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基于多普勒测速的水下传感器时间同步算法
引用本文:姚宇婕,刘广钟,孔维全. 基于多普勒测速的水下传感器时间同步算法[J]. 计算机工程, 2021, 47(4): 147-152. DOI: 10.19678/j.issn.1000-3428.0056947
作者姓名:姚宇婕  刘广钟  孔维全
作者单位:上海海事大学 信息工程学院, 上海 201306
基金项目:中国博士后科学基金;上海市教委科研创新项目
摘    要:时间同步是水下传感器网络的关键技术,由于海洋中采用水声通信时传播时延高且存在多普勒频移,导致使用射频通信的陆上时间同步算法无法直接应用于水下环境.基于多普勒测速原理和节点在水下的移动性,提出一种新型的时间同步CD-Sync算法.利用具有聚类特性的分簇模型选择合理的簇首节点,并与水面信标节点进行簇内同步,且在同步过程中,...

关 键 词:水下传感器  多普勒测速  分簇  传播延迟  时间同步
收稿时间:2019-12-18
修稿时间:2020-04-14

Time Synchronization Algorithm of Underwater Sensor Based on Doppler Velocity Measurement
YAO Yujie,LIU Guangzhong,KONG Weiquan. Time Synchronization Algorithm of Underwater Sensor Based on Doppler Velocity Measurement[J]. Computer Engineering, 2021, 47(4): 147-152. DOI: 10.19678/j.issn.1000-3428.0056947
Authors:YAO Yujie  LIU Guangzhong  KONG Weiquan
Affiliation:College of Information Engineering, Shanghai Maritime University, Shanghai 201306, China
Abstract:Time synchronization is the key technology of underwater sensor networks.Due to the high propagation delay and Doppler frequency shift of underwater acoustic communication in the ocean,the land-based time synchronization algorithm using radio frequency communication can not be directly applied to the underwater environment.Based on the principle of Doppler velocity measurement and the mobility of nodes under water,this paper proposes a new time synchronization CD-Sync algorithm.The cluster model with clustering characteristics is used to select a reasonable cluster head node and synchronize with the water surface beacon node within the cluster.In the process of synchronization,the synchronization node uses Doppler principle to estimate the relative moving speed between nodes,so as to calculate the propagation delay between nodes.Experimental results show that,compared with MU-Sync algorithm based on clustering time synchronization and NU-Sync algorithm based on distributed time synchronization,this algorithm can shorten the distance between nodes and accelerate the convergence speed of synchronization between nodes,while effectively improving the accuracy of time synchronization.
Keywords:underwater sensor  Doppler velocity measurement  clustering  propagation delay  time synchronization
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