Deng Libao, Di Yuanzhu, Wang Ling
IEEE Trans Cybern. 2024 Feb;54(2):1024-1036. doi: 10.1109/TCYB.2023.3336656. Epub 2024 Jan 17.
With the increasing level of mass-customization and globalization of competition, environmentally friendly production scheduling for distributed manufacturing considering customer satisfaction has received growing attention. Meanwhile, uncertain scheduling is becoming a force to be considered within intelligent manufacturing industries. However, little research has been found that surveyed the uncertain distributed scheduling considering both energy consumption and customer satisfaction. In this article, the fuzzy distributed hybrid flow-shop scheduling problem considering on-time delivery (FDHFSP-OTD) is addressed, and a 3-D estimation of distribution algorithm (EDA) with reinforcement learning (RL) is proposed to minimize the makespan and total energy consumption while maximizing delivery accuracy. First, two heuristics and a random method are designed and used cooperatively for initialization. Next, an EDA with a 3-D probability matrix is innovated to generate offspring. Then, a biased decoding method based on Q -learning is proposed to adjust the direction of evolution self-adaptively. Moreover, a local intensification strategy is employed for further enhancement of elite solutions. The effect of major parameters is analyzed and the best combination of values is determined through extensive experiments. The numerical results prove the effectiveness of each specially designed strategy and method, and the comparisons with existing algorithms demonstrate the high-potential of the 3D-EDA/RL in solving the FDHFSP-OTD.
随着大规模定制水平的提高和竞争的全球化,考虑客户满意度的分布式制造环境友好型生产调度受到了越来越多的关注。与此同时,不确定调度正成为智能制造行业中一股需要考虑的力量。然而,很少有研究调查同时考虑能源消耗和客户满意度的不确定分布式调度。在本文中,研究了考虑准时交货的模糊分布式混合流水车间调度问题(FDHFSP - OTD),并提出了一种结合强化学习(RL)的三维分布估计算法(EDA),以在最大化交货准确性的同时最小化完工时间和总能源消耗。首先,设计了两种启发式算法和一种随机方法并协同用于初始化。接下来,创新了一种具有三维概率矩阵的EDA来生成后代。然后,提出了一种基于Q学习的有偏解码方法来自适应地调整进化方向。此外,采用局部强化策略进一步增强精英解。分析了主要参数的影响,并通过大量实验确定了最佳值组合。数值结果证明了每个专门设计的策略和方法的有效性,与现有算法的比较表明了三维EDA/RL在解决FDHFSP - OTD方面的巨大潜力。