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Broadband HF Antenna Matching Network Design Using a Real-Coded Genetic Algorithm

机译:实编码遗传算法的宽带HF天线匹配网络设计

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A real-coded genetic algorithm was successfully applied to the matching network problem. Our approach reduces the search across different network topologies by the means of a generalized network description, in which the algorithm "decides" whether a reactive element is inductive or capacitive. Compared to previous analytical and semianalytical techniques that do not require a priori information about the network topology, this method is considerably simpler and its application is straightforward, regardless of the network complexity. Our approach accounts for constrained lossy elements, tolerances, and network on-site tuning. The results for a canonical load show the effectiveness of this method in comparison with other known methods. Finally, for HF broadband antennas, which involve network complexity limits and component value restrictions, it will be shown that the use of lossy networks may help to fulfil system requirements, with only a moderate impact on system efficiency
机译:实数编码遗传算法已成功应用于匹配网络问题。我们的方法通过广义的网络描述来减少跨不同网络拓扑的搜索,在该网络描述中,算法“确定”电抗性元件是电感性还是电容性。与不需要有关网络拓扑结构的先验信息的先前分析和半分析技术相比,此方法无论网络复杂程度如何,都非常简单,其应用也很简单。我们的方法考虑了受约束的有损元素,公差和网络现场调整。规范载荷的结果表明,与其他已知方法相比,该方法是有效的。最后,对于涉及网络复杂性限制和组件价值限制的HF宽带天线,将显示出,使用有损网络可能有助于满足系统要求,而对系统效率的影响很小

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