使用样条函数和有限时差近似的非线性I/O驱动的宏观建模

B. Mutnury, M. Swaminathan, J. Libous
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引用次数: 26

摘要

本文提出了一种利用有限时差样条函数对数字I/O驱动进行建模的方法。数字驱动电路在正常激励下可以利用其静态特性精确建模,但在快速激励下,由于动态特性开始主导静态特性,静态特性模型往往会失去其准确性。具有有限时差建模的样条函数包含之前的时间实例,以捕获动态特性,以便准确建模数字驱动器。针对不同的测试用例,分析了该方法的速度和精度,并与径向基函数(RBF)建模方法进行了比较。
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Macro-modeling of non-linear I/O drivers using spline functions and finite time difference approximation
In this paper a modeling methodology using spline functions with finite time difference is proposed for modeling digital I/O drivers. Digital driver circuits can be accurately modeled using their static characteristics for normal excitations, but for faster excitations static characteristic models tend to lose their accuracy as the dynamic characteristics start to dominate the static characteristics. Spline function with finite time difference modeling includes previous time instances to capture dynamic characteristics for accurate modeling of digital drivers. In this paper the speed and accuracy of the proposed method is analyzed and compared with Radial Basis Function (RBF) modeling for different test cases.
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