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Adaptive TX Leakage Canceler for the UHF RFID Reader Front End Using a Direct Leaky Coupling Method

机译:采用直接泄漏耦合方法的UHF RFID阅读器前端的自适应TX泄漏消除器

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摘要

This paper presents a new adaptive leakage canceler based on a direct leaky coupling method for an RF front-end circuit of an ultrahigh-frequency radio-frequency identication (UHF RFID) reader. For better receiver sensitivity, the leakage signal from a transmitter (TX) to a receiver (RX) should be suppressed. Compared with conventional methods, the proposed TX leakage canceler has a much simpler circuit configuration due to the direct leaky coupling circuit (LCC) and the phase shifter on the RX path. The LCC includes a variable resistor, a variable capacitor, and an inductor, which allow us to control the magnitude and the phase of the coupled TX signal. The phase shifter that is located on the RX path even before the low-noise amplifier controls the phase of the TX leakage signal. For the worldwide RFID bands that spans from 840 to 960 MHz, the canceler must be adaptively controlled by using a microcontroller and control circuits. For the experimental verification, an RF front-end circuit with the proposed adaptive TX leakage canceler was designed and implemented for the UHF RFID reader. The implemented RF front-end block occupies only $54 times 54 hbox{mm}^{2}$ , except for the control block. From 840 to 960 MHz, the adaptively controlled RF front-end circuit exhibited significant cancelation characteristics for the TX–RX leakage signals. This results in more than twice longer reading distances for the commercial RFID tags compared with the cases without the adaptive canceler.
机译:本文针对超高频射频识别(UHF RFID)阅读器的射频前端电路,提出了一种基于直接泄漏耦合方法的新型自适应泄漏消除器。为了提高接收器灵敏度,应抑制从发射器(TX)到接收器(RX)的泄漏信号。与传统方法相比,由于直接泄漏耦合电路(LCC)和RX路径上的移相器,所提出的TX泄漏消除器的电路配置要简单得多。 LCC包括一个可变电阻器,一个可变电容器和一个电感器,它们使我们能够控制耦合的TX信号的幅度和相位。即使在低噪声放大器控制TX泄漏信号的相位之前,位于RX路径上的移相器。对于跨越840至960 MHz的全球RFID频段,必须使用微控制器和控制电路来自适应地控制抵消器。为了进行实验验证,针对UHF RFID阅读器设计并实现了带有建议的自适应TX泄漏消除器的RF前端电路。除控制模块外,已实现的RF前端模块仅占用$ 54乘以54 hbox {mm} ^ {2} $。从840到960 MHz,自适应控制的RF前端电路对TX-RX泄漏信号表现出明显的抵消特性。与没有自适应消除器的情况相比,这会使商用RFID标签的读取距离长两倍以上。

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