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Wide-Area Damping Control using Reduced Copy under Intermittent Observation: A Novel Performance Measure

机译:在间歇观察下使用减少复制的广域阻尼控制:一种新颖的性能指标

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Insight into the application of observer-driven reduced copy (ORC) to deal with data packet dropout during wide-area oscillation damping control through wind farms (WFs) is developed. The ORC technique tries to emulate the behavior of the power system by using the information of the nominal dynamics under intermittent observation. This brief presents a direct performance measure for ORC. To that end, a standard lemma relating the bound on the norm of the integral over the product of two functions is presented, which is proven using Hölder’s inequality. Based on the lemma, an expression is derived for the bound on the norm within an inter-sample interval for difference between the power system states in presence of data dropout and that under ideal communication. Such a bound, when evaluated in a relative sense, would be useful for system operators to perform online contingency screening and ranking from damping performance standpoint without running prohibitively expensive time-domain simulations. In addition, such a bound is also derived for the conventional feedback control (CFC). The data dropout is modeled using the Gilbert-Elliott model. The analytical results are validated using time-domain simulation of a 16-machine, 5-area New England-New York system with two doubly fed induction generator-based WFs.
机译:开发了对观察者驱动的简化副本(ORC)在通过风电场(WF)进行广域振荡阻尼控制期间处理数据包丢失的应用的见解。 ORC技术试图通过使用间歇观察下的标称动力学信息来模拟电力系统的行为。本简介介绍了ORC的直接性能指标。为此,提出了一个关于两个函数的乘积上的积分范数界限的标准引理,这已通过Hölder不等式得到证明。基于引理,导出样本间间隔内范数边界的表达式,以了解存在数据丢失和理想通信情况下电力系统状态之间的差异。当从相对的角度进行评估时,这样的界限对于系统操作员从阻尼性能的角度执行在线意外事件筛选和排名,而不需要运行昂贵的时域模拟,将很有用。此外,对于传统的反馈控制(CFC)也得出了这样的界限。数据丢失是使用Gilbert-Elliott模型建模的。使用带有两个双馈感应发电机的WF的16机,5区新英格兰-纽约系统的时域仿真,验证了分析结果。

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