Multiple communication in multi-hop radio networks

R. Bar-Yehuda, A. Israeli
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引用次数: 138

Abstract

Two tasks of communication in a multi-hop synchronous radio network are considered: point-to-point communication and broadcast (sending a message to all nodes of a network). Efficient protocols for both problems are presented. Even though the protocols are probabilistic, it is shown how to acknowledge messages deterministically. Let n, D, and ∆ be the number of nodes, the diameter and the maximum degree of our network, respectively. Both protocols require a setup phase in which a BFS tree is constructed. This phase takes O ((n + Dlogn)log∆) time. After the setup, k point-to-point transmissions require O ((k +D)log∆) time on the average. Therefore the network allows a new transmission every O (log∆) time slots. Also, k broadcasts require an average of O ((k +D)log∆logn) time. Hence the average throughput of the network is a broadcast every O(log∆logn) time slots. Both protocols pipeline the messages along the BFS tree. They are always successful on the graph spanned by the BFS tree. Their probabilistic behavior refers only to the running time. Using the above protocols the ranking problem is solved in O (nlognlog∆) time. The performance analysis of both protocols constitutes a new application of queueing theory.
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多跳无线网络中的多重通信
考虑了多跳同步无线网络中的两个通信任务:点对点通信和广播(向网络的所有节点发送消息)。针对这两个问题提出了有效的协议。尽管协议是概率性的,但它展示了如何确定地确认消息。设n、D、∆分别为网络的节点数、直径和最大程度。这两种协议都需要一个构建BFS树的设置阶段。这一阶段需要O ((n + Dlogn)log∆)时间。设置完成后,k次点对点传输平均需要O ((k +D)log∆)时间。因此,网络允许每O (log∆)个时隙进行一次新的传输。同样,k次广播需要平均O ((k +D)log∆logn)时间。因此,网络的平均吞吐量是每O(log∆logn)个时隙广播一次。这两个协议都沿着BFS树传递消息。它们在BFS树生成的图上总是成功的。它们的概率行为只与运行时间有关。使用上述协议,排序问题在O (nloglog∆)时间内得到解决。这两种协议的性能分析构成了排队理论的一个新的应用。
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Multiple communication in multi-hop radio networks Bounded polynomial randomized consensus Equational reasoning about nondeterministic processes A structural induction theorem for processes A hundred impossibility proofs for distributed computing
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