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An Optimized 2.4 GHz RF Energy Harvester for Energizing Low-Power Wireless Sensor Platforms

机译:优化的2.4 GHz RF能量收割机,用于激励低功耗无线传感器平台

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The lifetime of battery-operated sensor platforms (i.e., sensor nodes) is a critical issue. The replacement of their batteries is quite a challenging task if these platforms are deployed for detecting events in inaccessible geographical areas (e.g., forest). This paper describes an optimized RF energy harvester/scavenger (consisting of an antenna, impedance matching circuit and rectifier) for energizing low-power sensor platforms (electronic systems). Few nonmatched rectifiers (using HSMS-285X Schottky diodes) are fabricated to characterize the input impedance for different sets of parameters. After characterization a proper impedance matching circuit is integrated for the maximum power transfer from antenna to rectifier. It is shown that a single stage of RF rectifier is enough to produce output voltage of 1.8 V. Very few realizations of RF energy harvester are reported in the literature under 2.4 GHz ISM band category. Furthermore, high-gain microstrip patch array antennas are fabricated to capture the maximum power from the surroundings. The maximum harvesting range of 0.92 m is obtained at 27 dBm transmitting power level.
机译:电池操作的传感器平台(即传感器节点)的寿命是一个关键问题。如果这些平台部署用于检测无法访问的地理区域(例如,森林),则更换其电池是一个充满挑战的任务。本文介绍了用于激励低功率传感器平台(电子系统)的优化的RF能量收割机/清除剂(由天线,阻抗匹配电路和整流器)。少量非匹配的整流器(使用HSMS-285x Schottky二极管)被制造成表征不同参数集的输入阻抗。在表征之后,将来自天线的最大功率传输的最大功率传输集成了适当的阻抗匹配电路。结果表明,RF整流器的单级足以产生1.8 V的输出电压。在2.4 GHz ISM频段类别下的文献中报告了RF能量收割机的极少实现。此外,制造高增益微带贴片阵列天线以捕获周围环境的最大功率。在27 dBm发射功率水平下获得0.92米的最大收获范围。

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