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Opportunistic Multipath Routing in Long-Hop Wireless Sensor Networks

机译:长跳无线传感器网络中的机会多路径路由

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摘要

To improve the packet delivery ratio in wireless sensor networks, many approaches such as multipath, opportunistic, and learning-based routing protocols have been proposed. However, the performance of the existing protocols are degraded under long-hop wireless sensor networks because the additional overhead is proportional to the number of hops. To deal with the overhead, we propose an opportunistic multipath routing that forecasts the required number of paths, as well as bifurcation based on opportunistic routing according to the reliability requirement. In the proposed scheme, an intermediate node is able to select a different node for each transmission and to handle path failure adaptively. Through a performance evaluation, we demonstrate that the proposed scheme achieves a higher packet delivery ratio and reduces the energy consumption by at least approximately 33% and up to approximately 65% compared with existing routing protocols, under the condition of an 80% link success ratio in the long-hop sensor network.
机译:为了提高无线传感器网络中的分组传送率,已经提出了许多方法,例如多径,机会主义和基于学习的路由协议。但是,在长跳无线传感器网络下,现有协议的性能会下降,因为额外的开销与跳数成正比。为了处理开销,我们提出了一种机会性多路径路由,该路由可预测所需的路径数,并根据可靠性要求基于机会性路由进行分叉。在提出的方案中,中间节点能够为每次传输选择不同的节点,并自适应地处理路径故障。通过性能评估,我们证明,在链路成功率达到80%的情况下,与现有的路由协议相比,该方案可实现更高的数据包传输率,并将能耗降低至少约33%,最高可降低约65%在长跳传感器网络中。

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