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一种基于知识的双种群优化算法用于分布式节能并行机调度

A Knowledge-Based Two-Population Optimization Algorithm for Distributed Energy-Efficient Parallel Machines Scheduling.

作者信息

Pan Zixiao, Lei Deming, Wang Ling

出版信息

IEEE Trans Cybern. 2022 Jun;52(6):5051-5063. doi: 10.1109/TCYB.2020.3026571. Epub 2022 Jun 16.

Abstract

In recent years, both distributed scheduling problem and energy-efficient scheduling have attracted much attention. As the integration of these two problems, the distributed energy-efficient scheduling problem is of great realistic significance. To the best of our knowledge, the distributed energy-efficient parallel machines scheduling problem (DEPMSP) has not been studied yet. This article aims to solve DEPMSP by integrating factory assignment and machine assignment into an extended machine assignment to handle the coupled relations of subproblems. A knowledge-based two-population optimization (KTPO) algorithm is proposed to minimize total energy consumption and total tardiness simultaneously. Five properties are derived by analyzing the characteristics of DEPMSP. The population is initialized by using two heuristics based on problem-specific knowledge and a random heuristic. The nondominated sorting genetic algorithm-II and differential evolution perform cooperatively on the population in parallel. Moreover, two knowledge-based local search operators are proposed to enhance the exploitation. Extensive simulation experiments are conducted by comparing KTPO with four algorithms from the literature. The comparative results and statistical analysis demonstrate the effectiveness and advantages of KTPO in solving DEPMSP.

摘要

近年来,分布式调度问题和节能调度都备受关注。作为这两个问题的结合,分布式节能调度问题具有重大现实意义。据我们所知,分布式节能并行机调度问题(DEPMSP)尚未得到研究。本文旨在通过将工厂分配和机器分配整合到扩展的机器分配中以处理子问题的耦合关系来解决DEPMSP。提出了一种基于知识的双种群优化(KTPO)算法,以同时最小化总能耗和总延迟。通过分析DEPMSP的特征得出了五个性质。种群通过使用基于特定问题知识的两种启发式算法和一种随机启发式算法进行初始化。非支配排序遗传算法-II和差分进化在种群上并行协同执行。此外,还提出了两种基于知识的局部搜索算子以增强利用能力。通过将KTPO与文献中的四种算法进行比较,进行了广泛的仿真实验。比较结果和统计分析证明了KTPO在解决DEPMSP方面的有效性和优势。

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