IEEE 1588广域监测保护与控制(WAMPAC)适用性评价

F. Fujikawa
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引用次数: 3

摘要

我们研究了应用IEEE1588 (PTP:精确时间协议)作为时间同步技术在电力系统电信网络中的适用性。对等方法和TC(透明时钟)/BC(边界时钟)方法适用于WAMPAC(广域监测、保护和控制)系统。这些方法都具有校正每个L2开关停留时间的功能。根据实验评估,当我们串联50个节点时,Peer-to-Peer方法的同步精度约为511 ns, TC/BC方法的同步精度约为805 ns。我们使用不带PTP功能的L2开关检查同步精度。这里,当我们串联50个节点时,同步精度估计在2580 ns左右。但是,需要一个能够处理许多从节点的高性能PTP主节点和一个具有处理延迟变化的复杂能力的PTP从节点。因此,点对点方法或TC/BC方法可用于电力系统的电信网络,就像使用现有的L2交换机一样。如果我们使用没有PTP功能的L2交换机,PTP主站需要高性能,PTP从站需要高延迟变化容忍度。
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Evaluation of applicability to WAMPAC (Wide Area Monitoring Protection and Control) of IEEE 1588
We examined the applicability to telecommunication networks for electric power systems applying IEEE1588 (PTP: Precision Time Protocol) as a time synchronization technology. A Peer-to-Peer method and a TC (Transparent Clock) /BC (Boundary Clock) method are suitable for WAMPAC (Wide Area Monitoring, Protection and Control) systems. These methods are equipped with a feature to correct the residence time in each L2 switch. According to the experimental evaluation, when we connected 50 nodes in series, the synchronization precision was estimated at about 511 ns in the Peer-to-Peer method and about 805 ns in the TC/BC method. We examined the synchronization precision using L2 switches without the PTP function. Here, when we connected 50 nodes in series, the synchronization precision was estimated at about 2580 ns. However, a high performance PTP master capable processing many slaves and a PTP slave with a sophisticated ability to process delay variation are required. Consequently, the Peer-to-Peer method or the TC/BC method is available for telecommunication networks for electric power systems, as is the use of the existing L2 switch. If we use L2 switches without the PTP function, the PTP master requires high performance and a high delay variation tolerance is required of a PTP slave.
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