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An Impedance Matching Strategy for Micro-Scale RF Energy Harvesting Systems

机译:微尺度射频能量收集系统的阻抗匹配策略

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Radio frequency (RF) energy harvesting is widely adopted as an alternative source of energy to power a wireless sensor node or an Internet of Things (IoT) node. In order to extract maximum power from an RF energy source, variations in an RF to DC converter (RDC) input impedance with input power should be taken into account. This brief demonstrates that a tunable impedance matching strategy is essential to track the changes in input impedance to ensure maximum power transfer across the desired input power levels. A two-state tunable matching network is proposed to track variations in input impedance with the input power of an RDC with a load of 10 k Omega, and at an operating frequency of 953 MHz. The proposed impedance matching network and the RDC are designed using 0.18-mu m CMOS technology node. Circuit simulations demonstrate that the proposed matching strategy extends the input power range over which maximum power transfer occurs by 5 dBm and 13 dBm in comparison to a fixed matching network designed at -24 and -18 dBm, respectively.
机译:射频(RF)能量收集被广泛采用作为供电无线传感器节点或物联网(物联网)节点的替代能量来源。为了从RF能量源中提取最大功率,应考虑RF到DC转换器(RDC)输入阻抗的RF与输入功率的变化。本简要介绍了可调谐阻抗匹配策略对于跟踪输入阻抗的变化至关重要,以确保在所需输入功率水平上的最大功率传输。提出了一种双态可调匹配网络,以跟踪输入阻抗的变化,其具有10k欧米加的负载的RDC的输入功率,并且在953MHz的工作频率下。所提出的阻抗匹配网络和RDC使用0.18-MU M CMOS技术节点设计。电路模拟表明,所提出的匹配策略扩展了与在-24和-18dBm设计的固定匹配网络相比的最大功率传输的输入功率范围,其5 dBm和13 dBm。

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