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Fixed low-order synchronized and non-synchronized wide-area damping controllers for inter-area oscillation in power system

机译:用于电力系统区域间振荡的固定低阶同步和非同步广域阻尼控制器

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Low-frequency poorly damped oscillation is a major threat to bulk power transmission through a weak tie-line in the interconnected power system. A wide-area damping controller (WADC) can provide an adequate damping to these low-frequency modes to achieve secure operation of the large power system. In this work, a hybrid optimization algorithm based fixed low-order WADC is designed using wide-area feedback signal to improve the damping of poorly damped inter-area mode. Although wide-area signal can be used to improve the damping of the inter-area oscillations, the introduction of time delay in the wide-area signal can degrade the controller performance and even may lead to instability. Here, two types of delayed (synchronized and non-synchronized) feedback configurations are considered in case of wide-area signal transmission, and the controller is designed by optimizing the design functions such as H-infinity norm, spectral abscissa and complex stability radius. The designed controllers enhanced the damping performance of the inter-area oscillations. A higher order mixed sensitivity based H-infinity controller is also designed with additional pole placement constraints for comparison with the design functions. From the simulation studies of the Kundur's two-area system and IEEE-39 bus test system, it is demonstrated that the fixed low-order controllers are effective to improve the damping of the inter-area oscillations and compensating the time delay effect in the wide-area signal.
机译:低频弱阻尼振荡是通过互连电力系统中的薄弱连接线对大功率输电的主要威胁。广域阻尼控制器(WADC)可以为这些低频模式提供足够的阻尼,以实现大型电力系统的安全运行。在这项工作中,使用广域反馈信号设计了一种基于混合优化算法的固定低阶WADC,以改善弱阻尼区域间模式的阻尼。尽管可以使用广域信号来改善对区域间振荡的阻尼,但是在广域信号中引入时间延迟会降低控制器的性能,甚至可能导致不稳定。在广域信号传输的情况下,这里考虑了两种类型的延迟(同步和非同步)反馈配置,并且通过优化设计功能(例如H无限范数,频谱横坐标和复数稳定半径)来设计控制器。设计的控制器增强了区域间振荡的阻尼性能。还设计了基于高阶混合灵敏度的H-infinity控制器,并带有额外的极点约束,以与设计功能进行比较。通过对Kundur的两区域系统和IEEE-39总线测试系统的仿真研究,表明固定的低阶控制器可有效地改善区域间振荡的阻尼并补偿宽范围的时延效应。 -区域信号。

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