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TARS: A Traffic-Adaptive Receiver-Synchronized MAC Protocol for Underwater Sensor Networks

机译:TARS:用于水下传感器网络的流量自适应接收器同步MAC协议

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Efficient medium access control (MAC) is desirable for underwater sensor networks (UWSNs). However, designing an efficient underwater MAC protocol is challenging due to the long propagation delay of the underwater acoustic channel and spatial-temporal uncertainty. In this article, we propose a novel Traffic-Adaptive Receiver-Synchronized underwater MAC protocol, TARS, for throughput maximization. We divide time into equal-sized slots, each the size of one packet transmission time plus a guard time to cope with network dynamics. We adjust the packet transmission phase in a slot, determined by the sender-receiver distance, to align packet receptions for collision reduction. Both the sound propagation speed variation and the node mobility are considered in setting the transmission phase and slot size. We employ a queue-aware utility-optimization framework to determine the optimal transmission strategies dynamically, taking into account both the interference and data queue status. Extensive simulation results show that compared to the existing representative protocols, TARS achieves better performance with higher network throughput and lower packet delay (e.g., about 13%-146% higher in throughput and 13%-21% lower in delay than others in a mobile ad hoc network), as well as robustness under network mobility. Thus, TARS is highly suitable for mobile and traffic-varying UWSNs.
机译:对于水下传感器网络(UWSN),需要有效的媒体访问控制(MAC)。然而,由于水下声信道的长传播延迟和时空不确定性,设计有效的水下MAC协议具有挑战性。在本文中,我们提出了一种新的流量自适应接收器同步水下MAC协议TARS,以实现吞吐量最大化。我们将时间划分为大小相等的时隙,每个时隙的大小为一个数据包传输时间加上一个保护时间,以应对网络动态变化。我们调整时隙中的数据包传输相位,该相位由发送方-接收方距离确定,以对齐数据包接收以减少冲突。在设置传输相位和时隙大小时,都考虑了声音传播速度的变化和节点的移动性。考虑到干扰和数据队列状态,我们采用了队列感知的效用优化框架来动态确定最佳传输策略。大量的仿真结果表明,与现有的代表性协议相比,TARS在更高的网络吞吐量和更低的数据包延迟下实现了更好的性能(例如,与移动设备中的其他协议相比,吞吐量提高了约13%-146%,而延迟则降低了13%-21% Ad hoc网络)以及网络移动性下的鲁棒性。因此,TARS非常适合于移动和流量变化的UWSN。

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