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A new node coordination scheme for data gathering in underwater acoustic sensor networks using autonomous underwater vehicle

机译:自动水下车辆水下声学传感器网络中的数据收集新节点协调方案

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Underwater acoustic sensor network (UWSN) has many important future applications in environmental, natural resources development, and geological oceanography. The recent advancement in underwater acoustic networking technologies and autonomous underwater vehicle (AUV) technologies enables the new underwater networking paradigm of using the AUV as the mobile sink for data collection. In this paper, we propose a coordination scheme for data gathering in UWSN using AUV. The mobility of AUV makes communication between AUV and sensor nodes challenging and it is difficult to guarantee that sensor nodes will be able to come out of sleep mode for communication. With different energy consumption requirements and constraints, the operation of AUV includes sending beacon messages, channel detection, and data reception, whereas that for the underwater sensor nodes involves prolonged sleep mode with sporadic data transmission. Therefore, different cycle periods would be required for AUV and sensor nodes. A new scheme is proposed and the shortest wakeup time and optimal amount of sleeping time for sensor nodes are investigated. Moreover, we demonstrate the effectiveness of our scheme when time synchronization does not exist between AUV and sensor nodes. Furthermore, transmission power control by using received signal strength (RSS) is introduced in order to decrease energy consumption and increase communication reliability. Simulation results show that the proposed scheme with power control leads to relative low energy consumption during communication under the harsh underwater environment compared with that without power control.
机译:水下声学传感器网络(UWSN)在环境,自然资源开发和地质海洋学中具有许多重要的未来应用。最近在水下的声学网络技术和自主水下车辆(AUV)技术的进步使得新的水下网络范式使用AUV作为数据收集的移动接收器。在本文中,我们提出了一种使用AUV在UWSN中收集数据的协调方案。 AUV的移动性在AUV和传感器节点之间进行攻击之间的通信,并且很难保证传感器节点将能够从睡眠模式中出来进行通信。通过不同的能耗要求和约束,AUV的操作包括发送信标消息,通道检测和数据接收,而对于水下传感器节点,则涉及具有零星数据传输的长时间的睡眠模式。因此,AUV和传感器节点需要不同的循环周期。研究了一种新的方案,并研究了传感器节点的最短唤醒时间和最佳休眠时间。此外,当AUV和传感器节点之间不存在时间同步时,我们展示了我们方案的有效性。此外,引入了通过使用接收信号强度(RSS)的传输功率控制,以降低能量消耗并提高通信可靠性。仿真结果表明,由于没有功率控制,所提出的具有电力控制的方案导致电力控制期间的相对低能耗。

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