Memory efficient adjoint sensitivity analysis exploiting 3D time domain transmission line modeling

O. Ahmed, M. Bakr, Xun Li
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引用次数: 2

Abstract

We present a memory efficient implementation of transmission line modeling (TLM)-based adjoint sensitivities. In the original theory, all the transmission line voltage impulses are stored for all the perturbed cells at each time step for both the original and adjoint simulations. This storage can be extensive especially for problems with dielectric discontinuities. We show that only 10% of this storage is required to estimate the adjoint sensitivities with the same accuracy. Our technique exploits a factorization of the scattering matrix that eliminates redundancies in the stored impulses. This technique is illustrated through a three dimensional example that incorporates multiple parameters.
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利用三维时域传输线建模的存储器高效伴随灵敏度分析
我们提出了一种基于伴随灵敏度的传输线建模(TLM)的内存高效实现。在原始的理论和伴随的模拟中,所有的传输线电压脉冲都被存储在每个时间步的所有扰动单元中。这种存储可以是广泛的,特别是对于电介质不连续的问题。我们表明,仅需要10%的存储空间就可以以相同的精度估计伴随灵敏度。我们的技术利用散射矩阵的因式分解,消除了存储脉冲中的冗余。通过一个包含多个参数的三维示例来说明该技术。
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