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首页> 外文期刊>IEEE transactions on evolutionary computation >Kuhn–Munkres Parallel Genetic Algorithm for the Set Cover Problem and Its Application to Large-Scale Wireless Sensor Networks
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Kuhn–Munkres Parallel Genetic Algorithm for the Set Cover Problem and Its Application to Large-Scale Wireless Sensor Networks

机译:集覆盖问题的Kuhn–Munkres并行遗传算法及其在大规模无线传感器网络中的应用

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Operating mode scheduling is crucial for the lifetime of wireless sensor networks (WSNs). However, the growing scale of networks has made such a scheduling problem more challenging, as existing set cover and evolutionary algorithms become unable to provide satisfactory efficiency due to the curse of dimensionality. In this paper, a Kuhn-Munkres (KM) parallel genetic algorithm is developed to solve the set cover problem and is applied to the lifetime maximization of large-scale WSNs. The proposed algorithm schedules the sensors into a number of disjoint complete cover sets and activates them in batch for energy conservation. It uses a divide-and-conquer strategy of dimensionality reduction, and the polynomial KM algorithm a are hence adopted to splice the feasible solutions obtained in each subarea to enhance the search efficiency substantially. To further improve global efficiency, a redundant-trend sensor schedule strategy was developed. Additionally, we meliorate the evaluation function through penalizing incomplete cover sets, which speeds up convergence. Eight types of experiments are conducted on a distributed platform to test and inform the effectiveness of the proposed algorithm. The results show that it offers promising performance in terms of the convergence rate, solution quality, and success rate.
机译:操作模式调度对于无线传感器网络(WSN)的生命周期至关重要。然而,由于维度的诅咒,现有的网络覆盖和进化算法无法提供令人满意的效率,网络规模的扩大使这种调度问题更具挑战性。本文提出了一种Kuhn-Munkres(KM)并行遗传算法来解决集合覆盖问题,并将其应用于大规模无线传感器网络的寿命最大化。所提出的算法将传感器调度到许多不相交的完整保护套中,并批量激活它们以节约能源。它使用降维的分而治之的策略,因此采用多项式KM算法a拼接在每个子区域中获得的可行解,从而大大提高了搜索效率。为了进一步提高全局效率,开发了一种冗余趋势传感器调度策略。此外,我们通过惩罚不完整的封面集来改善评估功能,从而加快了收敛速度。在分布式平台上进行了八种类型的实验,以测试并告知所提出算法的有效性。结果表明,在收敛速度,解决方案质量和成功率方面,它提供了令人满意的性能。

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