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Energy-Efficient Topology Control in Cooperative Ad Hoc Networks

机译:协作式Ad Hoc网络中的节能拓扑控制

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Cooperative communication (CC) exploits space diversity through allowing multiple nodes cooperatively relay signals to the receiver so that the combined signal at the receiver can be correctly decoded. Since CC can reduce the transmission power and extend the transmission coverage, it has been considered in topology control protocols [1], [2]. However, prior research on topology control with CC only focuses on maintaining the network connectivity, minimizing the transmission power of each node, whereas ignores the energy efficiency of paths in constructed topologies. This may cause inefficient routes and hurt the overall network performance in cooperative ad hoc networks. In this paper, to address this problem, we introduce a new topology control problem: energy-efficient topology control problem with cooperative communication, and propose two topology control algorithms to build cooperative energy spanners in which the energy efficiency of individual paths are guaranteed. Both proposed algorithms can be performed in distributed and localized fashion while maintaining the globally efficient paths. Simulation results confirm the nice performance of all proposed algorithms.
机译:协作通信(CC)通过允许多个节点协作地将信号中继到接收器来利用空间分集,以便可以正确解码接收器处的组合信号。由于CC可以降低传输功率并扩展传输范围,因此已在拓扑控制协议[1],[2]中进行了考虑。但是,先前关于使用CC进行拓扑控制的研究仅关注于保持网络连接性,使每个节点的传输功率最小化,而忽略了已构建拓扑中路径的能源效率。这可能会导致路由效率低下,并损害协作式Ad hoc网络中的整体网络性能。在本文中,为了解决这个问题,我们引入了一个新的拓扑控制问题:具有协作通信的节能型拓扑控制问题,并提出了两种拓扑控制算法来构建协作式能量扳手,在其中保证各个路径的能量效率。可以以分布式和局部方式执行两种建议算法,同时保持全局有效路径。仿真结果证实了所有提出算法的良好性能。

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