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Advanced load blinding of distance protection relays based on physical grid limitations

机译:基于物理电网限制的距离保护继电器的高级负载盲区

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The encroachment of the measured load impedance into the outer tripping zone was one of the main problems of distance protection relays since their application. Highly loaded transmission lines intensified this issue and caused cascading failures worldwide during the last decades. Restricted zone reach settings or load blinders in the R-X-impedance plane were the common countermeasures until now. These measures were performed from the point of view of the relay. The objective of this paper was to propose an approach from the point of view of the grid and its physical loading limitations regarding bus voltage und line current. This approach helped to find out the load blinder with the best possible degree of dependability and security. A comprehensive analytical description of the physical loading and stability limits of the grid was used to identify the steady state operation limits in the impedance plane. Analytical calculation results demonstrated that the proposed approach is capable of achieving an optimized shape of load blinder increasing the dependability and security compared to blinders used in distance protection relays today.
机译:测量的负载阻抗进入外跳闸区的侵入是自应用以来距离保护继电器的主要问题之一。高负载传输线加强了此问题,并在过去几十年中导致全球级联故障。禁区达到设置或载荷在R-X阻抗平面中的载荷是常见的对策。这些措施是从继电器的角度进行的。本文的目的是从网格的角度提出一种方法及其关于总线电压欠电流的物理加载限制。这种方法有助于找出负载模板,具有最佳的可靠性和安全性。用于识别阻抗平面中的稳定状态加载和稳定性限制的综合分析描述。分析计算结果表明,所提出的方法能够实现当今距离保护继电器中使用的遮蔽的可靠性和安全性的优化形状。

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