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Feasible adjoint sensitivity technique for EM design optimization

机译:EM优化设计的可行伴随灵敏度技术

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摘要

An adjoint-variable approach to frequency-domain design sensitivity analysis is proposed for the optimization of high-frequency structures with full-wave electromagnetic solvers. We investigate sensitivity estimations based on a feasible perturbation technique which is versatile and requires only minor modifications of existing analysis algorithms. It extends the feasible adjoint-sensitivity technique previously applied in nonlinear microwave circuits to full-wave electromagnetic analysis. The solution to the adjoint problem is obtained with very little overhead once the original problem is solved. The gradient of the objective function is consequently computed through a single analysis regardless of the number of the design parameters. The concept is illustrated through the sensitivity analysis and the design of a Yagi-Uda array and a rectangular patch antenna using suitable method of moments simulators.
机译:提出了一种伴随变量的频域设计灵敏度分析方法,以优化具有全波电磁求解器的高频结构。我们研究基于一种可行的摄动技术的灵敏度估计,该摄动技术用途广泛,只需要对现有分析算法进行少量修改。它将先前在非线性微波电路中应用的可行的伴随灵敏度技术扩展到全波电磁分析。一旦解决原始问题,即可以很少的开销获得伴随问题的解决方案。因此,不管设计参数的数量如何,都可以通过一次分析来计算目标函数的梯度。通过使用合适的力矩模拟器方法对Yagi-Uda阵列和矩形贴片天线进行灵敏度分析和设计,可以说明这一概念。

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