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Automated Design Approach for Analog Circuit Using Genetic Algorithm.

Authors :
Hutchison, David
Kanade, Takeo
Kittler, Josef
Kleinberg, Jon M.
Mattern, Friedemann
Mitchell, John C.
Naor, Moni
Nierstrasz, Oscar
Rangan, C. Pandu
Steffen, Bernhard
Sudan, Madhu
Terzopoulos, Demetri
Tygar, Doug
Vardi, Moshe Y.
Weikum, Gerhard
Shi, Yong
van Albada, Geert Dick
Dongarra, Jack
Sloot, Peter M. A.
Xuewen Xia
Source :
Computational Science: ICCS 2007 (9783540725893); 2007, p1124-1130, 7p
Publication Year :
2007

Abstract

The technology of electronic design automation (EDA) has improved the efficiency of design process, however, designer is still required much special knowledge of circuit. During the past decade, using genetic algorithm (GA) to design circuit had attracted many experts and scholars. However, too much more attention was focus on a circuit's function and many other factors had been neglected which caused the circuit had little applicability. This paper proposes an automated design approach for analog circuit based on a multi-objective adaptive GA. The multi-objective fitness evaluation method, which can dynamic adjust parameter, is selected. And a parallel evolution strategy which separates evolution of circuit structure and element value is adopted but also organically combined them by weight vectors. The experimental results indicate that this approach obviously be able to improve the evolution efficiency and could generate numbers of suitable circuits. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISBNs :
9783540725893
Database :
Complementary Index
Journal :
Computational Science: ICCS 2007 (9783540725893)
Publication Type :
Book
Accession number :
33176895
Full Text :
https://doi.org/10.1007/978-3-540-72590-9_168