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DC power pattern analysis of N-by-N staggered pattern charge collector and N2 rectenna array

机译:N-BY-N交错图案电荷收集器的直流功率图案分析和N 2 indenna阵列

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This paper compares a 4-by-4 dipole staggered pattern charge collector (SPCC) rectenna array to a 16 dipole rectenna array arranged in a four series-four parallel configuration. While each of these energy harvesting circuits has an identical footprint, the SPCC has a DC power pattern which simultaneously provides high gain and wide beamwidth. This profile provides RF energy harvesting sensors with additional range and makes them less sensitivity to orientation. At 0.1 m range, the N2 rectenna has a peak DC voltage 20% larger than the SPCC, but the SPCC's beamwidth is 400% larger than the N2 rectenna array. At 1 m range, the SPCC beamwidth is 600% larger, and the peak voltage is 300% larger than the N2 rectenna control case.
机译:本文将4×4偶极交错图案电荷集电器(SPCC)intenna阵列与四个系列四个平行配置布置的16个偶极矩形阵列进行比较。 虽然这些能量收集电路中的每一个具有相同的占地面积,但是SPCC具有同时提供高增益和宽波束宽度的DC功率图案。 该配置文件提供RF能量收集传感器,具有额外的范围,使它们对方向的敏感性较小。 在0.1米范围内,N 2 纤维素的峰值直流电压大于SPCC 20%,但SPCC的波束宽度比N 2 RECTENNA阵列大400%。 在1米范围内,SPCC波束宽度较大600%,峰值电压大于n 2 indenna控制盒。

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