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Multi-antenna techniques for enabling passive RFID tags and sensors at microwave frequencies

机译:多天线技术可在微波频率下启用无源RFID标签和传感器

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摘要

Multi-antenna techniques are typically avoided in passive RFID because of the large footprints required. However, the smaller footprints required at microwave frequencies such as the 5.8 GHz industrial, scientific, and medical (ISM) band allow the use of multiple antennas. Two new multi-antenna technologies are featured in this paper to provide power and communications to a passive wireless tag in the 5.8 GHz ISM band. A four-layer FR-4 PCB is presented, which uses a staggered-pattern charge collector (SPCC) and a retrodirective array phase modulator (RAPM). An SPCC is an energy harvester that has two independent antenna arrays. These arrays provide increased gain and beamwidth over a single-antenna source. A RAPM backscatters the reader-transmitted signal directly back to the reader and provides quadrature phase-shift keyed (QPSK) signaling.
机译:由于所需的占用空间大,因此在无源RFID中通常避免使用多天线技术。但是,在微波频率(例如5.8 GHz工业,科学和医学(ISM)频段)上所需的更小的占位面积允许使用多个天线。本文介绍了两种新的多天线技术,可为5.8 GHz ISM频段的无源无线标签提供电源和通信。提出了一种四层FR-4 PCB,它使用了交错模式电荷收集器(SPCC)和逆向阵列相位调制器(RAPM)。 SPCC是具有两个独立天线阵列的能量收集器。这些阵列在单天线源上提供了增加的增益和波束宽度。 RAPM将阅读器传输的信号直接反向散射回阅读器,并提供正交相移键控(QPSK)信号。

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