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Multihops Fitting Approach for Node Localization in Underwater Wireless Sensor Networks

机译:水下无线传感器网络中节点定位的多跳拟合方法

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Nodes in underwater wireless sensor networks (UWSNs) keep moving and dispersing due to force of water flow and aquatic creatures touching, and thus some isolated unknown nodes emerge. This type of isolated unknown nodes cannot directly communicate with enough beacons in their neighborhoods, which makes localizations for them disabled or the localization error unbearable. To this end, a multihops fitting localization approach is proposed in this paper. Firstly, some intermediate nodes between beacons and unknown nodes are set as routers to construct paths via a greedy method; then, the multihop paths are approximately fitted into straight lines; finally, the positions of unknown nodes can be estimated by trilateration. The proposed algorithm is analyzed and simulated in terms of localization error and error variance, and the results are proven preferable.
机译:水下无线传感器网络(UWSN)中的节点由于水流和水生生物的接触而不断移动和分散,因此出现了一些孤立的未知节点。这种类型的孤立未知节点无法直接与其附近的足够的信标进行通信,这使它们的本地化被禁用,或者本地化错误难以忍受。为此,本文提出了一种多跳拟合定位方法。首先,将信标和未知节点之间的一些中间节点设置为路由器,以通过贪婪方法构造路径。然后,将多跳路径近似拟合为直线;最后,可以通过三边测量法估计未知节点的位置。针对定位误差和误差方差对算法进行了分析和仿真,结果证明是优选的。

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