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Optimum Design of High-Rise Steel Buildings using an Evolution Strategy Integrated Parallel Algorithm

机译:利用演化策略集成并行算法优化设计高层钢制建筑

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The present study addresses a parallel solution algorithm for optimum design of large steel space frame structures, in particular high-rise steel buildings. The algorithm implements a novel discrete evolution strategy optimization method to effectively size these systems for minimum weight according to the provisions of ASD-AISC specification and various practical aspects of design process. The multitasking environment in the algorithm rests on a master-slave model based parallelization of the optimization procedure, which provides an ideal platform for attaining optimal solutions in a timely manner without losing accuracy in computations. Three design examples from the category of high-rise steel buildings are studied extensively to demonstrate cost-efficiency of the algorithm in conjunction with a cluster of computers with 32 processors. The variation in performance of the parallel computing system with respect to the number of processors employed is also scrutinized in each design example.
机译:本研究解决了大型钢空间框架结构优化设计的并联解决方案算法,特别是高层钢筋结构。该算法实现了一种新颖的离散演化策略优化方法,以有效地尺寸根据ASD-AISC规范的规定和设计过程的各种实际方面的最小重量。算法中的多任务环境基于优化过程的基于主从模型的并行化,它提供了一个理想的平台,用于及时实现最佳解决方案,而不会在计算中失去精度。来自高层钢建筑类别的三个设计示例是广泛研究的,以展示算法的成本效率与带有32台处理器的计算机集群。在每个设计示例中也仔细审查了所采用的处理器数量的平行计算系统的性能的变化。

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