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Calibration method of the time synchronization error of many data acquisition nodes in the chained system

机译:链式系统中多个数据采集节点时间同步误差的标定方法

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Time synchronization is very important in a distributed chained seismic acquisition system with a large number of data acquisition nodes (DANs). The time synchronization error has two causes. On the one hand, there is a large accumulated propagation delay when commands propagate from the analysis and control system to multiple distant DANs, which makes it impossible for different DANs to receive the same command synchronously. Unfortunately, the propagation delay of commands (PDCs) varies in different application environments. On the other hand, the phase jitter of both the master clock and the clock recovery phase-locked loop, which is designed to extract the timing signal, may also cause the time synchronization error. In this paper, in order to achieve accurate time synchronization, a novel calibration method is proposed which can align the PDCs of all of the DANs in real time and overcome the time synchronization error caused by the phase jitter. Firstly, we give a quantitative analysis of the time synchronization error caused by both the PDCs and the phase jitter. Secondly, we propose a back and forth model (BFM) and a transmission delay measurement method (TDMM) to overcome these difficulties. Furthermore, the BFM is designed as the hardware configuration to measure the PDCs and calibrate the time synchronization error. The TDMM is used to measure the PDCs accurately. Thirdly, in order to overcome the time synchronization error caused by the phase jitter, a compression and mapping algorithm (CMA) is presented. Finally, based on the proposed BFM, TDMM and CMA, a united calibration algorithm is developed to overcome the time synchronization error caused by both the PDCs and the phase jitter. The simulation experiment results show the effectiveness of the calibration method proposed in this paper.
机译:在具有大量数据采集节点(DAN)的分布式链式地震采集系统中,时间同步非常重要。时间同步错误有两个原因。一方面,当命令从分析和控制系统传播到多个远距离DAN时,存在较大的累积传播延迟,这使得不同DAN无法同步接收同一命令。不幸的是,命令的传播延迟(PDC)在不同的应用程序环境中会有所不同。另一方面,被设计为提取定时信号的主时钟和时钟恢复锁相环的相位抖动也可能引起时间同步误差。为了实现精确的时间同步,提出了一种新颖的校准方法,该方法可以实时对准所有DAN的PDC,克服相位抖动引起的时间同步误差。首先,我们对由PDC和相位抖动引起的时间同步误差进行了定量分析。其次,我们提出了一种来回模型(BFM)和传输延迟测量方法(TDMM)来克服这些困难。此外,BFM被设计为用于测量PDC并校准时间同步误差的硬件配置。 TDMM用于精确测量PDC。第三,为了克服由相位抖动引起的时间同步误差,提出了一种压缩映射算法(CMA)。最后,基于提出的BFM,TDMM和CMA,开发了一种统一的校准算法,以克服由PDC和相位抖动引起的时间同步误差。仿真实验结果表明了本文提出的标定方法的有效性。

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