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Enhanced algorithms for clock selection in a packet based synchronization method

机译:基于分组的同步方法中用于时钟选择的增强算法

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Clock selection algorithms plays an important role in selecting the best clock sources from the available pool of candidate clock sources based on many factors. Improper selection of the clock source in the network can have a detrimental impact in the network which could affect services that enables various applications in today’s next generation networks. Though the selection algorithms available as per various standard recommendations, it is important to fine tune and design a prominent method that could be adopted in packet based synchronization method. This paper addresses a new proposal for clock selection algorithms for packet based synchronization method by which the algorithm select the best clock from the candidate clocks to establish most reliable and efficient synchronization mechanism for the real-time deployments that comprises of either SyncE or 1588v2 with physical layer frequency assist as the synchronization transport. This method comprises of selecting a best clock based on the actual clock whose frequency expressed in parts per billion (ppb) seen by the Digital Phase Locked Loop (DPLL) at its inputs instead of selecting the clock based on the traditional clock selection algorithms. This method has a potential benefit of establishing a good frequency clock path throughout the network so that more efficient and reliable clock delivery is achieved within or external to the network. This paper therefore takes care of the potential delivery of bad frequency clock on legacy clock selection algorithm. Analysis and measurement results shows that the proposed method eliminate all the existing issues by conforming all the standard recommendations.
机译:时钟选择算法在基于多种因素从可用的候选时钟源池中选择最佳时钟源方面发挥着重要作用。网络中时钟源选择不当会对网络产生不利影响,这可能会影响可支持当今下一代网络中各种应用的服务。尽管可以根据各种标准建议使用选择算法,但是微调和设计一种可以在基于分组的同步方法中采用的出色方法非常重要。本文提出了一种基于分组的同步方法的时钟选择算法的新建议,该算法可从候选时钟中选择最佳时钟,从而为由SyncE或1588v2组成的实时部署建立最可靠和有效的同步机制。层频率辅助作为同步传输。该方法包括根据实际时钟选择最佳时钟,而不是根据传统时钟选择算法来选择时钟,而实际时钟的频率以数字锁相环(DPLL)在其输入处表示的十亿分之一(ppb)表示。该方法具有在整个网络中建立良好的频率时钟路径的潜在好处,从而可以在网络内部或外部实现更高效和可靠的时钟传递。因此,本文在传统时钟选择算法上考虑了不良频率时钟的潜在传递。分析和测量结果表明,该方法通过符合所有标准建议,消除了所有现有问题。

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