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Scoped bellman-ford geographic routing for large dynamic wireless sensor networks

机译:适用于大型动态无线传感器网络的范围化Bellman-ford地理路由

摘要

Routing is a fundamental problem in wireless sensor networks. Most previous routing protocols are challenged when used in large dynamic networks as they suffer from either poor scalability or the void problem. In this paper, we propose a new geographic routing protocol, SBFR (Scoped Bellman-Ford Routing), for large dynamic wireless sensor networks. The basic idea is that each node keeps a view scope of the network by computing distance vectors using the distributed Bellman-Ford method, and maintains a cost for routing to the sink. When forwarding a packet, a node picks the node with minimum cost in its routing table as a temporary landmark. While achieving good scalability, it also solves the void problem in an efficient manner through the combination of Bellman-Ford routing and cost-based geographic routing. Analytical and simulation results show that SBFR outperforms other routing protocols not only because of its robustness and scalability but also its practicality and simplicity.
机译:路由是无线传感器网络中的一个基本问题。在大型动态网络中使用时,大多数以前的路由协议都面临着挑战,因为它们要么伸缩性差,要么存在空白问题。在本文中,我们为大型动态无线传感器网络提出了一种新的地理路由协议SBFR(范围化的Bellman-Ford路由)。基本思想是,每个节点通过使用分布式Bellman-Ford方法计算距离矢量来保持网络的可视范围,并维持路由到接收器的成本。转发数据包时,节点会在其路由表中选择成本最低的节点作为临时地标。在实现良好的可伸缩性的同时,它还通过将Bellman-Ford路由和基于成本的地理路由相结合,有效地解决了空缺问题。分析和仿真结果表明,SBFR不仅因为其鲁棒性和可扩展性,而且因为其实用性和简单性而优于其他路由协议。

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