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Accuracy improvement of the S-parameter adjoint sensitivity analysis for shape parameters

机译:形状参数的S参数伴随灵敏度分析的精度提高

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The electromagnetic adjoint-based sensitivity analysis uses an exact formula in the case of material parameters, which yields sensitivity accuracy comparable to that of the numerical field solution. For shape parameters, however, the non-analytical adjoint approaches rely on a field approximation - the adjoint-field mapping, which may affect the accuracy of the computed sensitivity. We show that in the self-adjoint S-parameter sensitivity analysis, this approximation affects the accuracy of the transmission coefficients only (i.e., Skj, k ne j). We show that the averaging of the sensitivity estimates for the assumed forward and backward perturbations improves significantly the accuracy making it comparable to that of the exact sensitivities. Examples include a waveguide dielectric-resonator filter and a waveguide impedance transformer. The field analysis is performed with a commercial finite-element solver while the sensitivity analysis is performed in MATLABreg.
机译:在材料参数的情况下,基于电磁伴随的灵敏度分析使用精确的公式,其灵敏度精度可与数值场解决方案相媲美。但是,对于形状参数,非分析伴随方法依赖于场近似-伴随场映射,这可能会影响所计算灵敏度的准确性。我们表明,在自伴S参数敏感性分析中,这种近似仅影响透射系数的精度(即S ,k nej)。我们表明,假设的正向和反向扰动的灵敏度估计值的平均值显着提高了准确性,使其可与精确的灵敏度相媲美。示例包括波导介质谐振器滤波器和波导阻抗变压器。现场分析是使用商用有限元求解器进行的,而灵敏度分析是在MATLAB reg 中进行的。

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