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A Servo-Clock Model for Chains of Transparent Clocks Affected by Synchronization Period Jitter

机译:同步周期抖动影响透明时钟链的伺服时钟模型

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摘要

Industrial networks for distributed monitoring, control, and automation purposes require high-accuracy clock synchronization in topologies including long chains of cascaded nodes. Unfortunately, accuracy typically degrades as the number of devices and the distance from the synchronization reference node (i.e., the master or grandmaster) grows, because of the accumulation of multiple uncertainty contributions. To mitigate this problem, the so-called transparent clocks are used in some synchronization protocols, such as the precision transparent clock protocol used in PROFINET IO isochronous real time networks and the precision time protocol version 2, standardized as IEEE 1588–2008. In this paper, an optimal servo-clock in the mean square sense is proposed. The controller relies on both a Kalman filter that estimates the clock state difference with respect to the master and a static-state feedback assuring mean square stability even under the effect of significant fluctuations of the synchronization period. Several multiparametric simulation results in a case study based on the features of PROFINET IO devices confirm that excellent performance can be achieved with the proposed approach.
机译:用于分布式监视,控制和自动化目的的工业网络要求拓扑结构(包括级联节点的长链)中的高精度时钟同步。不幸的是,由于累积了多个不确定性贡献,所以精度通常随着设备数量的增加和与同步参考节点(即,主机或特级主机)的距离的增加而降低。为了缓解此问题,在某些同步协议中使用了所谓的透明时钟,例如PROFINET IO等时实时网络中使用的精确透明时钟协议以及标准为IEEE 1588-2008的精确时间协议版本2。本文提出了一种均方意义上的最优伺服时钟。控制器既依赖于卡尔曼滤波器(估计相对于主时钟的时钟状态差异),也依赖于即使在同步周期明显波动的影响下也能确保均方稳定性的静态反馈。在基于PROFINET IO设备功能的案例研究中的几个多参数仿真结果证实,所提出的方法可以实现出色的性能。

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