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COMPARATIVE EVALUATION OF DIFFERENT OPTIMIZATION ALGORITHMS FOR STRUCTURAL DESIGN APPLICATIONS

机译:结构设计应用中不同优化算法的比较评估

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Non-linear programming algorithms play an important role in structural design optimization. Fortunately, several algorithms with computer codes are available. At NASA Lewis Research Centre, a project was initiated to assess the performance of eight different optimizers through the development of a computer code CometBoards. This paper summarizes the conclusions of that research. CometBoards was employed to solve sets of small, medium and large structural problems, using the eight different optimizers on a Cray-YMP8E/8128 computer. The reliability and efficiency of the optimizers were determined from the performance of these problems. For small problems, the performance of most of the optimizers could be considered adequate. For large problems, however, three optimizers (two sequential quadratic programming routines, DNCONG of IMSL and SQP of IDESIGN, along with Sequential Unconstrained Minimizations Technique SUMT) outperformed others. At optimum, most optimizers captured an identical number of active displacement and frequency constraints but the number of active stress constraints differed among the optimizers. This discrepancy can be attributed to singularity conditions in the optimization and the alleviation of this discrepancy can improve the efficiency of optimizers.
机译:非线性编程算法在结构设计优化中起着重要作用。幸运的是,可以使用几种带有计算机代码的算法。在美国宇航局刘易斯研究中心,通过计算机代码CometBoards的开发,启动了一个项目来评估八个不同优化器的性能。本文总结了该研究的结论。通过在Cray-YMP8E / 8128计算机上使用八种不同的优化程序,CometBoards被用于解决各种小型,中型和大型结构问题。优化程序的可靠性和效率是由这些问题的性能决定的。对于小问题,可以认为大多数优化程序的性能都足够。但是,对于较大的问题,三个优化器(两个顺序的二次编程例程,IMSL的DNCONG和IDESIGN的SQP,以及顺序无约束最小化技术SUMT)优于其他优化器。在最佳状态下,大多数优化器捕获了相同数量的活动位移和频率约束,但活动应力约束的数量在优化器之间有所不同。这种差异可以归因于优化中的奇异性条件,这种差异的缓解可以提高优化器的效率。

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