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Resolving fundamental issues of slowness in envelope simulation methods

机译:解决包络仿真方法中速度慢的基本问题

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摘要

Fourier-envelope algorithms are an important component of the mixed-signal/RF verification toolbox. In this article the unpredictability and lack of robustness that has been reported for these algorithms is addressed. It is shown that the problem stems from "slow" envelopes that fundamentally feature fast oscillations. We demonstrate that this is related to the fact that the envelope equations are always stiff, whether or not the underlying system is. We show that careful choice of the envelope initial conditions is necessary to obtain useful solutions, and propose two techniques for finding good initial conditions. By applying these techniques and solving the envelope equations with stiffly-stable numerical methods, we obtain a robust and reliable Fourier-envelope method. The new methods are illustrated by a direct-downconversion mixer circuit. (c) 2005 Wiley Periodicals, Inc.
机译:傅立叶包络算法是混合信号/ RF验证工具箱的重要组成部分。本文解决了这些算法已报道的不可预测性和鲁棒性不足的问题。结果表明,问题源于“慢速”包络,其基本特征是快速振荡。我们证明,这与包络方程始终是刚性的这一事实有关,无论基础系统是否存在。我们表明,必须仔细选择包络线的初始条件才能获得有用的解决方案,并提出了两种寻找良好初始条件的技术。通过应用这些技术并使用刚稳定的数值方法求解包络方程,我们获得了一种鲁棒且可靠的傅立叶包络法。通过直接下变频混频器电路说明了新方法。 (c)2005年Wiley Periodicals,Inc.

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