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An optimal coverage-preserving scheme for wireless sensor networks based on local information exchange

机译:基于本地信息交换的无线传感器网络最优覆盖保护方案

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摘要

Coverage-preserving and energy-saving solutions have been reported in the literature and are generally based upon both quality coverage and off-duty scheme. Off-duty scheme based solutions present at least three challenging problems: (1) keeping coverage and connectivity of the network while optimizing the number of active sensor nodes; (2) resolving conflicts when determining which nodes should be turned off in order to save energy; and (3) finding optimal wake-up strategies that avoid waking up more nodes than necessary. This paper presents a novel distributed solution, the optimal coverage-preserving scheme (OCoPS), that extends the well-known Central Angle Method in order to identify fully sponsored nodes. OCoPS comprises an extended Central Angle Method, new decision algorithms devised to resolve the off-duty conflict problem under different network densities, and an energy-aware wake-up scheme that solves coverage hole problems in off-duty schemes. Compared to the widely used node scheduling scheme, our solution is based on local information exchange without the uncertainty of self-schedule algorithms. OCoPS is implemented as an extension of LEACH. A set of simulation experiments is carried out to evaluate its performance compared to other well-known schemes which are based on the Central Angle Method and self-scheduling. Our results indicate that on network lifetime OCoPS outperforms other schemes by over 20% and by over 25% when the coverage rate is higher than 80%. The experimental results also show that our coverage scheme effectively limits the number of on-duty node compared to the other schemes.
机译:覆盖范围和节能解决方案已经在文献中进行了报道,并且通常基于质量覆盖范围和休班方案。基于非任务模式的解决方案至少存在三个挑战性问题:(1)在优化活动传感器节点数量的同时保持网络的覆盖范围和连通性; (2)在确定应关闭哪些节点以节省能源时解决冲突; (3)找到最佳的唤醒策略,避免唤醒不必要的节点。本文提出了一种新颖的分布式解决方案,即最佳覆盖范围保留方案(OCoPS),该方案扩展了众所周知的“中心角方法”,以便识别完全赞助的节点。 OCoPS包括扩展的中心角方法,旨在解决不同网络密度下的下班冲突问题的新决策算法,以及解决下班方案中的覆盖孔问题的能量感知唤醒方案。与广泛使用的节点调度方案相比,我们的解决方案基于本地信息交换,而没有自调度算法的不确定性。 OCoPS被实现为LEACH的扩展。进行了一组模拟实验,以与基于中心角方法和自调度的其他知名方案进行比较,以评估其性能。我们的结果表明,在网络生命周期内,OCoPS优于其他方案超过20%,而当覆盖率高于80%时,则超过25%。实验结果还表明,与其他方案相比,我们的覆盖方案有效地限制了值班节点的数量。

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