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Design and optimize microwave/millimeter wave components by combining simulation software and genetic algorithm

机译:结合仿真软件和遗传算法设计和优化微波/毫米波分量

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Electromagnetic simulation software (EMSS) has many advantages such as friendly interface, modeling convenience and reliable simulation results. However, they are inadequate in optimization design. Genetic algorithm (GA) optimizers are robust, stochastic search methods. They are particularly effective to find an approximate global maximum/minimum in a high-dimension, multimodal function domain in a near-optimal manner. Combining EMSS and GA is expected to design and optimize microwave/millimeter wave components effectively such as antennas, filters, couplers, etc., and it is expected to save time and effort of engineers. In this paper, HFSS software, as an example, is combined with GA through VBScript to explicate the method and steps of the combination. Finally, the design and optimization of a compact ortho-mode transducer at Ka band is carried out as an example to demonstrate the validity of the EMSS and GA combination method.
机译:电磁仿真软件(EMSS)具有许多优点,例如友好的界面,建模方便和可靠的仿真结果。但是,它们不足以进行优化设计。遗传算法(GA)优化器是可靠的随机搜索方法。它们特别有效地以接近最佳的方式在高维,多峰函数域中找到近似的全局最大值/最小值。结合EMSS和GA,可以有效设计和优化微波/毫米波组件,例如天线,滤波器,耦合器等,并且可以节省工程师的时间和精力。本文以HFSS软件为例,通过VBScript将GA与GA结合使用,以说明结合的方法和步骤。最后,以Ka波段紧凑型正交振子的设计与优化为例,说明了EMSS与GA组合方法的有效性。

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