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Excitation system protective limiters and their effect on volt/VAr control-design, computer modeling, and field testing

机译:励磁系统保护限幅器及其对伏特/伏尔比控制的设计,计算机建模和现场测试

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The action of excitation system protective limiters and VAr regulation are often not taken into account in planning studies, and actual units may be quite different than simulations. This may lead to incorrect predictions of actual stability limitations, or even voltage collapse phenomena. The design of the excitation system protective limiters such as over excitation limiters (OEL), under excitation limiters (UEL) and volts/hertz (V/Hz) is explained, and models presented. For system events where these controls and limiters may become active, modeling in transient stability studies is important to correctly predict volt/VAr performance. Specific models applicable to the GE EX2000 digital-based control systems are shown for reference, although the general concepts discussed here are applicable to any other excitation equipment. An important aspect of the new digital-based excitation controls is that they allow for more intelligent limiter functions and protective features not convenient with older equipment. Test procedures and results are shown to illustrate the limiter performance.
机译:在计划研究中通常不会考虑励磁系统保护性限制器的作用和VAr调节,实际单位可能与模拟完全不同。这可能导致对实际稳定性限制的错误预测,甚至导致电压崩溃现象。解释了励磁系统保护性限制器的设计,例如过励磁限制器(OEL),欠励磁限制器(UEL)和伏/赫兹(V / Hz),并介绍了模型。对于这些控件和限制器可能会起作用的系统事件,瞬态稳定性研究中的建模对于正确预测伏特/伏安性能至关重要。尽管此处讨论的一般概念适用于任何其他励磁设备,但适用于GE EX2000数字控制系统的特定模型仅供参考。新的基于数字的励磁控制系统的一个重要方面是,它们允许使用更智能的限幅器功能和保护功能,而这些功能在旧设备上不方便。显示了测试程序和结果以说明限制器的性能。

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