ArPat:仅用边界标签就能精确定位RFID阅读器

Guanglian Liu, Shigeng Zhang, Jianxin Wang, Xuan Liu
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引用次数: 1

摘要

射频识别(RFID)技术为室内环境中的位置发现提供了一个很有前途的解决方案。现有的RFID读写器定位算法通常使用收集到的所有参考标签来确定目标读写器的位置,这不仅耗时,而且容易受到读写器与参考标签之间通信不正常的影响。特别是当目标读者靠近墙壁或在角落时,它们通常表现不佳。在本文中,我们提出了一种精确的RFID阅读器定位算法ArPat,该算法仅使用边界参考标签来计算阅读器的位置。ArPat仅使用边界标签来确定目标阅读器的位置,有效减轻了通信不规范对定位精度的负面影响。当参考标签之间的间距为1英尺时,ArPat的定位精度高于0.2英尺。与最先进的RFID读取器定位解决方案相比,ArPat的定位精度平均提高了42%和36%。此外,它采用了几何方法,而不是以往的迭代优化方法,使其具有更好的时间效率。与以往的解决方案相比,ArPat的计算时间缩短了近两个数量级。这对于提供实时位置发现和跟踪服务的定位系统至关重要。
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ArPat: Accurate RFID reader positioning with mere boundary tags
The Radio Frequency IDentification (RFID) technology provides a promising solution to location discovery in indoor environments. Existing RFID reader positioning algorithms usually use all the collected reference tags to determine the position of the target reader, and thus are time-consuming as well as susceptible to the communication irregularity between the reader and reference tags. Especially, they usually perform poorly when the target reader is near the wall or at the corner. In this paper, we propose ArPat, an Accurate RFID reader Positioning algorithm that uses mere boundary reference Tags to calculate the position of the reader. ArPat uses only boundary tags to determine the position of the target reader, which effectively mitigates the negative impact of communication irregularity on the localization accuracy. The localization accuracy of ArPat is higher than 0.2 ft when the space between references tags is 1 ft. Compared with state-of-the-art solutions for RFID reader positioning, ArPat improves localization accuracy by up to 42 percent and 36 percent on average. Furthermore, it uses a geometric approach rather than iterative optimization approaches employed by previous solutions, making it superior in time efficiency. Compared with previous solutions, the computational time of ArPat is nearly two orders of magnitude less. This is critical for a localization system to provide real time location discovery and tracking services.
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