DocumentCode
2637893
Title
Optimizing an LDO voltage regulator by evolutionary algorithms considering tolerances of the circuit elements
Author
Lopez-Arredondo, Jesus ; Tlelo-Cuautle, Esteban ; Trejo-Guerra, Rodolfo
Author_Institution
INAOE, Puebla, Mexico
fYear
2015
fDate
25-27 March 2015
Firstpage
1
Lastpage
5
Abstract
A low-dropout (LDO) voltage regulator is optimized by evolutionary algorithms. Basically, tolerance analysis is performed alike a worst-case analysis within SPICE to rank the circuit elements presenting higher sensitivities, and according to the target specifications associated to two objectives, namely: Power Supply Rejection (PSR) and output capacitor value. The results from the tolerance analysis are used to propose for the first time a chromosome of the LDO to perform multiobjective optimization by evolutionary algorithms. In addition, the computed tolerances are used to establish reduced search spaces for the circuit elements included into the chromosome, so that the optimization by applying the non-dominated sorting genetic algorithm (NSGA-II) being accelerated. As a result, the main contribution is the application of tolerance analysis to set the chromosome that includes few circuit elements to optimize an LDO voltage regulator, and to establish reduced search spaces to accelerate computing time.
Keywords
circuit optimisation; genetic algorithms; search problems; sorting; voltage regulators; LDO voltage regulator optimization; PSR; SPICE; circuit elements; evolutionary algorithms; low-dropout voltage regulator; multiobjective optimization; nondominated sorting genetic algorithm; output capacitor value; power supply rejection; reduced search spaces; tolerance analysis; Biological cells; Capacitors; Integrated circuits; Optimization; Regulators; Tolerance analysis; Voltage control;
fLanguage
English
Publisher
ieee
Conference_Titel
Test Symposium (LATS), 2015 16th Latin-American
Conference_Location
Puerto Vallarta
Type
conf
DOI
10.1109/LATW.2015.7102506
Filename
7102506
Link To Document