用于精确宽带测距的UHF-RFID反向散射信道分析

Stefan Hinteregger, Josef Kulmer, M. Goller, Florian Galler, H. Arthaber, K. Witrisal
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引用次数: 11

摘要

超高频射频识别的定位和测距高度依赖于信道特性。基于飞行时间的测距系统的精度从根本上受到可用带宽的限制。本文首先分析了由各组成信道卷积形成的超高频RFID后向散射信道。为此,我们在两种典型场景下进行了全面的宽带信道测量,并分析了视距分量、均方根延迟扩展和相干距离的专家k因子,这些因素都会影响潜在的定位性能。基于这些测量,我们验证了在密集多路径影响下基于飞行时间的测距的cram Rao下界,并提出了两种类型的距离估计器,最大似然和匹配滤波方法。由此产生的距离估计强调了UHF RFID系统在基于飞行时间的测距方面需要增加带宽。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
UHF-RFID backscatter channel analysis for accurate wideband ranging
Positioning and ranging within UHF RFID are highly dependent on the channel characteristics. The accuracy of time-of-flight based ranging systems is fundamentally limited by the available bandwidth. This paper first analyzes the UHF RFID backscatter channel formed by convolution of the individual constituent channels. For this purpose, we present comprehensive wideband channel measurements in two representative scenarios and an analysis with respect to the Rician K-factor for the line-of-sight component, the root-mean-square delay spread, and the coherence distance, which all influence the potential positioning performance. Based on these measurements, we validate the Cramér Rao lower bound for time-of-flight based ranging under the influence of dense multipath and present two types of range estimators, a maximum likelihood and a matched filter approach. The resulting range estimates highlight the need for an increased bandwidth for UHF RFID systems with respect to time-of-flight based ranging.
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