Hubrechsen Anouk, Remley Kate A, Jones Robert D, Horansky Robert D, Neylon Vincent T, Bronckers Laurens A
Department of Electrical Engineering, Eindhoven University of Technology, 5612 AZ Eindhoven, The Netherlands.
RF Technology Division, National Institute of Standards and Technology, Boulder, CO 80305 USA.
Int J Microw Wirel Technol. 2021 Jul;13. doi: 10.1017/s1759078721000192.
New protocols related to internet-of-things applications may introduce previously unnoticed measurement effects in reverberation chambers due to the narrowband nature of these protocols. Such technologies also require less loading to meet the coherence-bandwidth conditions, which may lead to higher variations, hence uncertainties, across the channel. In this work, we extend a previous study of uncertainty in NB-IoT and CAT-M1 device measurements in reverberation chambers by providing, for the first time, a comprehensive uncertainty analysis of the components related to the reference and DUT measurements. By use of a significance test, we show that certain components of uncertainty become more dominant for such narrowband protocols, and cannot be considered as negligible, as in current standardized test methods. We show that the uncertainty, if not accounted for by using the extended formulation, will be greatly overestimated and could lead to non-compliance to standards.
与物联网应用相关的新协议可能会由于这些协议的窄带特性,在混响室中引入以前未被注意到的测量效应。此类技术也需要较少的负载来满足相干带宽条件,这可能会导致整个信道出现更高的变化,进而产生不确定性。在这项工作中,我们通过首次对与参考测量和被测设备(DUT)测量相关的组件进行全面的不确定性分析,扩展了之前关于混响室中窄带物联网(NB-IoT)和机器类通信1(CAT-M1)设备测量不确定性的研究。通过显著性检验,我们表明,对于此类窄带协议,某些不确定性组件变得更加显著,并且不能像当前标准化测试方法那样被视为可忽略不计。我们表明,如果不使用扩展公式来考虑不确定性,将会被大大高估,并且可能导致不符合标准。