Time Synchronization with Multiple-Access Data Transmission Protocol in Underwater Sensor Networks

Zhigang Jin, T. Wu, Yishan Su, Shuo Li, Boyao Wei
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引用次数: 2

Abstract

Time synchronization of underwater acoustic sensor networks is an important prerequisite for the normal operation of multiple access transmission. However, the separated research of the two can easily lead to repeated sending of control packets, resulting in the waste of time and energy resources. Therefore, we propose time synchronization with multiple-access data transmission protocol (TSMP) in underwater sensor networks. In this protocol, time synchronization and multiple-access data transmission are combined to form an effective underwater data transmission system, reducing exchanged message and saving time and energy. In addition, there are no reference nodes as standard time. We are pursuing local time synchronization that only nodes that communicate with each other are synchronized. The time synchronization of TSMP is based on the Doppler method to calculate the relative speed between nodes. Considering the effect of the relative movement between nodes on the propagation delay, the accuracy of transmission delay is improved. Then, the receiver adds the local time to the value of total transmission delay. This allows the receiver and the sender to synchronize. Simulation results show TSMP has a better performance in terms of the packet delivery fraction, synchronization errors and energy efficiency.
水下传感器网络中多址数据传输协议的时间同步
水声传感器网络的时间同步是保证多址传输正常运行的重要前提。但是,将两者分开研究很容易导致控制报文的重复发送,造成时间和精力的浪费。因此,我们提出在水下传感器网络中使用多址数据传输协议(TSMP)实现时间同步。该协议将时间同步和多址数据传输相结合,形成了一个有效的水下数据传输系统,减少了报文交换,节省了时间和精力。此外,没有参考节点作为标准时间。我们正在追求本地时间同步,只有相互通信的节点才会同步。TSMP的时间同步是基于多普勒方法来计算节点间的相对速度。考虑到节点间相对运动对传输延迟的影响,提高了传输延迟的精度。然后,接收方将本地时间加到总传输延迟值中。这允许接收方和发送方同步。仿真结果表明,TSMP在分组分发率、同步误差和能量效率方面具有更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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