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Phase angle comparison and differential rate of change methods used for differential protection of busbars and transformers

机译:用于汇流谱和变压器差动保护的相位角比较和差分速率

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Modern microprocessor based relays used for busbar and transformer protection, typically implement a low impedance percentage differential principle using dual slope characteristics. These relays may sometimes misoperate in response to the CT saturation during close-in external faults, and the subsidence current present after clearing external faults. A primary reason for such misoperations is the fact that the traditional percentage differential principle relies exclusively on current magnitudes rather than directionality for tripping decisions. This paper describes two novel principles that distinguish between external and internal faults so as to enhance the security of differential protection; directional phase angle comparison and rate-of-change of differential current. The paper also discusses mathematical models used for each principle and their interaction during operation as well as their interaction with the traditional dual slope method. In addition, the paper compares the performance of a protective device using the traditional dual slope method vs. one with the new principles. Test cases are presented to illustrate the effectiveness of the new principles in enhancing the security for external faults.
机译:基于现代的基于微处理器的继电器用于母线和变压器保护,通常使用双斜率特性实现低阻抗百分比差分原理。这些继电器有时可能在闭合外部故障期间响应于CT饱和度以及清除外部故障后的沉降电流。这种误操作的主要原因是传统百分比差分原理专门依赖于当前的大幅度而不是用于跳闸决策的方向性。本文介绍了一种区分外部和内部断层的两种新颖原则,以提高差动保护的安全性;定向相位角比较和差分电流的变化率。本文还讨论了在运行期间用于每个原理的数学模型及其与传统双斜率方法的相互作用。此外,本文比较了保护装置的性能,使用传统的双斜率方法与新原则。提出了测试案例以说明新原则在提高外部故障安全方面的有效性。

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