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Topology control of multihop wireless networks using transmit power adjustment

机译:使用发射功率调整的多跳无线网络拓扑控制

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We consider the problem of adjusting the transmit powers of nodes in a multihop wireless network (also called an ad hoc network) to create a desired topology. We formulate it as a constrained optimization problem with two constraints-connectivity and biconnectivity, and one optimization objective-maximum power used. We present two centralized algorithms for use in static networks, and prove their optimality. For mobile networks, we present two distributed heuristics that adaptively adjust node transmit powers in response to topological changes and attempt to maintain a connected topology using minimum power. We analyze the throughput, delay, and power consumption of our algorithms using a prototype software implementation, an emulation of a power-controllable radio, and a detailed channel model. Our results show that the performance of multihop wireless networks in practice can be substantially increased with topology control.
机译:我们考虑了在多跳无线网络(也称为自组织网络)中调整节点的发射功率以创建所需拓扑的问题。我们将其公式化为约束优化问题,它具有两个约束条件-连通性和双连通性,并且使用了一个优化目标-最大功率。我们提出了两种在静态网络中使用的集中式算法,并证明了它们的最优性。对于移动网络,我们提出了两种分布式启发式方法,它们可根据拓扑变化自适应地调整节点的发射功率,并尝试使用最小的功率来维持连接的拓扑。我们使用原型软件实现,功率可控无线电的仿真以及详细的信道模型来分析算法的吞吐量,延迟和功耗。我们的结果表明,实际上,通过拓扑控制可以大大提高多跳无线网络的性能。

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