Weights Adaptation Optimization of Heterogeneous Epidemic Spreading Networks: A Constrained Cooperative Coevolution Strategy

Fuente: arXiv
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Autori principali: Feng, Yun, Wang, Bing-Chuan
Natura: Preprint
Pubblicazione: 2019
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author Feng, Yun
Wang, Bing-Chuan
author_facet Feng, Yun
Wang, Bing-Chuan
contents In this paper, the dynamic constrained optimization problem of weights adaptation for heterogeneous epidemic spreading networks is investigated. Due to the powerful ability of searching global optimum, evolutionary algorithms are employed as the optimizers. One major difficulty is that the dimension of the problem is increasing exponentially with the network size and most existing evolutionary algorithms cannot achieve satisfiable performance on large-scale optimization problems. To address this issue, a novel constrained cooperative coevolution ($C^3$) strategy, which can separate the original large-scale problem into different subcomponents, is employed to achieve the trade-off between the constraint and objective function.
format Preprint
id arxiv_https___arxiv_org_abs_1901_00602
institution arXiv
publishDate 2019
record_format arxiv
spellingShingle Weights Adaptation Optimization of Heterogeneous Epidemic Spreading Networks: A Constrained Cooperative Coevolution Strategy
Feng, Yun
Wang, Bing-Chuan
Neural and Evolutionary Computing
Systems and Control
05C82
In this paper, the dynamic constrained optimization problem of weights adaptation for heterogeneous epidemic spreading networks is investigated. Due to the powerful ability of searching global optimum, evolutionary algorithms are employed as the optimizers. One major difficulty is that the dimension of the problem is increasing exponentially with the network size and most existing evolutionary algorithms cannot achieve satisfiable performance on large-scale optimization problems. To address this issue, a novel constrained cooperative coevolution ($C^3$) strategy, which can separate the original large-scale problem into different subcomponents, is employed to achieve the trade-off between the constraint and objective function.
title Weights Adaptation Optimization of Heterogeneous Epidemic Spreading Networks: A Constrained Cooperative Coevolution Strategy
topic Neural and Evolutionary Computing
Systems and Control
05C82
url https://arxiv.org/abs/1901.00602