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Experimental characterization of time synchronization over a heterogeneous network for Smart Grids

机译:智能电网异构网络上时间同步的实验表征

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Nowadays, the growing presence of distributed energy resources (DER) makes the management of the distribution grid more complex, thus requiring distributed monitoring and controlling capabilities. The deployment of locally distributed intelligent devices over a large area involves a high performance network infrastructure (typically based on heterogeneous communication technologies) in order to provide the most appropriate level of communication. In addition, monitoring and control applications need a common sense of time to coordinate the activities among distributed devices, but accurate time synchronization in a heterogeneous network is still a challenge. Network Time Protocol (NTP) can distribute time information with accuracy in the order of milliseconds on a Wide Area Network (WAN). In this work, an experimental characterization of NTP synchronization performance on a real network for Smart Grids has been done. The first analysis highlights the synchronization capabilities span from 1 ms to 20 ms depending on the technology adopted for the deployment of the network (e.g. fiber optics links, BPL links and Wi-Fi).
机译:如今,分布式能源(DER)的不断增长使配电网的管理变得更加复杂,因此需要分布式监视和控制功能。本地分布的智能设备在大面积上的部署涉及高性能的网络基础结构(通常基于异构通信技术),以提供最合适的通信级别。另外,监视和控制应用程序需要时间的常识来协调分布式设备之间的活动,但是异构网络中准确的时间同步仍然是一个挑战。网络时间协议(NTP)可以在毫秒范围内在广域网(WAN)上准确地分发时间信息。在这项工作中,已经完成了针对智能电网的真实网络上NTP同步性能的实验性表征。第一项分析重点介绍了同步能力,范围从1毫秒到20毫秒不等,具体取决于网络部署所采用的技术(例如,光纤链路,BPL链路和Wi-Fi)。

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