Negotiate power and performance in the reality of RFID systems

Xunteng Xu, Lin Gu, Jianping Wang, G. Xing
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引用次数: 30

Abstract

Recent years have witnessed the wide adoption of the RFID technology in many important application domains including logistics, inventory, retailing, public transportation, and security. Though RFID tags (transponders) can be passive, the high power consumption of RFID readers (interrogators) has become a critical issue as handheld and mobile readers are increasingly available in pervasive computing environments. Moreover, high transmission power aggravates interference, complicating the deployment and operation of RFID systems. In this paper, we present an energy-efficient RFID inventory algorithm called Automatic Power Stepping (APS). The design of APS is based on extensive empirical study on passive tags, and takes into consideration several important details such as tag response states and variable slot lengths. APS dynamically estimates the number of tags to be read, incrementally adjusts power level to use sufficient but not excessive power for communication, and consequently reduces both the energy consumption for reading a set of tags and the possibility of collisions. We design APS to be compatible with the current Class-1 Generation-2 RFID standards and hence a reader running APS can interact with existing commercial tags without modification. We have implemented APS both on the NI RFID testing platform and in a high-fidelity simulator. The evaluation shows that APS can save more than 60% energy used by RFID readers.
协商功率和性能在RFID系统的现实
近年来,RFID技术在物流、库存、零售、公共交通和安全等许多重要应用领域得到了广泛的应用。虽然RFID标签(应答器)可以是无源的,但是随着手持式和移动式阅读器在普适计算环境中的日益普及,RFID阅读器(询问器)的高功耗已经成为一个关键问题。此外,高传输功率加剧了干扰,使RFID系统的部署和运行复杂化。在本文中,我们提出了一种称为自动功率步进(APS)的节能RFID库存算法。APS的设计基于对无源标签的广泛实证研究,并考虑了标签响应状态和可变插槽长度等几个重要细节。APS动态估计需要读取的标签数量,逐步调整功率水平以使用足够而不是过度的通信功率,从而减少读取一组标签的能量消耗和碰撞的可能性。我们设计的APS与目前的1类第2代RFID标准兼容,因此运行APS的阅读器可以与现有的商业标签交互而无需修改。我们已经在NI RFID测试平台和高保真模拟器上实现了APS。评估表明,APS可以节省RFID阅读器60%以上的能耗。
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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