Al Kalaa Mohamad Omar, Seidman Seth J
Center for Devices and Radiological Health, U.S. Food and Drug Administration, Silver Spring, MD, USA.
IEEE Int Symp Electromagn Compat. 2019 Jul;2019:437-442. doi: 10.1109/isemc.2019.8825300. Epub 2019 Sep 5.
Exploiting unlicensed spectrum bands for cellular communication is a rapidly embraced trend by industry stakeholders. Accordingly, the specifications of Long Term Evolution (LTE) were extended in Release 13 to allow unlicensed spectrum operation, also known as LTE-Licensed Assisted Access (LAA). LTE is widely adopted, and there is a potential for significant coexistence impact of LTE-LAA on users of unlicensed spectrum including wireless medical devices, whether adopters of the new technology or incumbents. Therefore, work was initiated to revise and update the American National Standards Institute (ANSI) C63.27 standard for evaluation of wireless coexistence. This paper details the experimental work conducted at the Electromagnetic Compatibility and Wireless Laboratory, U.S. Food and Drug Administration, to investigate the use of LAA signals for wireless coexistence testing. A software defined radio platform was deployed to generate realistic LAA signals and measure the wireless coexistence impact on the LAA communication link. The equipment under test (EUT) used IEEE 802.11ac as an example incumbent technology in the 5 GHz band. The standardized radiated anechoic chamber method was used for testing. Results highlight the mutual coexistence impact of LAA in the 5 GHz band and suggest that selecting an LAA signal with the maximum possible channel time occupancy and the highest possible modulation and coding scheme (MCS) yields the most impactful coexistence situation on both the EUT and the LAA system.
利用未授权频谱频段进行蜂窝通信是行业利益相关者迅速接受的趋势。因此,长期演进(LTE)规范在版本13中进行了扩展,以允许未授权频谱操作,即所谓的LTE授权辅助接入(LAA)。LTE被广泛采用,LTE-LAA对包括无线医疗设备在内的未授权频谱用户(无论是新技术采用者还是现有用户)存在显著的共存影响潜力。因此,已启动工作来修订和更新美国国家标准学会(ANSI)C63.27无线共存评估标准。本文详细介绍了在美国食品药品监督管理局电磁兼容性与无线实验室开展的实验工作,以研究使用LAA信号进行无线共存测试的情况。部署了一个软件定义无线电平台来生成逼真的LAA信号,并测量无线共存对LAA通信链路的影响。被测设备(EUT)以5 GHz频段中的IEEE 802.11ac作为现有技术示例。测试采用标准化的电波暗室方法。结果突出了5 GHz频段中LAA的相互共存影响,并表明选择具有最大可能信道占用时间和最高可能调制与编码方案(MCS)的LAA信号会对EUT和LAA系统产生最显著的共存情况。