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DCN-MAC: A Dynamic Channel Negotiation MAC Mechanism for Underwater Acoustic Sensor Networks

机译:DCN-MAC:水下声学传感器网络的动态通道协商MAC机制

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In the design of media access control (MAC) mechanism in underwater acoustic sensor networks (UASNs), due to the propagation characteristic of low-speed underwater acoustic signals, it is necessary to solve the spatial-temporal uncertainty problem. In order to avoid the multi-user access conflict in underwater networks, reduce the energy cost and improve the throughput and fairness across the network, a dynamic channel negotiation MAC mechanism based on spatial-temporal mapping of receiving queue (DCN-MAC) was proposed. DCN-MAC uses a duty cycle mechanism and implements a network management based on dynamic single node wake-up. The awakening node collects the request to send (RTS) and network status information in the network to solve the problem of space-temporal uncertainty and the highly dynamic needs of network access nodes and access services. The simulation results show that in different network scenarios, especially in those featuring high density and heavy network load, compared with the traditional underwater acoustic network MAC protocols, this protocol can effectively improve the network throughput and reduce the packet loss probability caused by multi-node conflict.
机译:在水下声学传感器网络(UASN)中的媒体访问控制(MAC)机制的设计中,由于低速水下声信号的传播特性,有必要解决空间时间不确定性问题。为了避免水下网络中的多用户访问冲突,提出了一种基于接收队列(DCN-MAC)的空间时间映射的动态信道协商MAC机制的能量成本并提高吞吐量和公平性。 DCN-MAC使用占空比机制并基于动态单节点唤醒实现网络管理。唤醒节点收集在网络中发送(RTS)和网络状态信息的请求,以解决空间时间不确定性的问题和网络访问节点和访问服务的高度动态需求。仿真结果表明,在不同的网络场景中,尤其是在具有高密度和重型网络负载的那些中,与传统的水下声学网络MAC协议相比,该协议可以有效地提高网络吞吐量并降低由多节点引起的数据包损耗概率冲突。

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