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Maximizing network coverage in a multichannel short-range underwater acoustic sensor network

机译:在多通道短距离水下声传感器网络中最大化网络覆盖范围

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In this paper, a Media Access Control (MAC) protocol is investigated for multichannel underwater acoustic sensor networks and a distributed channel allocation scheme is proposed for acoustic nodes equipped with a multichannel bi-directional transceiver. To ensure that a minimum of one channel is allocated for each transmitter-receiver pair, a novel distributed channel allocation scheme, the High Coverage High Fairness (HCHF) algorithm, is proposed. The algorithm requires the exchange of channel sensing information among neighbor nodes at the beginning of each transmission time slot. To compare HCHF and existing schemes, various performance metrics are assessed including spectrum utilization, coverage, fairness, and control packet overhead. Simulation results indicate that the HCHF scheme can improve the coverage and fairness in comparison to other schemes without sacrificing much on the spectrum utilization. The performance improvement of HCHF is constrained by a higher control message overhead, since local packet exchange between neighbor nodes is required to share spectrum sensing information. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本文中,研究了用于多通道水下声传感器网络的媒体访问控制(MAC)协议,并提出了一种针对配备有多通道双向收发器的声节点的分布式通道分配方案。为了确保为每个收发器对分配最少的一个信道,提出了一种新颖的分布式信道分配方案,即高覆盖率高公平性(HCHF)算法。该算法要求在每个传输时隙开始时在相邻节点之间交换信道感知信息。为了比较HCHF和现有方案,评估了各种性能指标,包括频谱利用率,覆盖范围,公平性和控制数据包开销。仿真结果表明,与其他方案相比,HCHF方案可以提高覆盖范围和公平性,而不会大幅降低频谱利用率。 HCHF的性能提高受到较高控制消息开销的限制,因为需要相邻节点之间的本地数据包交换来共享频谱感测信息。 (C)2019 Elsevier B.V.保留所有权利。

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