Low consumption dynamic time synchronization for mobile and high latency underwater acoustic communication networks

Yongheng Wang, Sun Da-jun, W. Fan, Youwen Zhang
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引用次数: 3

Abstract

Precise time synchronization is a foundation in the distributed wireless sensor networks in order to ensure the effective co-operation of work such as data fusion and time division scheduling. Due to the high latency caused by low sound speed and mobility between nodes in the underwater acoustic environment, it is difficult to apply mature radio time synchronization algorithms which are widely used in terrestrial networks in the underwater acoustic communication networks. In recent years, several time synchronization algorithms for underwater sensor networks have been developed. However, these algorithms are mostly in the stage of simulation research, which is based on the premise of relative static nodes which require large energy for data exchange and complex linear regression calculations. When taking the mobile platform as the time reference node, the time synchronization between nodes will lead to the problem of bidirectional delay inequality. To tackle these problems, a dynamic time synchronization algorithm based on relative speed compensation with lower energy consumption and higher reliability is proposed. Firstly, an high accuracy clock with low energy consumption is taken in the proposed algorithm to avoid the high energy consumption and large computation in the estimation processing of the clock frequency skew. Secondly, the Linear Frequency Modulation (LFM) pulse pair which can estimate the relative speed of motion is inserted during the exchanging of time information, which can estimate the link propagation delay. Thirdly, a decision mechanism with three times information interaction between two nodes is used to ensure the robustness of time synchronization. Finally, the lake experimental results show that the maximum time synchronization deviation of traditional TSHL algorithm is 18ms, whereas the maximum time synchronization deviation of the proposed algorithm is less than 6ms, and it has higher reliability when the relative speed is up to 6kt between the two nodes.
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移动和高延迟水声通信网络的低消耗动态时间同步
精确的时间同步是分布式无线传感器网络的基础,它保证了数据融合和分时调度等工作的有效协同。由于水声环境中低声速和节点间移动性造成的高延迟,在水声通信网络中难以将地面网络中广泛使用的成熟无线电时间同步算法应用到水声通信网络中。近年来,水下传感器网络的时间同步算法得到了发展。然而,这些算法大多处于仿真研究阶段,其前提是节点相对静态,需要大量的能量进行数据交换和复杂的线性回归计算。当以移动平台作为时间参考节点时,节点间的时间同步会导致双向延迟不等的问题。针对这些问题,提出了一种低能耗、高可靠性的基于相对速度补偿的动态时间同步算法。首先,该算法采用低能耗的高精度时钟,避免了时钟频率偏差估计过程中的高能耗和大计算量;其次,在时间信息交换过程中插入可以估计相对运动速度的线性调频(LFM)脉冲对,可以估计链路的传播延迟;第三,采用节点间三次信息交互的决策机制,保证时间同步的鲁棒性。最后,湖泊实验结果表明,传统TSHL算法的最大时间同步偏差为18ms,而本文算法的最大时间同步偏差小于6ms,当两个节点之间的相对速度高达6kt时,具有更高的可靠性。
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