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A Conductance-Susceptance Approach for Underexcitation Protection and Control Studies of Hydrogenerators

机译:水轮发电机励磁保护与控制研究的电导-电纳方法

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Synchronous generators protection and its controls are crucial for the reliability and stability of power systems. Their operation is interrelated, which means that they must be coordinated. In other words, their settings must be configured to be matching to avoid failure. With the objective of contributing to a straightforward analysis of the coordination between the ANSI 40 protection and the underexcitation limiter, this work presents the G-B plane as an alternative to the R-X plane This is a different way of dealing with the issue in question, since in the literature this analysis is usually made in the impedance (R-X) and the power (P-Q) planes. Noteworthy, the use of the P-Q plane is not accurate enough.. The generation system studied has its protection functions and controls modelled in a real-time digital simulator, with emphasis in the ANSI 40 protection and the underexcitation control. A physical relay takes part in the hardware-in-the-loop tests performed. The oscillography of the related machine control variables are graphically presented and discussed for each case analyzed. Bearing in mind this study and some complimentary literature, future research should focus on the enhancement of the above mentioned coordination.
机译:同步发电机保护及其控制对于电力系统的可靠性和稳定性至关重要。它们的操作是相互关联的,这意味着必须对其进行协调。换句话说,必须将它们的设置配置为匹配以避免失败。为了有助于直接分析ANSI 40保护和欠励磁限制器之间的协调性,这项工作提出了GB平面作为RX平面的替代方法。这是解决问题的一种不同方法,因为在文献中,这种分析通常是在阻抗(RX)和功率(PQ)平面上进行的。值得注意的是,使用P-Q平面不够精确。.研究的发电系统具有实时数字仿真器建模的保护功能和控制,着重于ANSI 40保护和欠励磁控制。物理继电器参与执行的硬件在环测试。针对每种情况,以图形方式显示和讨论了相关机器控制变量的示波器。考虑到这项研究和一些补充性文献,未来的研究应集中在加强上述协调方面。

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