Statistical analysis of the power delay profile of a SIMO UHF backscatter RFID channel in an engine test bed

Hasan Noor Khan, J. Grosinger, Lukas Gortschacher, Dominik Amschl, P. Priller, U. Muehlmann, W. Bosch
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Abstract

The stringent constraint in any wireless communication system is the wireless channel itself. The indoor radio channel in an industrial environment exhibits a lot of multipath due to the prevalent metallic structures. In this research, an indoor radio channel is investigated in a severe multipath engine test bed environment. The study of this channel is undertaken for the applicability of a cost-efficient passive ultra high frequency radio frequency identification system capable of performing two dimensional localization of tagged objects in an engine test bed facility. The channel transfer functions were measured using a vector network analyzer. Vital channel characteristics investigated in this paper are the power delay profiles, the root mean square (RMS) delay and the power-ratio between the line of sight (LoS) and non-line of sight (NLoS) paths. The maximum RMS delay experienced is 47.1 ns and a minimum of 8.6 ns. The power-ratio values are appreciable for the majority of the LoS positions, but not satisfactory for the NLoS positions. Using this information, it will be helpful in analyzing the localization performance of a measurement-based system simulator or of a prospective hardware setup, in an engine test bed environment.
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发动机试验台SIMO超高频后向散射RFID信道功率延迟统计分析
在任何无线通信系统中,严格的约束是无线信道本身。工业环境下的室内无线电信道由于普遍存在金属结构而呈现出大量的多径。本研究以室内无线电信道为研究对象,在严酷的多径引擎试验台环境下进行研究。对该信道的研究是为了在发动机试验台设施中应用一种具有成本效益的无源超高频射频识别系统,该系统能够对标记物体进行二维定位。用矢量网络分析仪测量了信道传递函数。本文研究的重要信道特性是功率延迟曲线、均方根延迟以及视距路径与非视距路径的功率比。最大RMS延迟为47.1 ns,最小RMS延迟为8.6 ns。功率比值对于大多数LoS位置是可观的,但对于NLoS位置是不令人满意的。使用这些信息,将有助于分析基于测量的系统模拟器或未来硬件设置在发动机试验台环境中的定位性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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