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A Two-Phase Coverage-Enhancing Algorithm for Hybrid Wireless Sensor Networks

机译:混合无线传感器网络的两阶段覆盖增强算法

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摘要

Providing field coverage is a key task in many sensor network applications. In certain scenarios, the sensor field may have coverage holes due to random initial deployment of sensors; thus, the desired level of coverage cannot be achieved. A hybrid wireless sensor network is a cost-effective solution to this problem, which is achieved by repositioning a portion of the mobile sensors in the network to meet the network coverage requirement. This paper investigates how to redeploy mobile sensor nodes to improve network coverage in hybrid wireless sensor networks. We propose a two-phase coverage-enhancing algorithm for hybrid wireless sensor networks. In phase one, we use a differential evolution algorithm to compute the candidate’s target positions in the mobile sensor nodes that could potentially improve coverage. In the second phase, we use an optimization scheme on the candidate’s target positions calculated from phase one to reduce the accumulated potential moving distance of mobile sensors, such that the exact mobile sensor nodes that need to be moved as well as their final target positions can be determined. Experimental results show that the proposed algorithm provided significant improvement in terms of area coverage rate, average moving distance, area coverage–distance rate and the number of moved mobile sensors, when compare with other approaches.
机译:在许多传感器网络应用中,提供现场覆盖是一项关键任务。在某些情况下,传感器区域可能由于传感器随机初始部署而具有覆盖孔;因此,无法实现所需的覆盖范围。混合无线传感器网络是解决此问题的一种经济高效的解决方案,可通过在网络中重新放置一部分移动传感器来满足网络覆盖要求来实现。本文研究如何在混合无线传感器网络中重新部署移动传感器节点以提高网络覆盖率。我们提出了一种用于混合无线传感器网络的两阶段覆盖增强算法。在第一阶段,我们使用差分进化算法来计算候选对象在移动传感器节点中的目标位置,这可能会改善覆盖范围。在第二阶段中,我们对从第一阶段计算出的候选目标位置使用了一种优化方案,以减少移动传感器的潜在累积移动距离,从而可以精确移动需要移动的传感器节点及其最终目标位置被确定。实验结果表明,与其他方法相比,该算法在区域覆盖率,平均移动距离,区域覆盖率-距离率和移动传感器的数量方面有了显着改善。

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