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A Reliable and Self-Aware Clock for reference time failure detection in internal synchronization environment

机译:用于内部同步环境中参考时间故障检测的可靠且具有自觉性的时钟

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A reliable source of time is a fundamental requirement for safety critical applications. For this class of applications, synchronization protocols like the IEEE1588 standard, can be adopted. This type of synchronization protocols was designed to achieve very precise clock synchronization, but they may not be sufficient to ensure safety of the whole system. For example an instability of the local oscillator of a reference node could influence the quality of synchronization of all nodes. In the recent years a new software clock, the Reliable and Self-Aware Clock (R&SAClock), which is designed to estimate the quality of synchronization through statistical analysis, was developed and tested. This paper describe and evaluate the design of a protocol for timing failure detection for internal synchronization based on a revised version of the R&SAClock software suitably modified to cross exploit the information on the quality of synchronization among all the nodes of the system.
机译:可靠的时间来源是安全关键型应用程序的基本要求。对于此类应用,可以采用同步协议,例如IEEE1588标准。这种类型的同步协议旨在实现非常精确的时钟同步,但是它们可能不足以确保整个系统的安全性。例如,参考节点的本地振荡器的不稳定性可能会影响所有节点的同步质量。近年来,开发并测试了一种新的软件时钟,即可靠和自知时钟(R&SAClock),该时钟旨在通过统计分析来估计同步质量。本文基于R&SAClock软件的修订版,描述并评估了用于内部同步定时故障检测的协议的设计,该版本经过适当修改,可以在系统所有节点之间交叉利用有关同步质量的信息。

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