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A new efficient waveform simulation method for RLC interconnect via amplitude and phase approximation

机译:通过幅度和相位近似的RLC互连的新高效波形仿真方法

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In this paper we use a segmented Chebyshev orthongonal polynomial expansion approach to approximate amplitude and phase response for RLC interconnect simulation. This method has been shown to be efficient in reducing frequency sampling point number or expansion order. Experiments also show that the number of sampling points is not necessarily dependent on the interconnect circuit size, which makes possible large network simulation. Additionally, because of the smoothing-effect of the atan function in evaluation, the phase response, which has major impact on the transient edge of output response, can be easily approximated. Experiments show the proposed simulation approach achieves 30-50 times speed-up over spice3f4.
机译:在本文中,我们使用分段的Chebyshev Orthongonal多项式扩展方法来实现RLC互连模拟的幅度和相位响应。该方法已被证明减少频率采样点数或扩展顺序的有效。实验还表明采样点的数量不一定取决于互连电路尺寸,这使得可能的大网络仿真成为可能。另外,由于ATAN功能在评估中的平滑效果,因此可以容易地近似地对输出响应的瞬态边缘产生重大影响的相位响应。实验表明,拟议的仿真方法达到了Spice3F4的加速30-50倍。

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