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首页> 外文期刊>International journal of RF and microwave computer-aided engineering >Phase Compensating Dielectric Lens Design with Genetic Programming
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Phase Compensating Dielectric Lens Design with Genetic Programming

机译:遗传编程的相位补偿介电透镜设计

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This article illustrates a microwave dielectric lens design using genetic programming (GP), which, to the best knowledge of the authors, is the first time GP has been applied to design a microwave dielectric lens. A phase-compensating single layer lens and a quarter-wave phase-compensating multilayer dielectric lens, which uses four types of materials and a zoned structure, was designed using GP. The dielectric lens shape was designed using GP strategy, with a random initial shape, to compensate for the phase error of the multilayer dielectric lens and to achieve the required performance. Standard GP (SGP) and hierarchical fair competition genetic programming (HFC-GP) was applied to obtain the solution. The results show that this novel method of microwave lens shape design using GP is both accurate and stable. In addition, the simulation results of using high frequency simulation software (HFSS) are illustrated and compared.
机译:本文介绍了使用遗传编程(GP)的微波介电透镜设计,据作者所知,这是首次将GP用于设计微波介电透镜。使用GP设计了使用四种材料和分区结构的相位补偿单层透镜和四分之一波长相位补偿多层介电透镜。介电透镜的形状是使用GP策略设计的,具有随机的初始形状,以补偿多层介电透镜的相位误差并达到所需的性能。应用标准GP(SGP)和分层公平竞争遗传规划(HFC-GP)来获得解决方案。结果表明,使用GP进行微波透镜形状设计的新方法既准确又稳定。此外,还说明并比较了使用高频仿真软件(HFSS)的仿真结果。

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