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首页> 外文期刊>International journal of geomechanics >Optimization of the Critical Slip Surface of Three-Dimensional Slope by Using an Improved Genetic Algorithm
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Optimization of the Critical Slip Surface of Three-Dimensional Slope by Using an Improved Genetic Algorithm

机译:利用改进的遗传算法优化三维斜率的临界滑动表面

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摘要

An improved genetic algorithm is proposed to optimize the potential sliding surface of slopes. Compared with a conventional genetic algorithm, the genetic recombination between the previous generation and the newly generated population around the local optimal individual of the previous generation is performed in the improved genetic algorithm, while the genetic recombination between the previous generations is performed in the conventional genetic algorithm. The improved genetic algorithm has the advantage of faster convergence than the conventional genetic algorithm. Moreover, the rigorous limit equilibrium method is applied to define the safety factor of slopes. Two examples are illustrated to prove the efficiency of the improved genetic algorithm.
机译:提出了一种改进的遗传算法来优化斜坡的电位滑动表面。与传统的遗传算法相比,以先前一代的局部最佳个体周围的前一代和新产生的群体之间的遗传重组在改进的遗传算法中进行,而前几代之间的遗传重组在常规遗传学中进行算法。改进的遗传算法具有比传统遗传算法更快的收敛的优点。此外,应用严格的极限平衡方法来定义斜坡的安全系数。示出了两个示例以证明改进的遗传算法的效率。

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