基于伪随机负重力中心力优化的六元八木阵列设计

R. Formato
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引用次数: 1

摘要

使用中心力优化(CFO)和少量伪随机注入的负重力,对六元八木-乌达阵列进行了优化设计。CFO是一种简单的、确定性的元启发式方法,模拟重力运动学(质量在重力影响下的运动)。它在解决广泛的天线和其他问题方面非常有效,通常只使用正重力。在正重力作用下,本文描述的六元件CFO设计的八木阵列在阻抗带宽和正向增益方面表现出优异的性能。本文讨论了当CFO算法中注入少量负重力时会发生什么的问题。这样做有任何好处、消极还是中性的效果?在这种特殊情况下,负重力改善了CFO的探索,并创建了一个包含许多设计的最优性区域,这些设计的性能与仅用正重力发现的阵列相当或更好。如果没有一些负重力,这些阵列配置就会被忽略。这个八木-乌达阵列设计示例表明,使用确定性CFO优化或设计的天线可能会因包含少量负重力而受益,负重力方法值得进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Six-Element Yagi Array Designs Using Central Force Optimization with Pseudo Random Negative Gravity
A six-element Yagi-Uda array is optimally designed using Central Force Optimization (CFO) with a small amount of pseudo randomly injected negative gravity. CFO is a simple, deterministic metaheuristic analogizing gravitational kinematics (motion of masses under the influence of gravity). It has been very effective in addressing a wide range of antenna and other problems and normally employs only positive gravity. With positive gravity the six element CFO-designed Yagi array described here exhibits excellent performance with respect to the objectives of impedance bandwidth and forward gain. This paper addresses the question of what happens when a small amount of negative gravity is injected into the CFO algorithm. Does doing so have any effect, beneficial, negative or neutral? In this particular case negative gravity improves CFO’s exploration and creates a region of optimality containing many designs that perform about as well as or better than the array discovered with only positive gravity. Without some negative gravity these array configurations are overlooked. This Yagi-Uda array design example suggests that antennas optimized or designed using deterministic CFO may well benefit by including a small amount of negative gravity, and that the negative gravity approach merits further study.
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