Title :
DDD-based symbolic sensitivity analysis of active filters
Author :
Palma-Rodriguez, A.A. ; Tlelo-Cuautle, E. ; Rodriguez-Chavez, S. ; Tan, S. X -D
Author_Institution :
Dept. of Electron., INAOE, Mexico City, Mexico
Abstract :
Sensitivity analysis helps circuit designers to determine boundaries to predict the variations that a particular design variable will generate in a target specification, if it differs from what is previously assumed. It is quite important in designing active filters, but the major drawback is the need of generating the symbolic transfer function, from which the normalized sensitivity formula is usually applied. In this paper we show the usefulness of applying determinant decision diagrams (DDDs), to compute sensitivities without generating the symbolic transfer function, previously. Basically, we propose replacing all symbols in the DDD graph by their numerical values, except one, i.e. the variable of interest. Therefore, all sensitivities are computed by applying Cramer´s rule and by constructing one DDD for each symbol. We demonstrate the computing time gain compared to generating the fully symbolic transfer function and then applying the normalized sensitivity formula.
Keywords :
active filters; decision diagrams; graph theory; sensitivity analysis; transfer functions; Cramer rule; DDD graph; DDD-based symbolic sensitivity analysis; active filters; circuit designers; design variable; determinant decision diagrams; normalized sensitivity formula; numerical values; symbolic transfer function; target specification; time gain; Analog circuits; Integrated circuits; Sensitivity analysis; Transconductance; Transfer functions; Transistors;
Conference_Titel :
Devices, Circuits and Systems (ICCDCS), 2012 8th International Caribbean Conference on
Conference_Location :
Playa del Carmen
Print_ISBN :
978-1-4577-1116-9
Electronic_ISBN :
978-1-4577-1115-2
DOI :
10.1109/ICCDCS.2012.6188913