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Adaptive RTT-driven transport-layer flow and error control protocol for QoS guaranteed image transmission over multi-hop underwater wireless networks: Design, implementation, and analysis

机译:自适应RTT驱动的传输层流和错误控制协议,用于通过多跳水下无线网络进行QoS保证的图像传输:设计,实现和分析

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With the rapid advances in data transmission over various advanced underwater acoustic networks, it is important to develop the efficient protocol to obtain a high data-rate with QoS guarantee requirements for acoustic wireless communications. Because of the harsh underwater acoustic environments, such as time-varying network topology and channel conditions, limited bandwidth and constrained underwater signal propagation, we develop and implement the multi-hop adaptive RTT-driven transport layer flow and error control protocol (ARTFEC) for QoS guaranteed image transmission in underwater wireless networks. ARTFEC is based on the congestion window size control and the Q-learning optimal timeout selection with QoS provisioning. For the congestion window size control, we propose an RTT-based data flow control policy to adapt to the varying acoustic channel environments, aiming to guarantee the reliability and high data rate of data transmission. In addition, we develop a Q-learning based optimal timeout selection algorithm to improve the channel utilization efficiency, which can increase the end-to-end throughput while decreasing the packet loss rate. We implement ARTFEC using our lab testbed, which consists of the Aqua-Net protocol stack and the acoustic OFDM modems. The simulation results obtained show that our developed ARTFEC transport layer protocol outperforms the other existing reliable data transmission schemes, in terms of end-to-end throughput and packet loss rate.
机译:随着各种高级水下声学网络上数据传输的飞速发展,重要的是开发一种有效的协议,以获得对声学无线通信具有QoS保证要求的高数据速率。由于恶劣的水下声学环境,例如时变的网络拓扑和信道条件,有限的带宽和受限的水下信号传播,我们开发并实现了多跳自适应RTT驱动的传输层流和错误控制协议(ARTFEC),用于QoS保证了水下无线网络中的图像传输。 ARTFEC基于拥塞窗口大小控制和具有QoS设置的Q学习最佳超时选择。对于拥塞窗口大小控制,我们提出了一种基于RTT的数据流控制策略,以适应变化的声信道环境,旨在保证数据传输的可靠性和高数据传输率。此外,我们开发了一种基于Q学习的最佳超时选择算法,以提高信道利用率,该算法可以提高端到端吞吐量,同时降低丢包率。我们使用我们的实验室测试台实施ARTFEC,该测试台由Aqua-Net协议栈和声学OFDM调制解调器组成。获得的仿真结果表明,在端到端吞吐量和丢包率方面,我们开发的ARTFEC传输层协议优于其他现有的可靠数据传输方案。

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