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Towards a Hybrid Energy Efficient Multi-Tree-Based Optimized Routing Protocol for Wireless Networks

机译:面向无线网络的混合节能高效基于多树的优化路由协议

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This paper considers the problem of designing power efficient routing with guaranteed delivery for sensor networks with unknown geographic locations. We propose HECTOR, a hybrid energy efficient tree-based optimized routing protocol, based on two sets of virtual coordinates. One set is based on rooted tree coordinates, and the other is based on hop distances toward several landmarks. In HECTOR, the node currently holding the packet forwards it to its neighbor that optimizes ratio of power cost over distance progress with landmark coordinates, among nodes that reduce landmark coordinates and do not increase distance in tree coordinates. If such a node does not exist, then forwarding is made to the neighbor that reduces tree-based distance only and optimizes power cost over tree distance progress ratio. We theoretically prove the packet delivery and propose an extension based on the use of multiple trees. Our simulations show the superiority of our algorithm over existing alternatives while guaranteeing delivery, and only up to 30% additional power compared to centralized shortest weighted path algorithm.
机译:本文考虑了为地理位置不明的传感器网络设计功率高效路由并保证交付的问题。我们提出了HECTOR,这是一种基于两组虚拟坐标的混合节能树型优化路由协议。一组基于有根的树坐标,另一组基于到多个地标的跳跃距离。在HECTOR中,当前持有数据包的节点将其转发到其邻居,该邻居在减少地标坐标且不增加树坐标距离的节点中,使用地标坐标优化了功率成本与距离进度的比率。如果不存在这样的节点,则将转发到邻居,该邻居仅减少基于树的距离并在树距离进度比率上优化功耗。我们从理论上证明了数据包的传递,并提出了基于使用多个树的扩展。我们的仿真显示了我们的算法在保证交付的同时优于现有替代方案的优势,并且与集中式最短加权路径算法相比仅增加了30%的额外功耗。

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