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Optimum design of reinforced earth walls using evolutionary optimization algorithms

机译:使用进化优化算法的增强地球墙最佳设计

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This study addresses the optimum cost design of mechanically stabilized earth (MSE) using geosynthetics. The design process of MSEs is mathematically programmed based on an objective function depending on the length of reinforcements and vertical distance of reinforced layers. Design restrictions control the final design to be valid in terms of constraints. The aim is to explore the efficiency of evolutionary-based algorithms in dealing with MSE optimization problem along with automating the minimum cost design of MSE walls. To this end, three evolutionary algorithms, differential evolution (DE), evolution strategy, and biogeography-based optimization algorithm (BBO), are tackled to solve this problem. Comprehensive computational simulations confirm the impact of different effective parameters variation on the final design. Finally, the BBO algorithm performed the best, while DE recorded the most unsatisfactory results.
机译:本研究解决了使用土工合成液的机械稳定地球(MSE)的最佳成本设计。 根据增强层的增强和垂直距离,基于目标函数来数学编程MSE的设计过程。 设计限制控制最终设计在约束方面有效。 目的是探讨进化基于算法的效率,以处理MSE优化问题,以及自动化MSE墙的最小成本设计。 为此,三个进化算法,差分演进(DE),演化策略和基于生物地理的优化算法(BBO),以解决这个问题。 综合计算模拟确认不同有效参数变化对最终设计的影响。 最后,BBO算法表现了最佳,而DE录制了最不令人满意的结果。

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