市場調查報告書
商品編碼
1577115
到 2030 年 OTA(無線)測試市場預測:按組件、技術、最終用戶和地區分類的全球分析Over-the-Air Testing Market Forecasts to 2030 - Global Analysis By Component, Technology, End User and By Geography |
根據 Stratistics MRC 預測,2024 年全球 OTA(無線)測試市場規模將達到 30.07 億美元,預測期內複合年成長率為 12.2%,到 2030 年將達到 59.99 億美元。
OTA(無線)測試是指在現實環境中評估智慧型手機、平板電腦和物聯網設備等無線設備效能和功能的過程,無需實體連接。此測試對於評估設備與無線網路通訊和管理軟體更新的能力至關重要,特別是在涉及不同頻率和網路條件的場景中。這確保了設備可以有效地接收無線更新,這對於維護安全性、增強功能和修復錯誤至關重要。
愛立信預計,2019年至2027年間,全球5G用戶數預計將激增,從超過1,200萬增加到超過40億。根據愛立信行動報告,到 2024 年,5G 用戶預計將佔北美行動用戶的 55%。
物聯網設備和聯網汽車的增加
物聯網 (IoT) 設備和聯網車輛的快速普及大大增強了無線 (OTA) 測試技術。隨著這些設備在日常生活中變得越來越重要,透過高效的 OTA 測試確保可靠性和安全性變得至關重要。 OTA 測試允許製造商遠端更新軟體、修復錯誤並增強功能,而無需實體存取設備。這對於聯網汽車尤其重要,及時更新可以提高安全功能和使用者體驗。現有的物聯網設備數量龐大,導致測試變得複雜,例如不同的網路條件和不同的硬體配置,因此需要強大的 OTA 測試框架。
干擾問題
無線 (OTA) 測試中的干擾問題嚴重影響無線通訊評估的準確性和可靠性。 OTA 測試對於評估設備在現實環境中的表現至關重要,但來自其他設備的訊號、環境因素和電磁輻射等外部干擾的存在可能會導致結果出現偏差。此類干擾可能會導致對設備的通訊範圍、訊號強度和整體性能的錯誤估計。然而,這使得設備設計中的缺陷和弱點的識別變得複雜。
5G技術的興起
憑藉超低延遲、增加的頻寬和海量設備連接,5G 可實現更複雜和真實的測試環境。 OTA 測試評估設備在現實環境中與網路訊號通訊的能力。這對於檢驗資料吞吐量、訊號強度和干擾處理等效能指標至關重要。 5G 功能支援更廣泛的測試場景,例如評估波束成形和多輸入多輸出 (MIMO) 技術,這對於最佳化密集城市環境中的設備效能至關重要。此外,5G 的高資料速率有利於更快的測試週期和即時資料分析,使製造商能夠更有效地改進其產品。
技術複雜性
無線 (OTA) 測試對於評估無線設備的效能和可靠性至關重要,尤其是在物聯網和行動技術主導的環境中。然而,其實施涉及技術複雜性。這種複雜性源於對能夠準確模擬真實環境的複雜測試環境的需求,包括不同的訊號強度、干擾和移動場景。不同通訊協定(LTE、5G、Wi-Fi 等)的整合增加了複雜性,並且需要專門的設備和專業知識。對精確測量工具和校準方法的需求使測試過程進一步複雜化,因為差異可能會導致誤導結果。
COVID-19 的疫情對 OTA(無線)測試市場產生了重大影響。封鎖和社交距離措施導致測試設施暫時關閉,設備認證和產品發布也被推遲。遠端工作安排增加了額外的挑戰,限制了工程師使用測試設備並減少了故障排除所需的協作。供應鏈中斷阻礙了測試設定所需零件的可用性,進一步延長了時間。儘管面臨這些挑戰,疫情還是加速了數位解決方案的採用,促使一些公司探索遠端 OTA 測試技術和虛擬協作工具。
在預測期內,服務業預計將是最大的。
由於無線設備性能和可靠性的提高,服務業預計在預測期內將成為最大的行業。 OTA 測試評估設備透過無線電波有效通訊的能力,並模擬真實環境以評估訊號品質、天線性能和整體系統整合。這項增強功能對於確保設備滿足消費者對監管合規性和連接性的期望至關重要,尤其是在物聯網設備、智慧型手機和車載技術變得更加普遍的情況下。這些挑戰可以透過實施先進的調查方法來解決,例如全面的電磁相容性評估和即時資料分析。
預計航太和國防領域在預測期內的複合年成長率最高。
航太和國防領域預計在預測期內複合年成長率最高。 OTA 測試評估現實場景中的無線設備,模擬各種環境條件和操作場景,無需實體連接。這種方法對於依賴穩健且安全的資料傳輸的技術(例如雷達、衛星通訊和無人機)的開發和檢驗至關重要。提高 OTA 測試能力使製造商能夠在設計過程的早期發現潛在問題,從而縮短上市時間並提高整體系統效能。此外,隨著 5G 和物聯網技術的整合增加了通訊系統的複雜性,OTA 測試提供了一種靈活且擴充性的方法來滿足嚴格的監管要求和操作標準。
預計在預測期內,北美地區將佔據 OTA(無線)測試市場的最大佔有率。隨著 5G 網路和物聯網 (IoT) 的普及,OTA 測試對於確保設備在現實環境中無縫運作變得至關重要。這些進步實現了更快、更準確的測試過程,使製造商能夠在各種環境中檢驗設備性能,而不受有線設定的限制。波束成形和多輸入多輸出 (MIMO) 等增強型測試技術正在改善訊號品質和覆蓋率,這對於該地區的消費者滿意度至關重要。
由於制定了旨在確保無線通訊技術可靠性和安全性的嚴格標準,預計歐洲地區在預測期內將保持顯著成長。隨著連網型設備的迅速普及,這些法規促進了製造商必須遵守的統一測試框架,促進創新,同時保護消費者利益。歐洲電子通訊規範 (EECC) 和無線電設備指令 (RED) 等舉措旨在簡化合規流程,以確保設備符合不同環境下的效能標準。
According to Stratistics MRC, the Global Over-the-Air (OTA) Testing Market is accounted for $3.007 billion in 2024 and is expected to reach $5.999 billion by 2030 growing at a CAGR of 12.2% during the forecast period. Over-the-Air (OTA) testing refers to the process of evaluating the performance and functionality of wireless devices, such as smartphones, tablets, and IoT devices, in real-world conditions without the need for physical connections. This testing is crucial for assessing how well devices communicate with wireless networks and manage software updates, especially in scenarios involving different frequencies and network conditions. It ensures that devices can receive over-the-air updates efficiently, which is vital for maintaining security, enhancing functionality and fixing bugs.
