基于遗传算法的轴承锻造车间自动调度

Siyuan Zhu, Yong Piao, Liping Zhao
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引用次数: 0

摘要

轴承是当代机械设备的重要部件。其主要作用是支撑机械旋转体,降低其运动时的摩擦系数,保证其旋转精度。随着中国机械工业的快速发展,提高轴承的制造效率非常重要。依靠人工管理轴承锻件效率太低,往往导致加工班组任务分配不合理,车间设备负荷率两极分化,极大地阻碍了生产效率的提高。提出利用遗传算法优化轴承锻件车间生产调度流程,合理分配任务和加工资源,缩短轴承锻件生产调度周期。不同的调度数据经过数千代的进化,可靠地实现高效的调度方案。根据该方法编制了自动调度软件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An automatic scheduling of bearing forging workshop based on genetic algorithm
Bearings are important components in contemporary mechanical equipment. Their main function is to support the mechanical rotating body, reduce the friction coefficient during its movement, and ensure its rotation accuracy. With the rapid development of China’s machinery industry, it is very important to improve the manufacturing efficiency of bearings. Relying on manual management for bearing forging is too inefficient, which often leads to unreasonable task allocation of processing teams and polarization of workshop equipment load rate, which greatly hinders the improvement of production efficiency. We propose to optimize the production scheduling process of the bearing forging workshops by using a genetic algorithm to reasonably allocate tasks and processing resources to shorten the production scheduling period of bearing forging. Different scheduling data will reliably achieve efficient scheduling solutions after thousands of generations of evolution. According to this method, an automatic scheduling software is compiled.
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