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On the Clock Offset Estimation in an Improved IEEE 1588 Synchronization Scheme

机译:改进的IEEE 1588同步方案中的时钟偏移估计

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IEEE 1588 specifies a dedicated protocol, the precision time protocol (PTP) for clock synchronization in a networked measurement and control system. It plays an important role in the packet-based network synchronization mechanism. However, the performance of the conventional IEEE 1588 synchronization algorithm is affected by the asymmetric link and random delay problems. This paper proposes an improved IEEE 1588 based synchronization scheme by utilizing additional packets with different sizes to overcome these problems, without adding hardware or overheads. Based on the proposed scheme, this paper derives the maximum likelihood estimators (MLEs) of the clock offset and analyzes the corresponding Cramer-Rao lower bounds (CRLBs) for both Gaussian and exponential random delay models. The performance of the proposed estimator is evaluated in two scenarios with different random delay distribution. The impact of the size of the transmitted packets is studied by simulation. The results show that the proposed scheme and estimators can successfully overcome the detrimental effect of the asymmetric link and random delay problems. The synchronization accuracy of the proposed scheme significantly outperforms both the conventional IEEE 1588 scheme and an existing method in terms of clock offset bias error without the need of extra hardware.
机译:IEEE 1588指定了专用协议,即精确时间协议(PTP),用于在网络测量和控制系统中进行时钟同步。它在基于数据包的网络同步机制中起着重要作用。但是,常规IEEE 1588同步算法的性能受到非对称链路和随机延迟问题的影响。本文提出了一种改进的基于IEEE 1588的同步方案,该方案通过利用具有不同大小的其他数据包来克服这些问题,而无需增加硬件或开销。基于提出的方案,本文推导了时钟偏移的最大似然估计器(MLE),并分析了高斯和指数随机延迟模型的相应Cramer-Rao下界(CRLB)。在具有不同随机延迟分布的两种情况下,对所提出的估计器的性能进行了评估。通过仿真研究了传输数据包大小的影响。结果表明,所提出的方案和估计器可以成功克服非对称链路和随机延迟问题的不利影响。在时钟偏移偏置误差方面,所提出的方案的同步精度大大优于常规的IEEE 1588方案和现有的方法,而无需额外的硬件。

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