Sparse Array Optimization with Directive Elements for Millimeter-wave Application

D. Goshi, T. Itoh
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引用次数: 1

Abstract

For many millimeter-wave phased array applications, system complexity and high implementation cost remains as its key limiting factors. These issues arise because of the intricacy of feeding networks and large amounts of RF circuitry that is required. This paper presents a method of sparse array optimization for millimeter-wave applications through the use of a genetic algorithm. By applying directive radiating elements for high resolution applications, the initial number of elements can be greatly reduced, helping to simplify the architecture in terms of feeding networks. This method demonstrates a 98.5% reduction in the total number of radiating elements while maintaining a peak sidelobe level below -15 dB, offering a drastic cost reduction on the overall system.
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面向毫米波应用的定向元稀疏阵列优化
对于许多毫米波相控阵应用来说,系统复杂性和高昂的实现成本仍然是其主要的限制因素。这些问题的出现是由于馈电网络的复杂性和所需的大量射频电路。本文提出了一种基于遗传算法的毫米波稀疏阵列优化方法。通过在高分辨率应用中应用指令辐射元件,可以大大减少元件的初始数量,有助于简化馈电网络方面的体系结构。该方法可将辐射元件总数减少98.5%,同时将峰值旁瓣电平保持在-15 dB以下,从而大大降低了整个系统的成本。
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