The impact on circuit performance of parameters uncertainties can be effectively evaluated by describing the resulting stochastic problem in terms of orthogonal polynomial expansions of electrical quantities. This contribution formalizes a rule for the construction of an augmented instance of the original circuit, that provides a systematic solution for the unknown coefficients of the expanded variables. The use of SPICE as a solution engine of the augmented circuit provides a convenient and efficient alternative to the conventional approach SPICE uses for uncertainty analysis.

Expedite Stochastic SPICE Simulations by Means of Polynomial Chaos / Manfredi, Paolo; Stievano, IGOR SIMONE; Canavero, Flavio. - STAMPA. - (2012). (Intervento presentato al convegno 16ème édition du Colloque International sur la Compatibilité ElectroMagnétique (CEM 2012) tenutosi a Rouen (France) nel Apr. 25-27, 2012).

Expedite Stochastic SPICE Simulations by Means of Polynomial Chaos

MANFREDI, PAOLO;STIEVANO, IGOR SIMONE;CANAVERO, Flavio
2012

Abstract

The impact on circuit performance of parameters uncertainties can be effectively evaluated by describing the resulting stochastic problem in terms of orthogonal polynomial expansions of electrical quantities. This contribution formalizes a rule for the construction of an augmented instance of the original circuit, that provides a systematic solution for the unknown coefficients of the expanded variables. The use of SPICE as a solution engine of the augmented circuit provides a convenient and efficient alternative to the conventional approach SPICE uses for uncertainty analysis.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2498480
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