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An energy efficient localized topology control algorithm for wireless multihop networks

机译:无线多跳网络的高效节能局部拓扑控制算法

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Localized topology control is attractive for generating reduced topologies with desirable features such as sparser connectivity and reduced transmit powers. In this paper, we propose an energy efficient localized topology control algorithm called X-LMST in order to achieve prolonged network lifetime. In X-LMST, each node is required to keep its one-hop neighborhood topology. Moreover, in X-LMST, a new metric is introduced for characterizing the energy criticality status of each link in the network. Each node independently constructs a local energy-efficient near-minimal spanning tree (MST) for finding a reduced neighbor set while maximally avoiding overusing energy-critical links in its one-hop neighborhood for future communications. Simulation results show that X-LMST significantly outperforms existing work in terms of network lifetime.
机译:局部拓扑控制对于生成具有所需特征(如稀疏连接性和降低的发射功率)的简化拓扑很有吸引力。在本文中,我们提出了一种节能的局部拓扑控制算法X-LMST,以实现更长的网络寿命。在X-LMST中,要求每个节点保留其一跳邻居拓扑。此外,在X-LMST中,引入了一种新的度量标准,用于表征网络中每个链路的能量临界状态。每个节点独立构造一个局部节能的近最小生成树(MST),以查找减少的邻居集,同时最大程度地避免在其单跳邻域中过度使用能源关键型链路进行将来的通信。仿真结果表明,在网络寿命方面,X-LMST明显优于现有工作。

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