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A Novel Method for Providing Precise Time Synchronization in a Distributed Control System Using Boundary Clock

机译:在使用边界时钟的分布式控制系统中提供精确时间同步的新方法

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We propose and demonstrate a method to provide precise time synchronization in distributed control systems using a boundary clock scheme. The major drawback of the boundary clock scheme is the exponential accumulation of time synchronization error as the number of hops increases. To make the error accumulation linearly increase with the number of hops, we first separate the frequency compensation interval (FCI) and the offset and frequency compensation interval (OFCI) and then separately optimize each interval. To demonstrate the performance of this method, we implemented test benches using Ethernet-linked distributed control systems. We measured the peak-to-peak jitter performance along with the maximum time interval error to assess the short- and long-term stability after several hops in distributed control systems. Our method enables the peak-to-peak jitter to be maintained under 107 ns after seven hops. The experimental results show that the performance of time synchronization is dominated by fast jitter rather than frequency error and wander, and the proposed scheme can be used to improve the time synchronization performance in IEEE 1588-compliant control systems using boundary clock.
机译:我们提出并演示了一种使用边界时钟方案在分布式控制系统中提供精确时间同步的方法。边界时钟方案的主要缺点是,随着跳数的增加,时间同步误差的指数累积。为了使误差累积随跳数线性增加,我们首先将频率补偿间隔(FCI)与偏移和频率补偿间隔(OFCI)分开,然后分别对每个间隔进行优化。为了演示该方法的性能,我们使用以太网链接的分布式控制系统实现了测试台。我们测量了峰峰值抖动性能以及最大时间间隔误差,以评估分布式控制系统中几跳后的短期和长期稳定性。我们的方法可使七跳后的峰峰值抖动保持在107 ns以下。实验结果表明,时间同步的性能主要取决于快速抖动,而不是频率误差和漂移,并且该方案可用于改善使用边界时钟的IEEE 1588兼容控制系统中的时间同步性能。

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