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Fundamental bounds on RSS-based wireless localization in passive UHF RFID systems

机译:无源UHF RFID系统中基于RSS的无线定位的基本界限

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Radio-Frequency IDentification (RFID) systems carry critical importance for reaping the benefits of a diverse set of applications that will be enabled by the emerging Internet of Things (IoT). In particular, RFID based position estimation and tracking will facilitate a wide array of location based services. Considering a monostatic RFID configuration with a three dimensional antenna radiation pattern, this paper investigates the limits of localization accuracy for received signal strength (RSS) based wireless localization using passive UHF RFID systems. The Cramer-Rao Lower Bound (CRLB) for the localization accuracy are derived, and are compared with the localization accuracy of maximum likelihood estimators for various RFID antenna topologies. Numerical results show that due to the directional antenna pattern used in RFID systems, the localization accuracy can degrade at blind locations that remain outside of the RFID readers' main beam patterns.Cramer-Rao Lower Bound (CRLB) for the localization accuracy are derived, and are compared with the localization accuracy of maximum likelihood estimators for various RFID antenna topologies. Numerical results show that due to the directional antenna
机译:射频识别(RFID)系统具有重要的重要性,可获得各种应用程序的益处,这些应用程序将被新兴的物联网(IOT)启用。特别地,基于RFID的位置估计和跟踪将有助于广泛的基于位置的服务。考虑具有三维天线辐射图案的单基RFID配置,本文研究了定位精度的用于使用被动UHF RFID系统基于无线定位接收信号强度(RSS)的限制。推导出用于定位精度的Cramer-Rao下限(CRLB),并与各种RFID天线拓扑的最大似然估计器的定位精度进行比较。数值结果表明,由于RFID系统中使用的定向天线模式,定位精度可以在RFID读取器主光束图案之外的盲位置降低。推导了本地化精度的克明-RAO下限(CRLB)。并与各种RFID天线拓扑的最大似然估计的定位精度进行比较。数值结果表明,由于方向天线

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