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An Energy-Efficient k-Disjoint-Path Routing Algorithm for Reliable Wireless Sensor Networks

机译:可靠性无线传感器网络的节能K-DISBOINT路径路径路径路径路径路径路径路径路径路径

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Wireless sensor networks are subject to sensor node and link failures due to various reasons. This paper proposes an energy-efficient, k-disjoint-path routing algorithm that adaptively varies the number of disjoint paths (k) according to changing data patterns and a target-delivery ratio of critical events. The proposed algorithm sends packets through a single path (k=l) under no occurrence of critical events, whereas it sends through k disjoint paths (k>l) under the occurrence of critical events, where k is computed from a well-defined fault model and the target delivery ratio. Note that the proposed algorithm detects the occurrence of critical events by monitoring changing data patterns. Our simulations reveal that the proposed algorithm not only guarantees the target delivery ratio as much as a multi-path routing algorithm, but also makes energy consumption and average delay as low as a single-path routing algorithm.
机译:由于各种原因,无线传感器网络受传感器节点和链路故障。本文提出了一种节能的K-Disboint路径路径路由算法,其根据改变数据模式和关键事件的目标交付比,自适应地改变不相交路径(k)的数量。所提出的算法在没有发生关键事件的情况下通过单个路径(k = l)发送分组,而在发生关键事件的情况下,它通过k个不相交路径(k> l),其中k从界限界定的故障计算模型和目标交付率。注意,所提出的算法通过监视更改数据模式来检测关键事件的发生。我们的模拟表明,所提出的算法不仅保证了目标交付比和多路径路由算法的目标交付比,而且还使能量消耗和平均延迟作为单路径路由算法。

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