首页> 外文期刊>Simulation modelling practice and theory: International journal of the Federation of European Simulation Societies >An efficient technique for geocast region holes in underwater sensor networks and its performance evaluation
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An efficient technique for geocast region holes in underwater sensor networks and its performance evaluation

机译:一种在水下传感器网络中进行地质定位区域孔的有效技术及其性能评估

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摘要

In this paper, we present a complete Geocasting solution for underwater sensor networks. The model named Routing and Multicast Tree based Geocasting (RMTG) [1,2] has been designed for underwater sensor networks. In our previous work [1], we proposed and simulated the RMTG model in terms of routing, route maintenance, link stability and data dispersion inside the geocast region in static as well as in mobile network conditions. In [3] we provided the theoretical improvement over the RMTG in terms of Geocasting for underwater sensor network by providing solutions for hole/void area detection inside the geocast region and a solution to cover the scattered nodes in the geocast region for guaranteed message delivery by means of boundary routing (that is routing by traversing all the faces of a particular geocast region). Here, the work in [3] has been enhanced, the model is named as Routing and Multicast Tree based Geocasting with Hole Detection (RMTG-HD). A detailed analysis and performance evaluation of the proposed model has also been provided. The simulation results show that the proposed model provides an efficient distribution of data in the geocast region in terms of packet delivery ratio, boundary routing delay, hole detection delay and handling of node mobility.
机译:在本文中,我们为水下传感器网络提供了一个完整的Geocasting解决方案。名为“基于路由和组播树的地理广播(RMTG)” [1,2]的模型是为水下传感器网络设计的。在我们以前的工作中[1],我们在静态和移动网络条件下,在地质广播区域内部的路由,路由维护,链路稳定性和数据分散方面提出并模拟了RMTG模型。在[3]中,我们为水下传感器网络的地理广播提供了RMTG的理论上的改进,方法是提供地质广播区域内部的孔洞/空隙区域检测解决方案,以及覆盖地理广播区域中分散节点的解决方案,以确保消息传递。边界路由的方法(即通过遍历特定地理广播区域的所有面的路由)。在此,[3]中的工作得到了增强,该模型被命名为基于带有漏洞检测的路由和基于组播树的地理广播(RMTG-HD)。还提供了对该模型的详细分析和性能评估。仿真结果表明,所提出的模型在分组传送率,边界路由延迟,空穴检测延迟和节点移动性处理方面提供了在地理广播区域中有效的数据分布。

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