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Multi-agent coalition formation by an efficient genetic algorithm with heuristic initialization and repair strategy

机译:具有高效遗传算法的多功能联盟形成具有启发式初始化和修复策略的高效遗传算法

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摘要

In multi-agent systems (MAS), the coalition formation (CF) is an important problem focusing on allocating agents to different tasks. In this paper, three specific CF problems are considered, including the single-task single-coalition formation, the multi-task single-coalition formation, and the multi-task multi-coalition formation. The mathematical models of these three specific problems are formulated with the objective of minimizing the total cost while satisfying the ability requirement constraint. An efficient genetic algorithm with heuristic initialization and repair strategy (GAHIR) is proposed to solve the CF problem. Multiple initialization and repair methods, which utilize the prior knowledge of the specific problems, are proposed to improve the solution quality. Then, these methods are tested to prove their effectiveness. Finally, a comparison experiment about the proposed algorithm against several advanced algorithms is constructed. The results of statistical analysis by the Wilcoxon rank-sum test demonstrate that the proposed GAHIR can obtain better coalition schemes than its competitors in solving the CF problems. Furthermore, GAHIR has faster convergence speed in most instances.
机译:在多代理系统(MAS)中,联盟形成(CF)是关注分配代理到不同任务的重要问题。在本文中,考虑了三个特定的CF问题,包括单任务单联盟形成,多任务单联盟形成和多任务多联盟形成。这三个特定问题的数学模型具有最小化总成本的目的,同时满足能力要求约束。提出了一种高效的遗传算法,具有启发式初始化和修复策略(GAHIR)来解决CF问题。提出了利用特定问题的先验知识的多种初始化和修复方法,以提高解决方案质量。然后,测试这些方法以证明其有效性。最后,构建了关于若干先进算法的提出算法的比较实验。 Wilcoxon Rank-Sum试验的统计分析结果表明,所提出的Gahir可以获得比其竞争对手在解决CF问题方面的竞争对手。此外,GAHIR在大多数情况下都具有更快的收敛速度。

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