DocumentCode :
2463395
Title :
A Mathematical Modelling Technique for the Analysis of the Dynamics of a Simple Continuous EDA
Author :
Yuan, Bo ; Gallagher, Marcus
Author_Institution :
Univ. of Queensland, Brisbane
fYear :
0
fDate :
0-0 0
Firstpage :
1585
Lastpage :
1591
Abstract :
This paper presents some initial attempts to mathematically model the dynamics of a continuous estimation of distribution algorithm (EDA) based on a Gaussian distribution and truncation selection. Case studies are conducted on both unimodal and multimodal problems to highlight the effectiveness of the proposed technique and explore some important properties of the EDA. With some general assumptions, we show that, for ID unimodal problems and with the (mu, lambda) scheme: (1). The behaviour of the EDA is dependent only on the general shape of the test function, rather than its specific form; (2). When initialized far from the global optimum, the EDA has a tendency to converge prematurely; (3). Given a certain selection pressure, there is a unique value for the proposed amplification parameter that could help the EDA achieve desirable performance; for ID multimodal problems: (1). The EDA could get stuck with the (mu, lambda) scheme; (2). The EDA will never get stuck with the (mu, lambda) scheme.
Keywords :
Gaussian distribution; evolutionary computation; mathematical analysis; 1D unimodal problems; Gaussian distribution; continuous estimation of distribution algorithm; mathematical modelling technique; truncation selection; Algorithm design and analysis; Australia; Electronic design automation and methodology; Gaussian distribution; Genetics; Information technology; Mathematical model; Predictive models; Shape; Testing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Evolutionary Computation, 2006. CEC 2006. IEEE Congress on
Conference_Location :
Vancouver, BC
Print_ISBN :
0-7803-9487-9
Type :
conf
DOI :
10.1109/CEC.2006.1688497
Filename :
1688497
Link To Document :
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