Analysis of Constraint Handling Methods for the Gravitational Search Algorithm

被引:0
|
作者
Poole, Daniel J. [1 ]
Allen, Christian B. [1 ]
Rendall, Thomas C. S. [1 ]
机构
[1] Univ Bristol, Dept Aerosp Engn, Bristol BS8 1TR, Avon, England
关键词
PARTICLE SWARM OPTIMIZATION; CFD-BASED OPTIMIZATION; RADIAL BASIS FUNCTIONS; PARAMETERIZATION;
D O I
暂无
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
The gravitational search algorithm (GSA) is a recent addition to the family of global optimization algorithms based on phenomena found in nature, specifically the gravitational attractive force between two bodies of mass. However, like almost all global search algorithms of this type, GSA has no direct method of handling a constrained optimization problem. There has been much attention to constraint handling using other agent based systems, though the mechanics of GSA make the application of many of these difficult. This paper has therefore analysed constraint handling methods for use with GSA and compared the performance of simple to implement methods (penalties and feasible directions) with a novel separation-sub-swarm (3S) approach, and found that feasible direction methods ideally need at least one initially feasible particle, and that the novel 3S approach is highly effective for solving constrained optimization problems using GSA outperforming the other approaches tested.
引用
收藏
页码:2005 / 2012
页数:8
相关论文
共 50 条
  • [21] Trends in Gravitational Search Algorithm
    de Moura Oliveira, P. B.
    Oliveira, Josenalde
    Cunha, Jose Boaventura
    [J]. DISTRIBUTED COMPUTING AND ARTIFICIAL INTELLIGENCE, 2018, 620 : 270 - 277
  • [22] Accelerative Gravitational Search Algorithm
    Gupta, Aditi
    Sharma, Nirmala
    Sharma, Harish
    [J]. 2016 INTERNATIONAL CONFERENCE ON ADVANCES IN COMPUTING, COMMUNICATIONS AND INFORMATICS (ICACCI), 2016, : 1902 - 1907
  • [23] A Generalization of the Gravitational Search Algorithm
    Bustince, Humberto
    Minarova, Maria
    Fernandez, Javier
    Sesma-Sara, Mikel
    Marco-Detchart, Cedric
    Ruiz-Aranguren, Javier
    [J]. AGGREGATION FUNCTIONS IN THEORY AND IN PRACTICE, 2018, 581 : 162 - 171
  • [24] On The Performance of the Gravitational Search Algorithm
    Eldos, Taisir
    Al Qasim, Rose
    [J]. INTERNATIONAL JOURNAL OF ADVANCED COMPUTER SCIENCE AND APPLICATIONS, 2013, 4 (08) : 74 - 78
  • [25] FSB-EA: Fuzzy search bias guided constraint handling technique for evolutionary algorithm
    Li, Zhiyong
    Chen, Shaomiao
    Zhang, Shiwen
    Jiang, Shilong
    Gu, Yu
    Nouioua, Mourad
    [J]. EXPERT SYSTEMS WITH APPLICATIONS, 2019, 119 : 20 - 35
  • [26] Sentimental Analysis using Capsule Network with Gravitational Search Algorithm
    Prabha, V. Diviya
    Rathipriya, R.
    [J]. JOURNAL OF WEB ENGINEERING, 2020, 19 (5-6): : 775 - 794
  • [27] Stability analysis of particle dynamics in gravitational search optimization algorithm
    Farivar, Faezeh
    Shoorehdeli, Mahdi Aliyari
    [J]. INFORMATION SCIENCES, 2016, 337 : 25 - 43
  • [28] A hierarchical gravitational search algorithm with an effective gravitational constant
    Wang, Yirui
    Yu, Yang
    Gao, Shangce
    Pan, Haiyu
    Yang, Gang
    [J]. SWARM AND EVOLUTIONARY COMPUTATION, 2019, 46 : 118 - 139
  • [29] A constraint handling approach for the differential evolution algorithm
    Lampinen, J
    [J]. CEC'02: PROCEEDINGS OF THE 2002 CONGRESS ON EVOLUTIONARY COMPUTATION, VOLS 1 AND 2, 2002, : 1468 - 1473
  • [30] A constraint handling method for the Differential Evolution algorithm
    Lampinen, J
    [J]. INTELLIGENT TECHNOLOGIES - THEORY AND APPLICATIONS: NEW TRENDS IN INTELLIGENT TECHNOLOGIES, 2002, 76 : 152 - 158