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Game theory-based metaheuristics for structural design optimization

机译:基于博弈论的结构设计优化的陨素

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This paper presents game theory-based strategies incorporated with metaheuristics to improve the computation efficiency and effectiveness in design optimization of civil engineering structures. The idea is that a structural optimization problem can be treated as a multiplayer game with optimization algorithms as the players. This study presents an innovative mixed game strategy and provides insights into domain decomposition schemes. Based on game theory strategies, six modified metaheuristic algorithms are proposed and demonstrated through a case study of a 30-story mega-braced frame-core building with a complex configuration. Jaya algorithm is selected as the control to evaluate the proposed methods. The results show that the mixed game strategy helps reduce the computation cost by about 50%, while reducing the weights of the building by 4%, compared with the Jaya algorithm.
机译:本文介绍了博弈论融合的策略,融合了甲型学,提高了土木工程结构设计优化的计算效率和有效性。 这个想法是,结构优化问题可以被视为具有优化算法作为玩家的多人游戏。 本研究提出了一种创新的混合游戏策略,并向域分解方案提供见解。 基于博弈论策略,通过具有复杂配置的30层巨型支撑框架核心建筑的案例研究提出并证明了六种改进的成交算法。 选择Jaya算法作为评估所提出的方法的控制。 结果表明,与Jaya算法相比,混合游戏策略有助于将计算成本降低约50%,同时将建筑物的重量减少4%。

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