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Energy-Efficient Beaconless Geographic Routing in Wireless Sensor Networks

机译:无线传感器网络中的节能无信标地理路由

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Geographic routing is an attractive localized routing scheme for wireless sensor networks (WSNs) due to its desirable scalability and efficiency. Maintaining neighborhood information for packet forwarding can achieve a high efficiency in geographic routing, but may not be appropriate for WSNs in highly dynamic scenarios where network topology changes frequently due to nodes mobility and availability. We propose a novel online routing scheme, called Energy-efficient Beaconless Geographic Routing (EBGR), which can provide loop-free, fully stateless, energy-efficient sensor-to-sink routing at a low communication overhead without the help of prior neighborhood knowledge. In EBGR, each node first calculates its ideal next-hop relay position on the straight line toward the sink based on the energy-optimal forwarding distance, and each forwarder selects the neighbor closest to its ideal next-hop relay position as the next-hop relay using the Request-To-Send/Clear-To-Send (RTS/CTS) handshaking mechanism. We establish the lower and upper bounds on hop count and the upper bound on energy consumption under EBGR for sensor-to-sink routing, assuming no packet loss and no failures in greedy forwarding. Moreover, we demonstrate that the expected total energy consumption along a route toward the sink under EBGR approaches to the lower bound with the increase of node deployment density. We also extend EBGR to lossy sensor networks to provide energy-efficient routing in the presence of unreliable communication links. Simulation results show that our scheme significantly outperforms existing protocols in wireless sensor networks with highly dynamic network topologies.
机译:地理路由由于其理想的可扩展性和效率,是一种用于无线传感器网络(WSN)的有吸引力的局部路由方案。维护用于分组转发的邻域信息可以在地理路由中实现高效率,但可能不适用于网络拓扑由于节点移动性和可用性而频繁更改的高度动态场景中的WSN。我们提出了一种新颖的在线路由方案,称为节能无信标地理路由(EBGR),它可以在低通信开销的情况下提供无环路,完全无状态,节能的传感器到接收器路由,而无需先验邻居知识。在EBGR中,每个节点首先根据能量最佳转发距离计算其在朝向接收器的直线上的理想下一跳中继位置,然后每个转发器选择最接近其理想下一跳中继位置的邻居作为下一跳使用请求发送/清除发送(RTS / CTS)握手机制进行中继。假设没有数据包丢失并且没有贪婪转发的失败,我们为传感器到接收者的路由建立了跳数的上限和下限,以及在EBGR下的能耗上限。此外,我们证明,随着节点部署密度的增加,在EBGR下沿汇向汇的路径的预期总能耗接近下限。我们还将EBGR扩展到有损传感器网络,以在通信链路不可靠的情况下提供节能路由。仿真结果表明,在具有高度动态网络拓扑的无线传感器网络中,我们的方案明显优于现有协议。

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