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Optimizing the boundary of a backup protection in a digital substation using graph theory

机译:基于图论的数字化变电站后备保护边界优化

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With the rapid development of smart grid, digital substation plays an important role to ensure reliability and security of power grid operation. The application of IEC61850 provides the communications standard for total information sharing within a substation. Based on this foundation, this paper analyzes the information from the entire substation's primary and secondary equipment and represents the topological structure of digital substation backup protection by means of graph theory. In this way, a graph showing their interconnections with a set of relationship matrices can be produced. Analyzing the relationship matrices can dynamically change the substation differential backup protection's boundary in various scenarios including CB opening/closing and CB information loss. The application of graph theory ensures the adaptability and correct operation of substation backup protection. It can also optimize the boundary of the backup protection by reducing the action of breakers.
机译:随着智能电网的飞速发展,数字变电站在确保电网运行的可靠性和安全性方面发挥着重要作用。 IEC61850的应用为变电站内的全部信息共享提供了通信标准。在此基础上,本文分析了整个变电站一级和二级设备的信息,并通过图论的方式来表示数字化变电站后备保护的拓扑结构。以这种方式,可以产生示出它们与一组关系矩阵的互连的图。分析关系矩阵可以在各种情况下动态更改变电站差动备用保护的边界,包括断路器开/关和断路器信息丢失。图论的应用保证了变电站后备保护的适应性和正确运行。它还可以通过减少断路器的动作来优化备用保护的边界。

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