Sector-Based Routing with Destination Location Prediction for Underwater Mobile Networks

N. Chirdchoo, Wee-Seng Soh, K. Chua
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引用次数: 95

Abstract

Unlike in terrestrial sensor networks where the locations of destination nodes are often assumed to be fixed and accurately known, such assumptions are usually not valid in underwater sensor networks where the destination nodes tend to be mobile inherently, either due to their self-propelling capability, or due to random motion caused by ocean currents. As a result, many existing location-based routing protocols do not work well in underwater environments. We propose a location-based routing protocol that is designed for mobile underwater acoustic sensor networks, called "Sector-based Routing with Destination Location Prediction (SBR-DLP)". While the SBR-DLP also assumes that a node knows its own location like many other location-based routing protocols, it predicts the location of the destination node, and therefore, relaxes the need for precise knowledge of the destination's location. Through simulations, the SBR-DLP is shown to enhance the packet delivery ratio significantly when all nodes are mobile.
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水下移动网络目标位置预测的扇区路由
在地面传感器网络中,目标节点的位置通常被假设为固定且准确已知,而在水下传感器网络中,这种假设通常是无效的,因为水下传感器网络的目标节点往往具有固有的移动性,这要么是由于它们的自推进能力,要么是由于洋流引起的随机运动。因此,许多现有的基于位置的路由协议在水下环境中不能很好地工作。我们提出了一种为移动水声传感器网络设计的基于位置的路由协议,称为“基于扇区的目的地位置预测路由(SBR-DLP)”。虽然SBR-DLP也假设节点像许多其他基于位置的路由协议一样知道自己的位置,但它预测目标节点的位置,因此,减少了对目标位置精确知识的需求。仿真结果表明,当所有节点都处于移动状态时,SBR-DLP可以显著提高分组传输率。
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