A Novel Spatio-Temporal Data Redundancy Elimination Approach for RFID Systems with Multiple Readers

Lucy Dash, Sayan Sen Sarma, K. Sinha, Bhabani P. Sinha
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Abstract

In this paper, we propose a Voronoi diagram based spatio-temporal data redundancy elimination approach for RFID systems having multiple readers so that every RFID tag will be read by only one reader depending on the distance between the tag and the center of the Minimum Enclosing Circle (MEC) of the Voronoi cell which the reader belongs to. Thus, the spatial redundancy in the gathered data is completely eliminated. Temporal redundancy is also minimized by reading the RFID tags at regular time intervals larger than an appropriately chosen threshold value. Existing methods of reducing data redundancy in RFID systems are often associated with loss of data, false positive errors and false negative errors. In contrast to this, our proposed technique is free from any false positive and false negative errors with no loss of data and every tag being read by only one single reader. Simulation of our proposed approach also establishes its superiority to the existing techniques in terms of these performance parameters.
多读卡器RFID系统时空数据冗余消除新方法
本文针对具有多个读取器的RFID系统,提出了一种基于Voronoi图的时空数据冗余消除方法,使每个RFID标签仅由一个读取器读取,这取决于标签与阅读器所属Voronoi单元的最小封闭圆(MEC)中心之间的距离。因此,在收集数据的空间冗余被完全消除。通过以大于适当选择的阈值的规则时间间隔读取RFID标签,时间冗余也被最小化。现有的减少RFID系统中数据冗余的方法往往与数据丢失、假阳性误差和假阴性误差有关。与此相反,我们提出的技术没有任何假阳性和假阴性错误,没有数据丢失,每个标签仅由一个阅读器读取。我们提出的方法的仿真也证明了它在这些性能参数方面优于现有技术。
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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