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Adaptive-cross-approximation-based acceleration of transient analysis of quasi-static partial element equivalent circuits

机译:基于自适应交叉逼近的准静态部分元件等效电路瞬态分析的加速度

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摘要

A new formulation of the partial element equivalent circuit (PEEC) method is presented, which is well suited to be combined with compression and matrix–vector product acceleration techniques. In particular, taking advantage of the rank-deficiency of the magnetic and electric field couplings, the adaptive cross approximation (ACA) technique is firstly, adopted to compress PEEC interaction matrices, namely partial inductances and coefficients of potential matrices. Differently from the use of ACA in conjunction with the method of moments, in this study, magnetic and electric field couplings are kept distinct, thus allowing to efficiently compress both magnetic and electric field interaction matrices. Secondly, the compressed matrices are used to accelerate the transient analysis of PEEC circuits. Indeed, Kirchoff voltage and current laws are enforced to PEEC circuits so that matrix–vector products involving the interaction matrices can be significantly accelerated in virtue of their compression, thus leading to very good speed-ups when using iterative solvers like the generalised method of residuals algorithm. Numerical results demonstrate the validity, accuracy and performance of the proposed approach in terms of both memory usage saving and transient analysis speed-up.
机译:提出了一种新的部分元素等效电路(PEEC)方法的公式,该方法非常适合与压缩和矩阵矢量乘积加速技术结合使用。特别地,首先利用磁场和电场耦合的秩不足,首先采用自适应交叉逼近(ACA)技术来压缩PEEC交互矩阵,即部分电感和势矩阵的系数。与将ACA与矩量法结合使用不同,在这项研究中,磁场和电场耦合保持不同,从而可以有效地压缩磁场和电场相互作用矩阵。其次,使用压缩矩阵来加速PEEC电路的瞬态分析。确实,基尔霍夫电压和电流定律适用于PEEC电路,因此涉及相互作用矩阵的矩阵向量乘积可以通过其压缩而显着加速,从而在使用迭代求解器(如通用残差方法)时可以实现非常好的加速算法。数值结果证明了该方法在节省内存使用量和提高瞬态分析速度方面的有效性,准确性和性能。

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