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Adaptive Mho relay for synchronous generator loss-of-excitation protection: a capability curve limit-based approach

机译:用于同步发电机失磁保护的自适应Mho继电器:基于能力曲线极限的方法

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摘要

Loss-of-excitation (LOE) relays work under pre-defined operating characteristics. If an abnormal condition should arise, such operating characteristics might not be suitable for current system conditions. In this study, an adaptive real-time data-based analytical methodology is proposed for improving LOE protection performance. The core idea is to generate in real time an adaptive operating characteristic for the Mho relay, based on the well know Berdy's method. The adaptive Mho operating characteristic is derived through the proposed methodology using the generator capability curve. Validation is obtained through comparative simulation test cases using DigSilent Power Factory® program. Test case results show that the proposed protection adaptive analytical methodology displays secure and effective high speed LOE detection, indicating potential for real-life applications.
机译:励磁损失(LOE)继电器在预定义的工作特性下工作。如果出现异常情况,则此类运行特性可能不适用于当前的系统条件。在这项研究中,提出了一种基于自适应实时数据的分析方法,以提高LOE保护性能。核心思想是基于众所周知的伯迪方法实时生成Mho继电器的自适应运行特性。自适应Mho运行特性是通过使用发电机能力曲线的拟议方法得出的。使用DigSilent PowerFactory®程序通过比较模拟测试用例获得验证。测试案例结果表明,所提出的保护自适应分析方法可显示安全有效的高速LOE检测,表明其在现实生活中的应用潜力。

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