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Single antenna physical layer collision recover receivers for RFID readers

机译:RFID阅读器的单天线物理层碰撞恢复接收器

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Radio Frequency Identification (RFID) systems often are operated in environments with multiple RFID tags. In such an environment, a conventional RFID system resolves collisions of multiple tags on the medium access control layer, discarding the signals of the physical layer. This paper proposes a zero-forcing and an interference cancellation receiver architecture for an RFID reader, to recover from collisions of two tags on a physical layer and identify tags successfully even in case of a collision. The expected throughput increase is approximately 1.6 times the throughput of a conventional reader. We explore the signal properties of collisions and propose a model for the physical layer. Moreover, we present a method for estimating the signal constellation states in a collision. The entire structure, including channel estimation and both of the proposed receivers are verified with data generated during a measurement. Additionally, performance simulations of the two structures with different channels are shown.
机译:射频识别(RFID)系统通常在具有多个RFID标签的环境中运行。在这样的环境中,常规的RFID系统解决了媒体访问控制层上的多个标签的冲突,从而丢弃了物理层的信号。本文提出了一种用于RFID读取器的强制零干扰消除接收机架构,以从物理层上两个标签的冲突中恢复并即使在发生冲突的情况下也能成功识别标签。预期的吞吐量增长约为传统阅读器吞吐量的1.6倍。我们探索了碰撞的信号特性,并为物理层提出了一个模型。此外,我们提出了一种估计碰撞中信号星座状态的方法。整个结构,包括信道估计和两个建议的接收器,均使用在测量期间生成的数据进行验证。此外,还显示了具有不同通道的两个结构的性能仿真。

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