According to Ericsson, 5G subscriptions are expected to skyrocket globally between 2019 and 2027, rising from over 12 million to over 4 billion. According to the Ericsson Mobility report, in the North American region, 5G subscriptions are predicted to account for 55% of mobile subscriptions by 2024.
Growing number of IoT devices and connected automobiles
The rapid proliferation of Internet of Things (IoT) devices and connected automobiles is significantly enhancing Over-the-Air (OTA) testing methodologies. As these devices become increasingly integral to daily life, ensuring their reliability and security through efficient OTA testing is paramount. OTA testing enables manufacturers to remotely update software, fix bugs, and enhance functionality without requiring physical access to the device. This is particularly crucial for connected vehicles, where timely updates can improve safety features and user experiences. The sheer volume of IoT devices introduces complexities in testing, such as varying network conditions and diverse hardware configurations, necessitating robust OTA testing frameworks.
Interference issues
Interference issues in Over-the-Air (OTA) testing significantly impede the accuracy and reliability of wireless communication evaluations. OTA testing is crucial for assessing how devices perform in real-world environments, yet the presence of external interference-such as signals from other devices, environmental factors, or electromagnetic radiation can skew results. This interference may lead to incorrect assessments of a device's range, signal strength and overall performance. However, it complicates the identification of faults or weaknesses in the device's design.
Rise of 5G technology
With its ultra-low latency, increased bandwidth, and massive device connectivity, 5G allows for more sophisticated and realistic testing environments. OTA testing involves assessing how well devices communicate with network signals in real-world conditions, which is essential for validating performance metrics like data throughput, signal strength, and interference handling. 5G's capabilities enable more extensive testing scenarios, including the evaluation of beamforming and MIMO (Multiple Input Multiple Output) technologies, which are vital for optimizing device performance in dense urban environments. Furthermore, the high-speed data rates of 5G facilitate faster testing cycles and real-time data analysis, allowing manufacturers to refine their products more efficiently.
Technical complexity
Over-the-Air (OTA) testing has become essential for evaluating the performance and reliability of wireless devices, particularly in a landscape dominated by IoT and mobile technology. However, its implementation faces significant technical complexity. This complexity arises from the need for sophisticated testing environments that can accurately simulate real-world conditions, including varying signal strengths, interference and mobility scenarios. The integration of diverse communication protocols (like LTE, 5G, and Wi-Fi) adds layers of intricacy, requiring specialized equipment and expertise. The necessity for precise measurement tools and calibration methods further complicates the testing process, as inconsistencies can lead to misleading results.
