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Towards the Optimal Design of an RFID-Based Positioning System for the Ubiquitous Computing Environment

机译:面向无处不在的计算环境的基于RFID的定位系统的优化设计

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Positioning technology is a core component of the ubiquitous computing environment. Radio Frequency IDentificaiton (RFID) is recognized as a powerful means of replacing not only barcodes for product identification but also conventional positioning systems in unfavorable situations such as indoor and obstacle-laden sites. The objective of this study was to determine the design parameters of an RFID-based positioning system and to conduct a series of simulations in order to evaluate the impact of individual parameters on positional accuracy according to RMSE. The conclusions drawn from the experimentation are that (1) geometric distribution (triangular or square) of RFID tags is not a determining factor; (2) multiple-level ranging of reference tags can significantly improve positional accuracy; (3) the detection rate is the most significant factor in positional accuracy; (4) a smaller-percent standard deviation accompanies a larger fluctuation of positional accuracy; and (5) the detection range over the neighboring nodes is sufficient to achieve a reasonable accuracy.
机译:定位技术是无处不在的计算环境的核心组成部分。射频识别(RFID)被认为是一种强大的手段,它不仅可以代替条形码进行产品识别,而且还可以代替不利条件下的传统定位系统,例如室内和有障碍物的场所。这项研究的目的是确定基于RFID的定位系统的设计参数,并进行一系列仿真,以便根据RMSE评估各个参数对位置精度的影响。从实验得出的结论是:(1)RFID标签的几何分布(三角形或正方形)不是决定因素; (2)参考标签的多级测距可以显着提高定位精度; (3)检出率是定位精度的最重要因素; (4)标准偏差的百分比较小,而位置精度的波动较大; (5)相邻节点的检测范围足以达到合理的精度。

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