DocumentCode
400757
Title
A hybrid approach to nonlinear macromodel generation for time-varying analog circuits
Author
Peng Li ; Xin Li ; Yang Xu ; Pileggi, Lawrence T.
Author_Institution
Dept. of Electr. & Comput. Eng., Carnegie Mellon Univ., Pittsburgh, PA, USA
fYear
2003
fDate
9-13 Nov. 2003
Firstpage
454
Lastpage
461
Abstract
Modeling frequency-dependent nonlinear characteristics of complex analog blocks and subsystems is critical for enabling efficient verification of mixed-signal system designs. Recent progress has been made for constructing such macromodels, however, their accuracy and/or efficiency can break down for certain problems, particularly those with high-Q filtering. In this paper we explore a novel hybrid approach for generating accurate analog macromodels for time-varying weakly nonlinear circuits. The combined benefits of nonlinear Pade approximations and pruning by exploitation of the system´s internal structure allows us to construct nonlinear circuit models that are accurate for wide input frequency ranges, and thereby capable of modeling systems with sharp frequency selectivity. Such components are widely encountered in analog signal processing and RF applications. The efficacy of the proposed approach is demonstrated by the modeling of large time-varying nonlinear circuits that are commonly found in these application areas.
Keywords
analogue circuits; nonlinear network analysis; radiofrequency integrated circuits; signal processing; time-varying networks; RF applications; analog macromodels; analog signal processing; complex analog blocks; complex subsystems; frequency-dependent nonlinear characteristics; high-Q filtering; input frequency range; mixed-signal system design; nonlinear Pade approximations; nonlinear circuit models; nonlinear macromodel generation; pruning; sharp frequency selectivity; time-varying analog circuits; time-varying nonlinear circuits; Analog circuits; Frequency; Hybrid power systems; Integrated circuit modeling; Linearity; Mathematical model; Nonlinear circuits; Permission; RF signals; Time varying systems;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Aided Design, 2003. ICCAD-2003. International Conference on
Conference_Location
San Jose, CA, USA
Print_ISBN
1-58113-762-1
Type
conf
DOI
10.1109/ICCAD.2003.159723
Filename
1257816
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