2012 IEEE International SOC Conference 2012
DOI: 10.1109/socc.2012.6398386
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Efficient generation of analog circuit models for accelerated mixed-signal simulation

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Cited by 8 publications
(7 citation statements)
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“…Piecewise-linear models may be supported by applying translation to each linear region individually, as proposed by [18]. To ensure that only one region is considered at any simulation instant, regions are wrapped within a control structure composed by SystemC AMS voltage and current sources driven by the Discrete Event SystemC kernel.…”
Section: Translation Methodologymentioning
confidence: 99%
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“…Piecewise-linear models may be supported by applying translation to each linear region individually, as proposed by [18]. To ensure that only one region is considered at any simulation instant, regions are wrapped within a control structure composed by SystemC AMS voltage and current sources driven by the Discrete Event SystemC kernel.…”
Section: Translation Methodologymentioning
confidence: 99%
“…Algebraic non-linear models (e.g., models involving polynomials) require to undergo some abstraction, that can be provided either by our abstraction approach, or by state-ofthe-art linearization approaches, e.g., [18]. These produced piecewise-linear models that can be treated as above.…”
Section: Translation Methodologymentioning
confidence: 99%
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“…[8,7,42]. Previous work demonstrates that one can efficiently generate PWL models of analog circuits from a given netlist, which makes it possible to accelerate AMS circuit simulation [22].…”
Section: B-3mentioning
confidence: 99%
“…To succeed, this approach requires piecewiseconstant inputs (implicitly given by the digital part of AMS circuits) and a linear or at least linearized circuit. We solve the latter problem by replacing all nonlinear circuit devices by piecewise-linear models [22]. Exemplary PWL models for diodes (one input) and MOS field-effect transistors (two inputs) are shown in Fig.…”
Section: From Nonlinear Circuits To Hybrid Automatamentioning
confidence: 99%