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Distributed fault-tolerant topology control in wireless multi-hop networks

机译:无线多跳网络中的分布式容错拓扑控制

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In wireless multi-hop and ad-hoc networks, minimizing power consumption and at the same time maintaining desired properties of the network topology is of prime importance. In this work, we present a distributed algorithm for assigning minimum possible power to all the nodes in a static wireless network such that the resultant network topology is k-connected. In this algorithm, a node collects the location and maximum power information from all nodes in its vicinity, and then adjusts the power of these nodes in such a way that it can reach all of them through k optimal vertex-disjoint paths. The algorithm ensures k-connectivity in the final topology provided the topology induced when all nodes transmit with their maximum power is k-connected. We extend our topology control algorithm from static networks to networks having mobile nodes. We present proof of correctness for our algorithm for both static and mobile scenarios, and through extensive simulation we present its behavior.
机译:在无线多跳和自组织网络中,最大程度地降低功耗并同时保持所需的网络拓扑特性至关重要。在这项工作中,我们提出了一种分布式算法,用于为静态无线网络中的所有节点分配最小可能的功率,以使最终的网络拓扑处于k连接状态。在此算法中,节点从其附近的所有节点收集位置和最大功率信息,然后以可以通过k条最佳顶点不相交路径到达所有节点的方式调整这些节点的功率。该算法可确保最终拓扑中的k连接性,前提是当所有节点以其最大功率进行传输时所诱导的拓扑是k连接的。我们将拓扑控制算法从静态网络扩展到具有移动节点的网络。我们为静态和移动场景提供了算法正确性的证明,并且通过广泛的仿真,我们展示了其行为。

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