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Radiofrequency energy harvesting system based on a rectenna array in urban environments

机译:基于Undenna阵列在城市环境中的射频能量收集系统

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Energy harvesting has become very attractive due to the extended usage time of devices. Among several forms of recycling energy, radiofrequency (RF) harvesting has been suggested due to its wide availability mainly in urban areas. Its applications range from sensor nodes to charging low power consumption portable devices and depend on the amount of antennas. In this paper, we evaluate the feasible application of RF harvesting for charging a cell phone. To validate our analysis, we conduct an RF measurement campaign at four important locations in Brasilia, Brazil. Considering the average incidence of 11 dBm, we achieve the final value of 2.5 mW/m2. With an incident power of +10 dBm, only 2 rectennas per hour are needed to charge a cell phone whose battery is approximately 3.72 mWh. We perform a comparison between rectenna arrays and simple antennas directly connected to one external matching circuit, dismissing adaptive beamforming circuits as a way of avoiding intermediate energy losses. In order to apply RF energy harvesting in higher power consumption devices, we propose a rectenna array system which increases considerably the amount of recycled power. For both Line-of-Sight (LOS) and Non-Line-of-Sight (NLOS) paths, harvesting systems based on rectenna arrays outperform standard antenna array based solutions.
机译:由于设备的扩展使用时间,能量收集变得非常有吸引力。在几种形式的回收能量中,由于其主要可用性主要在城市地区,因此已经提出了射频(RF)收获。其应用范围从传感器节点到充电低功耗便携式设备并取决于天线的量。在本文中,我们评估了RF收集对充电手机的可行应用。为了验证我们的分析,我们在巴西巴拉西里亚的四个重要地点进行RF测量运动。考虑到11 dBm的平均发病率,我们达到2.5 mw / m2的最终值。由于入射功率为+10 dBm,需要每小时2个直线来为电池充电约3.72兆瓦的手机。我们在直接连接到一个外部匹配电路的REDENNA阵列和简单天线之间进行比较,拆除自适应波束形成电路作为避免中间能量损失的一种方式。为了在较高功耗设备中应用RF能量收集,我们提出了一个预矩阵阵列系统,该系统显着增加了再循环功率的量。对于视域(LOS)和非视线(NLOS)路径,基于RERGENNA阵列的收获系统优于基于标准的天线阵列的解决方案。

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