Title :
Zonotope-based nonlinear model order reduction for fast performance bound analysis of analog circuits with multiple-interval-valued parameter variations
Author :
Yang Song ; Sai, Manoj P. D. ; Hao Yu
Author_Institution :
Sch. of Electr. & Electron. Eng., Nanyang Technol. Univ., Singapore, Singapore
Abstract :
It is challenging to efficiently evaluate performance bound of high-precision analog circuits with multiple parameter variations at nano-scale. In this paper, a nonlinear model order reduction is proposed to deploy zonotope-based model for multiple-interval-valued parameter variations. As such, one can have a zonotope-based reachability analysis to generate a set of trajectories with performance bound defined. By further constructing local parameterized subspaces to approximate a number of zonotopes along the set of trajectories, one can perform nonlinear model order reduction to generate the performance bound under parameter variations. As shown by numerical experiments, the zonotope-based nonlinear macromodeling by order of 19 achieves up to 500× speedup when compared to Monte Carlo simulations of the original model; and up to 50% smaller error when compared to previous parameterized nonlinear macromodeling under the same order.
Keywords :
analogue circuits; nonlinear network analysis; reachability analysis; Monte Carlo simulations; fast performance bound analysis; high-precision analog circuits; local parameterized subspaces; multiple-interval-valued parameter variations; parameterized nonlinear macromodeling; performance bound evaluation; zonotope-based nonlinear macromodeling; zonotope-based nonlinear model order reduction; zonotope-based reachability analysis; Approximation methods; Generators; Mathematical model; Monte Carlo methods; Reachability analysis; Trajectory; Vectors;
Conference_Titel :
Design, Automation and Test in Europe Conference and Exhibition (DATE), 2014
Conference_Location :
Dresden
DOI :
10.7873/DATE.2014.024