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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Reader Coverage Analysis for Multi-Carrier Passive UHF RFID Systems
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Reader Coverage Analysis for Multi-Carrier Passive UHF RFID Systems

机译:多载波无源UHF RFID系统的阅读器覆盖率分析

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Applications of passive radio frequency identification (RFID) systems have gained considerable attentions in recent years. Because a passive tag must obtain its operating power from a continuous wave transmitted from a reader in a conventional RFID system, reader coverage is limited. Thus, expanding reader coverage is a current goal in RFID research. In this work, passive tags are provided with additional operating power via continuous waves in multiple frequency bands. In an interrogation region, continuous wave emitters, which provide additional operating power to passive tags, are deployed according to the base station configuration in a cellular phone system. Because transmission power of continuous wave emitters must consider the reader command demodulation constraint and minimum operating power required by a tag, transmission power of continuous wave emitters must be chosen carefully. A method for analyzing reader coverage in multi-carrier passive UHF RFID systems is derived in this work. Assuming all tags are uniformly distributed in an interrogation region, the optimal continuous wave emitter transmission power that achieves the largest reader coverage can be analytically determined. Simulation results verify that continuous wave emitters with suitable transmission power expand reader coverage in a multi-carrier passive UHF RFID system. Additionally, adjusting reader power in the forward (reader-to-tag) link duration can loosen the reader command demodulation constraint and thereby further expand reader coverage.
机译:近年来,无源射频识别(RFID)系统的应用受到了广泛的关注。因为无源标签必须从常规RFID系统中从读取器发送的连续波中获取其工作功率,所以读取器的覆盖范围受到限制。因此,扩大阅读器的覆盖范围是RFID研究的当前目标。在这项工作中,无源标签通过多个频带中的连续波提供了额外的工作功率。在询问区域中,根据蜂窝电话系统中的基站配置,部署了向无源标签提供额外操作功率的连续波发射器。因为连续波发射器的发射功率必须考虑阅读器命令解调约束和标签所需的最小工作功率,所以必须谨慎选择连续波发射器的发射功率。本文提出了一种分析多载波无源UHF RFID系统中阅读器覆盖范围的方法。假设所有标签均匀地分布在询问区域中,则可以解析地确定实现最大读取器覆盖范围的最佳连续波发射器传输功率。仿真结果证明,具有合适传输功率的连续波发射器在多载波无源UHF RFID系统中扩展了读取器的覆盖范围。另外,在前向(读取器到标签)链接持续时间内调整读取器功率可以放宽读取器命令解调约束,从而进一步扩大读取器覆盖范围。

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