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Synthesis of Multi-Port Filtering Power Divider for Mixed Topology Using Matrix Optimization

机译:用矩阵优化合成混合拓扑的多端口过滤功率分配器

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摘要

In this brief, a direct synthesis method is proposed to extract the coupling matrix of multi-port filtering power divider (FPD) for mixed topology for the first time. Different from the existing cross-coupled configuration, extracted pole based topology containing non-resonating nodes (NRN) is introduced into the multi-port FPD network to eliminate some inherent limitations. All the elements of coupling matrix are obtained directly in the synthesis process by optimizing the cost function with the deigned Quantum Particle Swarm Optimization (QPSO) algorithm in this brief, avoiding evaluating the numerical value one by one from the conventional two-port filter synthesis method and eliminating the step of similarity transformations of the coupling matrix. Moreover, impedance matching has been considered to the FPD synthesis process to meet the comprehensive needs of more scenarios. Several numerical examples of FPD with equal/unequal power division ratios and arbitrary reference impedance, different responses for both symmetrical and asymmetrical mixed topologies are synthesized to verify the proposed synthesis method.
机译:在此简述中,提出了一种直接合成方法,以便首次提取用于混合拓扑的多端口过滤功率分配器(FPD)的耦合矩阵。与现有的交叉耦合配置不同,将基于极的磁极的拓扑拓扑(NRN)引入多端口FPD网络中以消除一些固有的限制。通过在本简要介绍中优化具有障碍量子粒子群优化(QPSO)算法的成本函数,通过优化成本函数在合成过程中直接获得耦合矩阵的所有元素。避免从传统的双端口滤波器合成方法中逐一评估数值并消除耦合矩阵的相似性变换的步骤。此外,已经考虑了阻抗匹配对FPD合成过程,以满足更多方案的综合需求。合成了具有相等/不等功率分割比率和任意参考阻抗的FPD的几个数值例子,对对称和不对称混合拓扑的不同反应是合成的,以验证所提出的合成方法。

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