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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Design of Clustered Planar Arrays for Microwave Wireless Power Transmission
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Design of Clustered Planar Arrays for Microwave Wireless Power Transmission

机译:微波无线电力传输的平面簇阵设计

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摘要

The design of microwave wireless power transmission systems sometimes requires the synthesis of large phased arrays, and the objective is to obtain the maximum beam collection efficiency (BCE). To reduce the feeding network complexity as well as system costs, subarray partition is usually indispensable, which is especially essential for large arrays in the context of long-range and high-power transmission applications. Through minimizing the difference between the subarrayed BCE and the reference one, the subarray partition problem can be reduced to an excitation matching one. Toward this end, a clustering method named k-means algorithm is adopted to determine the optimal subarray configuration. To assess the effectiveness and efficiency of the proposed method, representative examples on different sizes and shapes of transmitting arrays and receiving regions are presented. Moreover, comparisons with the state-of-the-art technique are reported as well.
机译:微波无线电力传输系统的设计有时需要合成大的相控阵,目的是获得最大的波束收集效率(BCE)。为了降低馈电网络的复杂性和系统成本,子阵列分区通常是必不可少的,这对于远程和大功率传输应用中的大型阵列尤其重要。通过最小化子阵列BCE与参考BCE之间的差异,可以将子阵列分区问题简化为激发匹配BCE。为此,采用一种称为k-means算法的聚类方法来确定最佳子阵列配置。为了评估该方法的有效性和效率,给出了有关发射阵列和接收区域的不同大小和形状的代表性示例。此外,还报告了与最新技术的比较。

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