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Improved Design Optimization for High-Efficiency Matching Networks

机译:高效匹配网络的改进设计优化

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Multistage matching networks are often utilized to provide voltage or current gains in resonant conversion applications, such as large conversion ratio power converters and wireless power transfer. In the conventional approach, each stage of a multistage matching network is designed to have a purely resistive input impedance and assumed to be loaded by a purely resistive load. This paper introduces an improved design optimization approach for multistage matching networks comprising L-section stages. The proposed design optimization approach explores the possibility of improvement in efficiency of the network by allowing the L-section stages to have complex input and load impedances. A new analytical framework is developed to determine the effective transformation ratio and efficiency of each stage for the case when input and load impedances may be complex. The method of Lagrange multipliers is used to determine the gain and impedance characteristics of each stage in the matching network that maximize overall efficiency. Compared with the conventional design approach for matching networks, the proposed approach achieves higher efficiency, resulting in loss reduction of up to 35% for a three-stage L-section matching network. The theoretical predictions are validated experimentally using a three-stage matching network designed for 1 MHz and 100 W operation.
机译:在谐振转换应用(例如大转换比功率转换器和无线功率传输)中,通常使用多级匹配网络来提供电压或电流增益。在常规方法中,将多级匹配网络的每一级设计为具有纯电阻性输入阻抗,并假定由纯电阻性负载加载。本文介绍了一种针对包含L型截面阶段的多阶段匹配网络的改进的设计优化方法。所提出的设计优化方法探索了通过允许L型段具有复杂的输入阻抗和负载阻抗来提高网络效率的可能性。针对输入和负载阻抗可能很复杂的情况,开发了一种新的分析框架来确定每个阶段的有效转换率和效率。拉格朗日乘法器的方法用于确定匹配网络中每个阶段的增益和阻抗特性,从而使整体效率最大化。与传统的匹配网络设计方法相比,该方法实现了更高的效率,从而使三段式L型截面匹配网络的损耗降低了35%。使用为1 MHz和100 W操作设计的三级匹配网络,通过实验验证了理论预测。

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