英式飛凌科技有限公司(Huawei Technologies)、電裝(Denso)、英凌科技有限公司(Huawei Technologies)、電裝Technologies)、博世(Bosch)、大陸集團(Continental)和Autotalks。這些企業正透過開發支援DSRC和蜂窩V2X技術的多協議模組來擴展其產品組合。他們正與汽車OEM廠商和基礎設施供應商建立策略合作夥伴關係,以確保無縫整合和互通性。對人工智慧驅動的邊緣運算和即時資料處理能力的投資有助於提高通訊速度和準確性。主要參與者也致力於在提高模組可靠性和能源效率的同時,確保符合區域和全球安全標準。
The Global Vehicle-to-Everything Communication Module Market was valued at USD 1.13 Billion in 2024 and is estimated to grow at a CAGR of 16.2% to reach USD 4.98 Billion by 2034.

The market is experiencing rapid acceleration due to rising demand for connected mobility, increasing safety mandates, and the evolution of autonomous and semi-autonomous vehicle technologies. Automakers and Tier-1 providers are ramping up integration of high-performance V2X modules that enable seamless communication between vehicles, infrastructure, networks, and pedestrians. These advanced modules are being deployed with low-latency 5G and DSRC systems, edge AI processors, and real-time sensor fusion technology to improve safety, traffic efficiency, and driving automation. Governments are strengthening regulations and funding projects that support intelligent transport systems, encouraging the deployment of V2X technologies across global markets. Efforts to reduce road congestion, lower emissions, and enable smart traffic systems continue to fuel demand for embedded V2X solutions in both private and public transportation sectors. The integration of AI-based analytics and telematics into V2X modules is becoming a strategic necessity for automakers and authorities looking to elevate road safety and transport efficiency. These modules are being integrated with autonomous vehicle ecosystems and ADAS platforms to provide real-time environment sensing, fast decision-making, and accurate communication with surrounding infrastructure and road users.
| Market Scope | |
|---|---|
| Start Year | 2024 |
| Forecast Year | 2025-2034 |
| Start Value | $1.13 Billion |
| Forecast Value | $4.98 Billion |
| CAGR | 16.2% |
The passenger vehicles segment held a 79% share in 2024 and will grow at a CAGR of 15.8% through 2034. This dominance is driven by the aggressive rollout of intelligent features and connected systems in mass-market and premium cars. Modern passenger vehicles now rely on high-bandwidth, low-latency modules to support applications such as lane merging assistance, adaptive cruise control, and emergency communication. As automakers continue their push toward safer and smarter driving experiences, the use of embedded V2X systems in passenger cars is expected to see significant scaling.
The OEMs segment held a 73% share in 2024. This leadership is due to the widespread integration of V2X communication modules during the vehicle production phase. Original equipment manufacturers prefer embedding V2X technologies directly into new models to support advanced vehicle features and ensure compliance with global automotive safety standards. Factory-installed systems offer better performance and allow full interoperability with smart infrastructure, connected vehicles, and mobility platforms, giving OEMs a clear edge over aftermarket installations.
United States Vehicle-to-Everything (V2X) Communication Module Market held an 86% share and generated USD 336.2 million in 2024. The country continues to lead with the wide adoption of V2X-based applications in connected and autonomous vehicle platforms. Automotive manufacturers and system providers are rapidly implementing 4G LTE and 5G NR-V2X modules to enable smart vehicle interactions and efficient road safety systems. With strong support from national safety programs and infrastructure modernization initiatives, V2X module deployments are gaining momentum across highways, urban zones, and logistics corridors.
Key players active in the Global Vehicle-to-Everything (V2X) Communication Module Market include NXP, Qualcomm Technologies, Renesas Electronics, STMicroelectronics, Huawei Technologies, Denso, Infineon Technologies, Bosch, Continental, and Autotalks. Companies operating in the Vehicle-to-Everything (V2X) Communication Module Market are expanding their portfolios by developing multi-protocol modules that support DSRC and cellular-V2X technologies simultaneously. They are forming strategic partnerships with automotive OEMs and infrastructure providers to ensure seamless integration and interoperability. Investments in AI-powered edge computing and real-time data processing capabilities are helping improve communication speed and accuracy. Key players are also focusing on achieving compliance with regional and global safety standards while enhancing module reliability and energy efficiency.