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Vector evaluated particle swarm optimization (VEPSO) for multi-objective design optimization of composite structures

机译:矢量评估的粒子群算法(VEPSO)用于复合结构的多目标设计优化

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We present a generic method/model for multi-objective design optimization of laminated composite components, based on vector evaluated particle swarm optimization (VEPSO) algorithm. VEPSO is a novel, co-evolutionary multi-objective variant of the popular particle swarm optimization algorithm (PSO). In the current work a modified version of VEPSO algorithm for discrete variables has been developed and implemented successfully for the, multi-objective design optimization of composites. The problem is formulated with multiple objectives of minimizing weight and the total cost of the composite component to achieve a specified strength. The primary optimization variables are - the number of layers, its stacking sequence (the orientation of the layers) and thickness of each layer. The classical lamination theory is utilized to determine the stresses in the component and the design is evaluated based on three failure criteria; failure mechanism based failure criteria, Maximum stress failure criteria and the Tsai-Wu failure criteria. The optimization method is validated for a number of different loading configurations - uniaxial, biaxial and bending loads. The design optimization has been carried for both variable stacking sequences, as well fixed standard stacking schemes and a comparative study of the different design configurations evolved has been presented.
机译:我们提出了一种基于矢量评估粒子群优化(VEPSO)算法的多层复合材料组件多目标设计优化的通用方法/模型。 VEPSO是流行的粒子群优化算法(PSO)的新颖的,共同进化的多目标变体。在当前的工作中,已经开发并成功实现了离散变量VEPSO算法的修改版本,并成功实现了复合材料的多目标设计优化。解决该问题的目的是使复合部件的重量和总成本最小化,以达到指定的强度。最主要的优化变量是-层数,其堆叠顺序(层的方向)和每层的厚度。利用经典的叠层理论确定部件中的应力,并根据三个失效标准评估设计。基于失效机制的失效准则,最大应力失效准则和蔡-吴失效准则。优化方法针对多种不同的载荷配置(单轴,双轴和弯曲载荷)进行了验证。已针对可变的堆叠顺序以及固定的标准堆叠方案进行了设计优化,并且已对所开发的不同设计配置进行了比较研究。

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