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Synthesis of the Sparse Uniform-Amplitude Concentric Ring Transmitting Array for Optimal Microwave Power Transmission

机译:最优微波功率传输的稀疏均匀振幅同心环传输阵列的合成

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Beam capture efficiency (BCE) is one key factor of the overall efficiency for a microwave power transmission (MPT) system, while sparsification of a large-scale transmitting array has a practical significance. If all elements of the transmitting array are excited uniformly, the fabrication, maintenance, and feed network design would be greatly simplified. This paper describes the synthesis method of the sparse uniform-amplitude transmitting array with concentric ring layout using particle swarm optimization (PSO) algorithm while keeping a higher BCE. Based on this method, uniform exciting strategy, reduced number of elements, and a higher BCE are achieved simultaneously for optimal MPT. The numerical results of the sparse uniform-amplitude concentric ring arrays (SUACRAs) optimized by the proposed method are compared with those of the random-located uniform-amplitude array (RLUAA) and the stepped-amplitude array (SAA), both being reported in the literatures for the maximum BCE. Compared to the RLUAA, the SUACRA saves 32% elements with a 1.1% higher BCE. While compared to the SAA, the SUACRA saves 29.1% elements with a bit higher BCE. The proposed SUACRAs have higher BCEs, simple array arrangement and feed network, and could be used as the transmitting array for a large-scale MPT system.
机译:束捕获效率(BCE)是微波功率传输(MPT)系统总体效率的关键因素之一,而大规模传输阵列的稀疏化则具有实际意义。如果发射阵列的所有元件均被均匀激发,则制造,维护和馈电网络设计将大大简化。本文介绍了一种在保持较高BCE的同时,采用粒子群算法(PSO)合成具有同心环布局的稀疏均匀振幅发射阵列的方法。基于此方法,可以同时获得统一的激励策略,减少的元素数量和更高的BCE,以获得最佳的MPT。将该方法优化的稀疏均匀振幅同心环阵列(SUACRA)的数值结果与随机定位的均匀振幅阵列(RLUAA)和阶梯幅度阵列(SAA)的数值结果进行了比较有关最大BCE的文献。与RLUAA相比,SUACRA节省了32%的元素,而BCE则提高了1.1%。与SAA相比,SUACRA节省了29.1%的元素,而BCE则更高。所提出的SUACRA具有更高的BCE,简单的阵列布置和馈电网络,并且可以用作大型MPT系统的发射阵列。

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