The COVID-19 pandemic significantly impacted Over-the-Air (OTA) testing market. Lockdowns and social distancing measures led to the temporary closure of testing facilities, causing delays in device certifications and product launches. Remote work arrangements posed additional challenges, limiting engineers' access to testing equipment and reducing collaborative efforts essential for troubleshooting. Supply chain disruptions hindered the availability of necessary components for testing setups, further prolonging timelines. Despite these challenges, the pandemic accelerated the adoption of digital solutions, prompting some companies to explore remote OTA testing techniques and virtual collaboration tools.
The Services segment is expected to be the largest during the forecast period
Services segment is expected to be the largest during the forecast period as it improves the performance and reliability of wireless devices. OTA Testing involves evaluating the device's ability to communicate effectively over radio waves, simulating real-world conditions to assess signal quality, antenna performance, and overall system integration. This enhancement is crucial for ensuring that devices meet regulatory compliance and consumer expectations for connectivity, especially with the growing prevalence of IoT devices, smartphones, and automotive technologies. By implementing advanced testing methodologies, including comprehensive electromagnetic compatibility assessments and real-time data analysis.
The Aerospace and Defense segment is expected to have the highest CAGR during the forecast period
Aerospace and Defense segment is expected to have the highest CAGR during the forecast period. OTA testing evaluates wireless devices in real-world scenarios without the need for physical connections, simulating various environmental conditions and operational scenarios. This method is crucial for the development and validation of technologies such as radar, satellite communications, and unmanned aerial vehicles, which rely on robust and secure data transmission. By improving OTA testing capabilities, manufacturers can identify potential issues early in the design process, reduce time-to-market and enhance overall system performance. Furthermore, as the complexity of communication systems increases with the integration of 5G and IoT technologies, OTA testing provides a flexible and scalable approach to meet stringent regulatory requirements and operational standards.
North America region is poised to dominate the largest share of the Over-the-Air (OTA) Testing Market over the extrapolated period. With the proliferation of 5G networks and the Internet of Things (IoT), OTA testing has become crucial for ensuring that devices operate seamlessly in real-world conditions. These advancements enable faster and more accurate testing processes, allowing manufacturers to validate device performance in various environments without the constraints of wired setups. Enhanced testing methods, such as beamforming and MIMO (Multiple Input Multiple Output), allow for better assessment of signal quality and coverage, which are vital for consumer satisfaction across the region.
Europe region is poised to hold substantial growth during the projected period of time by establishing stringent standards aimed at ensuring the reliability and safety of wireless communication technologies. With the rapid proliferation of connected devices, these regulations promote a uniform testing framework that manufacturers must adhere to, fostering innovation while safeguarding consumer interests. Initiatives such as the European Electronic Communications Code (EECC) and the Radio Equipment Directive (RED) are designed to streamline compliance processes ensuring that devices meet performance criteria across diverse environments.
Key players in the market
Some of the key players in Over-the-Air (OTA) Testing market include Agilent Technologies, Anritsu Corporation, Antenna Company, AT&T Labs, Bertin Technologies, Infineon Technologies, Keysight Technologies, Narda Safety Test Solutions, Nokia Corporation and Qualcomm Incorporated.
In March 2024, Keysight Technologies and ETS-Lindgren announced the launch of an industry-first OTA test solution for devices using narrowband non-terrestrial networks (NB-NTN), enabling cellular communication via satellite to enhance coverage in remote areas. This joint solution combines Keysight Technologies' NTN software with ETS-Lindgren's OTA test chambers, allowing manufacturers to assess device performance and ensure compliance with regulatory standards while supporting new use cases such as asset tracking and emergency services.
In October 2023, Tessolve has announced a collaboration with Airbiquity, one of the leading providers of connected vehicle services. This partnership heralds a new era of connected vehicles with Telematics Gateways, Over-The-Air (OTA) updates, and Data Logging solutions that promise enhanced connectivity, real-time updates, and predictive maintenance capabilities, ensuring safer, smarter, and more connected vehicles for the future.
In May 2023, Bluetest AB announced the launch of the TRU2 WLAN Reference Radio for Over-the-Air (OTA) testing. This radio features 4x4 MIMO radios for multiple frequency bands and supports all legacy Wireless Local-Area Network (WLAN) standards. It also features advanced capabilities for measuring data throughput and power levels through a high-speed 10 GbE interface.