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Study on Technique of Tolerance Optimal Allocation Based on Adaptive Genetic algorithm

机译:基于自适应遗传算法的公差优化分配技术研究

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The rational allocation of tolerances is the key to reduce production costs and guarantee the performance. In this paper, in the premise of ensuring the performance, manufacturing cost minimization of assembly parts is set as objective function, and an adaptive genetic algorithm is proposed to optimize the design of tolerance allocation. The adaptive mechanism is introduced mainly for crossover operator and mutation operator to overcome the traditional adaptive genetic algorithm's easy "premature" shortcomings according to individual fitness of population. And a penalty function is used to handle constraints of assembly dimension chain. Finally, using the algorithm to optimize assembly chain tolerances of a gear reducer shaft, the effectiveness of the adaptive genetic algorithm to optimize tolerance allocation has been verified.
机译:耐受性的合理分配是降低生产成本并保证性能的关键。本文在确保性能的前提下,装配零件的制造成本最小化被设定为目标函数,提出了一种自适应遗传算法,以优化公差分配的设计。主要用于交叉操作员和突变操作员的自适应机制,以克服传统的自适应遗传算法的易于“早期”缺点,根据人口的个人适应性。惩罚功能用于处理组装尺寸链的约束。最后,使用算法优化齿轮减速器轴的组装链公差,验证了自适应遗传算法优化公差分配的有效性。

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