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Application of MPLS-TP for transporting power system protection data

机译:MPLS-TP在电力系统保护数据传输中的应用

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摘要

Power utilities are increasingly dependent on the use of communications networks. These networks are evolving to be packet-based, rather than using conventional Time-Division Multiplexing (TDM) technologies. Transporting current differential protection traffic over a packet network is especially challenging, due to the safety-critical nature of protection, the strict requirements for low delay and low asymmetrical delay, and the extensive use of legacy TDM-based protocols. This paper highlights the key technical characteristics of Multi-Protocol Label Switching-Transport Profile (MPLS-TP), and demonstrates its application for transporting current differential protection traffic. A real-time hardware-in-the-loop testing approach has been used to thoroughly validate the technologies in various configurations. It is demonstrated that MPLS-TP technologies can meet the requirements of current differential protection and other, less critical applications. In particular, it is shown that delay and asymmetrical delay can be controlled through the inherent use of bi-directional paths---even when “hitless” link redundancy is configured. The importance of appropriate traffic engineering, clocking schemes, circuit emulation methods is also demonstrated.
机译:电力公用事业越来越依赖于通信网络的使用。这些网络正在发展为基于分组的,而不是使用传统的时分复用(TDM)技术。由于保护的安全性,对低延迟和低非对称延迟的严格要求以及对基于TDM的传统协议的广泛使用,在分组网络上传输当前的差动保护流量尤其具有挑战性。本文重点介绍了多协议标签交换-传输配置文件(MPLS-TP)的关键技术特性,并演示了其在传输当前差动保护流量中的应用。实时硬件在环测试方法已用于彻底验证各种配置中的技术。事实证明,MPLS-TP技术可以满足当前差动保护和其他不太重要的应用的要求。特别是,显示出可以通过固有使用双向路径来控制延迟和不对称延迟,即使配置了“无中断”链路冗余也是如此。还说明了适当的流量工程,时钟方案,电路仿真方法的重要性。

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