首页> 外文会议>IEEE MTT-S International Conference on Numerical Electromagnetic and Multiphysics Modeling and Optimization >Optimization of the Multi-Antiparallel Coil for Separation-Insensitive Mutual Inductance Using Ternary-Coding-Based Genetic Algorithm
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Optimization of the Multi-Antiparallel Coil for Separation-Insensitive Mutual Inductance Using Ternary-Coding-Based Genetic Algorithm

机译:基于三元编码遗传算法的分离不敏感互感的多反平行线圈优化

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摘要

Resorting to the superposition principle of mutual inductance, multi-antiparallel coil (MAC) is able to obtain stable mutual inductance as the separation between transmitting and receiving coils changes, which is attractive for range-stable wireless power transfer. This paper presents a new method for the optimal design of MAC. The status of every coil is denoted by a ternary code, and the status code is optimized by a genetic algorithm (GA) to maximize a properly designed fitness function. The global searching ability of GA allows for achieving better design performance than the point matching design method. Besides, with the aid of ternary coding, the GA searching space is limited, and the optimization effort can be reduced.
机译:求助于互感的叠加原理,多反平行线圈(MAC)能够获得稳定的互感,因为传输和接收线圈之间的分离变化,这对于范围稳定的无线电力传输是有吸引力的。本文介绍了Mac的最佳设计的新方法。每个线圈的状态由三元代码表示,状态码通过遗传算法(GA)进行优化,以最大化正确设计的适合功能。 GA的全球搜索能力允许实现比点匹配设计方法更好的设计性能。此外,借助三元编码,GA搜索空间有限,可以减少优化工作。

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