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PWDGR: Pair-Wise Directional Geographical Routing Based on Wireless Sensor Network

机译:PWDGR:基于无线传感器网络的配对明智定向地理路由

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Multipath routing in wireless multimedia sensor network makes it possible to transfer data simultaneously so as to reduce delay and congestion and it is worth researching. However, the current multipath routing strategy may cause problem that the node energy near sink becomes obviously higher than other nodes which makes the network invalid and dead. It also has serious impact on the performance of wireless multimedia sensor network (WMSN). In this paper, we propose a pair-wise directional geographical routing (PWDGR) strategy to solve the energy bottleneck problem. First, the source node can send the data to the pair-wise node around the sink node in accordance with certain algorithm and then it will send the data to the sink node. These pair-wise nodes are equally selected in 360° scope around sink according to a certain algorithm. Therefore, it can effectively relieve the serious energy burden around Sink and also make a balance between energy consumption and end-to-end delay. Theoretical analysis and a lot of simulation experiments on PWDGR have been done and the results indicate that PWDGR is superior to the proposed strategies of the similar strategies both in the view of the theory and the results of those simulation experiments. With respect to the strategies of the same kind, PWDGR is able to prolong 70% network life. The delay time is also measured and it is only increased by 8.1% compared with the similar strategies.
机译:无线多媒体传感器网络中的多径路由使同时传输数据成为可能,从而减少了延迟和拥塞,值得研究。但是,当前的多路径路由策略可能会导致以下问题:接收器附近的节点能量明显变得比其他节点更高,这会使网络无效和瘫痪。它还对无线多媒体传感器网络(WMSN)的性能产生严重影响。在本文中,我们提出了一种双向定向地理路由(PWDGR)策略来解决能源瓶颈问题。首先,源节点可以根据某种算法将数据发送到宿节点周围的成对节点,然后将数据发送到宿节点。根据特定算法,在水槽周围的360°范围内平均选择这些成对节点。因此,它可以有效缓解Sink周围严重的能源负担,并在能耗和端到端延迟之间取得平衡。对PWDGR进行了理论分析和大量的仿真实验,结果表明,无论从理论还是从仿真实验的结果来看,PWDGR均优于同类策略的拟议策略。对于相同的策略,PWDGR可以延长70%的网络寿命。还测量了延迟时间,与类似策略相比,它仅增加了8.1%。

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