Optimal algorithm for the numerical inversion Laplace transforms method in a multiconductor transmission line system

S. Ghnimi, A. Rajhi, A. Gharsallah
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引用次数: 2

Abstract

The current paper presents a study on the numerical method of inversion of Laplace transforms (NILT) to deal with some of EMC problems in MW systems under the Matlab environment. The idea consists in studying the two well used algorithms in NILT, one is called quotient-difference algorithm using expansion of the Fourier series and the other is called epsiv-algorithm using the expansion of Laguerre function, in order to reach an optimal algorithm of the NILT method for different multiconductor transmission line (MTL) systems. The simulation results show that the quotient difference algorithm is most efficient than the epsiv-algorithm in term of rapid convergence to zero with a low relative error; these performances increase significantly the use of Laplace transform inversion by the method of Laguerre in MW circuits.
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多导体传输线系统数值反演拉普拉斯变换方法的最优算法
本文研究了在Matlab环境下用拉普拉斯变换(NILT)的数值方法来处理兆瓦特系统中的一些电磁兼容问题。其思想在于研究NILT中常用的两种算法,一种是利用傅里叶级数展开的商-差算法,另一种是利用拉盖尔函数展开的epsiv算法,以得出适用于不同多导体传输线系统的NILT方法的最优算法。仿真结果表明,商差算法在收敛速度快、相对误差小方面优于epsiv算法;这些性能显著增加了Laguerre方法在毫瓦电路中拉普拉斯变换反演的应用。
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