A Distributed Genetic Algorithm with Migration for the Design of Composite Laminate Structures

T. Mathew, T. W. Layne
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引用次数: 34

Abstract

This paper describes the development of a general Fortran 90 framework for the solution of composite laminate design problems using a genetic algorithm (GA). The initial Fortran 90 module and package of operators result in a standard genetic algorithm (sGA). The sGA is extended to operate on a parallel processor, and a migration algorithm is introduced. These extensions result in the distributed genetic algorithm with migration (dGA). The performance of the dGA in terms of cost and reliability is studied and compared to a sGA baseline, using two types of composite laminate design problems. The nondeterminism of GAs and the migration and dynamic load balancing algorithm used in this work result in a changed (diminished) workload, so conventional measures of parallelizability are not meaningful. Thus, a set of experiments is devised to characterize the run time performance of the dGA.
一种带迁移的分布式遗传算法在复合材料层压结构设计中的应用
本文介绍了用遗传算法(GA)求解复合材料层合板设计问题的通用Fortran 90框架的开发。最初的Fortran 90模块和运算符包产生一个标准的遗传算法(sGA)。将sGA扩展到并行处理器上,并引入了一种迁移算法。这些扩展导致了带有迁移的分布式遗传算法(dGA)。采用两种类型的复合材料层压板设计问题,研究了dGA在成本和可靠性方面的性能,并与sGA基线进行了比较。GAs的不确定性以及在这项工作中使用的迁移和动态负载平衡算法导致工作负载的变化(减少),因此传统的并行性度量没有意义。因此,设计了一组实验来表征dGA的运行时性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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