DocumentCode :
3723390
Title :
STAVES: Speedy tensor-aided Volterra-based electronic simulator
Author :
Haotian Liu;Xiaoyan Y. Z. Xiong;Kim Batselier;Lijun Jiang;Luca Daniel;Ngai Wong
Author_Institution :
Department of Electrical and Electronic Engineering, University of Hong Kong, Hong Kong SAR
fYear :
2015
Firstpage :
583
Lastpage :
588
Abstract :
Volterra series is a powerful tool for black-box macro-modeling of nonlinear devices. However, the exponential complexity growth in storing and evaluating higher order Volterra kernels has limited so far its employment on complex practical applications. On the other hand, tensors are a higher order generalization of matrices that can naturally and efficiently capture multi-dimensional data. Significant computational savings can often be achieved when the appropriate low-rank tensor decomposition is available. In this paper we exploit a strong link between tensors and frequency-domain Volterra kernels in modeling nonlinear systems. Based on such link we have developed a technique called speedy tensor-aided Volterra-based electronic simulator (STAVES) utilizing high-order Volterra transfer functions for highly accurate time-domain simulation of nonlinear systems. The main computational tools in our approach are the canonical tensor decomposition and the inverse discrete Fourier transform. Examples demonstrate the efficiency of the proposed method in simulating some practical nonlinear circuit structures.
Keywords :
"Tensile stress","Kernel","Transfer functions","Frequency-domain analysis","Computational modeling","Complexity theory"
Publisher :
ieee
Conference_Titel :
Computer-Aided Design (ICCAD), 2015 IEEE/ACM International Conference on
Type :
conf
DOI :
10.1109/ICCAD.2015.7372622
Filename :
7372622
Link To Document :
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