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Cognition-Driven Formulation of Space Mapping for Equal-Ripple Optimization of Microwave Filters

机译:微波滤波器等波纹优化的空间映射的认知驱动公式

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摘要

Space mapping is a recognized method for speeding up electromagnetic (EM) optimization. Existing space-mapping approaches belong to the class of surrogate-based optimization methods. This paper proposes a cognition-driven formulation of space mapping that does not require explicit surrogates. The proposed method is applied to EM-based filter optimization. The new technique utilizes two sets of intermediate feature space parameters, including feature frequency parameters and ripple height parameters. The design variables are mapped to the feature frequency parameters, which are further mapped to the ripple height parameters. By formulating the cognition-driven optimization directly in the feature space, our method increases optimization efficiency and the ability to avoid being trapped in local minima. The technique is suitable for design of filters with equal-ripple responses. It is illustrated by two microwave filter examples.
机译:空间映射是公认的加速电磁(EM)优化的方法。现有的空间映射方法属于基于代理的优化方法的一类。本文提出了一种认知驱动的空间映射方法,该方法不需要明确的替代方法。该方法应用于基于EM的滤波器优化。这项新技术利用了两组中间特征空间参数,包括特征频率参数和波纹高度参数。设计变量映射到特征频率参数,特征频率参数进一步映射到纹波高度参数。通过直接在特征空间中制定认知驱动的优化,我们的方法提高了优化效率,并避免了陷入局部极小值的能力。该技术适用于具有等波纹响应的滤波器设计。通过两个微波过滤器示例进行说明。

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