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Array Processing for RFID Tag Localization Exploiting Multi-Frequency Signals

机译:用于RFID标签定位的阵列处理利用多频信号

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RFID is an increasingly valuable business and technology tool for electronically identifying, locating, and tracking products, assets, and personnel. As a. result, precise positioning and tracking of RFID tags and readers have received considerable attention from both academic and industrial communities. Finding the position of RFID tags is considered an important task in various real-time locating systems (RTLS). As such, numerous RFID localization products have been developed for various applications. The majority of RFD positioning systems is based on the fusion of pieces of relevant information, such as the range and the direction-of-arrival (DOA). For example, trilateration can determine the tag position by using the range information of the tag estimated from three or more spatially separated reader antennas. Triangulation is another method to locate RFID tags that. use the direction-of-arrival (DOA) information estimated at multiple spatially separated locations. The RFID tag positions can also be determined through hybrid techniques that combine the range and DOA information. The focus of this paper to study the design and performance of the localization of passive R.FID tags using array processing techniques in a multipath environment, and exploiting multi-frequency CW signals. The latter are used to decorrelate the coherent multipath signals for effective DOA estimation and for the purpose of accurate range estimation. Accordingly, the spatial and frequency dimensionalities are fully utilized for robust and accurate positioning of RFID tags.
机译:RFID是一种越来越有价值的商业和技术工具,用于电子识别,定位和跟踪产品,资产和人员。作为一个。结果,RFID标签和读者的精确定位和跟踪来自学术和工业社区的大量关注。找到RFID标签的位置被认为是各种实时定位系统(RTL)中的重要任务。因此,已经开发了许多RFID本地化产品用于各种应用。大多数RFD定位系统基于相关信息的融合,例如范围和到达方向(DOA)。例如,三边可以通过使用从三个或更多个空间分离的读取器天线估计的标签的范围信息来确定标签位置。三角测量是定位RFID标签的另一种方法。使用在多个空间分离的位置估计的到达方向(DOA)信息。还可以通过组合范围和DOA信息的混合技术来确定RFID标签位置。本文的重点是使用多径环境中的阵列处理技术来研究无源R.FID标签本地化的设计和性能,并利用多频CW信号。后者用于使相干多径信号去筛,以实现有效的DOA估计和准确范围估计的目的。因此,空间和频率尺寸完全用于RFID标签的鲁棒和准确定位。

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