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Energy efficient geographic routing for wireless sensor networks.

机译:无线传感器网络的节能地理路由。

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A wireless sensor network consists of a large number of low-power nodes equipped with wireless radio. For two nodes not in mutual transmission range, message exchanges need to be relayed through a series of intermediate nodes, which is a process known as multi-hop routing. The design of efficient routing protocols for dynamic network topologies is a crucial for scalable sensor networks. Geographic routing is a recently developed technique that uses locally available position information of nodes to make packet forwarding decisions. This dissertation develops a framework for energy efficient geographic routing. This framework includes a path pruning strategy by exploiting the channel listening capability, an anchor-based routing protocol using anchors to act as relay nodes between source and destination, a geographic multicast algorithm clustering destinations that can share the same next hop, and a lifetime-aware routing algorithm to prolong the lifetime of wireless sensor networks by considering four important factors: PRR (Packet Reception Rate), forwarding history, progress and remaining energy. This dissertation discusses the system design, theoretic analysis, simulation and testbed implementation involved in the aforementioned framework. It is shown that the proposed design significantly improves the routing efficiency in sensor networks over existing geographic routing protocols. The routing methods developed in this dissertation are also applicable to other location-based wireless networks.
机译:无线传感器网络由大量配备无线电的低功率节点组成。对于不在相互传输范围内的两个节点,消息交换需要通过一系列中间节点进行中继,这一过程称为多跳路由。动态网络拓扑的有效路由协议的设计对于可扩展的传感器网络至关重要。地理路由是一种最新开发的技术,它使用节点的本地可用位置信息来制定数据包转发决策。本文为能效地理路由开发了一个框架。该框架包括通过利用信道监听功能的路径修剪策略,基于锚的基于锚的路由协议,用作锚点作为源与目的地之间的中继节点,地理多播算法将目的地共享为同一下一跳的群集方法以及生命周期-通过考虑以下四个重要因素来提高无线传感器网络的寿命的路由算法:PRR(数据包接收率),转发历史记录,进度和剩余能量。本文讨论了上述框架所涉及的系统设计,理论分析,仿真和测试平台的实现。结果表明,与现有的地理路由协议相比,提出的设计显着提高了传感器网络的路由效率。本文开发的路由方法也适用于其他基于位置的无线网络。

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