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Delay-dependent wide-area damping control for stability enhancement of HVDC/AC interconnected power systems

机译:依赖于延迟的广域阻尼控制,可增强HVDC / AC互连电力系统的稳定性

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摘要

In this paper, a delay-dependent wide-area damping control strategy associated with a high-voltage direct current (HVDC) supplementary controller is presented to enhance the overall stability of parallel HVDC/AC interconnected systems. First, the HVDC/AC interconnected systems are linearized into a nominal delay-dependent linear model using varying-delay characteristics. Next, the robust H_∞ design approach is used to solve the optimal state-feedback-type controller parameters. All of the controller design problems are formulated in the framework of linear matrix inequalities (LMIs), which is convenient for converting the controller design problem into a standard nonlinear optimization problem represented as an optimization objective with a set of LMIs constraints. An iterative algorithm is presented to solve the optimization problem. The effects of the varying-delay of the wide-area signal on the damping performance are considered during the controller design. Additionally, the state observer is used to convert the state-feedback control into an output-feedback control that is convenient for practical applications. Two case studies are conducted on the Kundur's 4-machine 2-area system and the New England/New York interconnected system to validate the presented control concept and the designed HVDC wide-area damping controller.
机译:在本文中,提出了一种与时滞相关的广域阻尼控制策略,该策略与高压直流(HVDC)辅助控制器相关,以增强并联HVDC / AC互连系统的整体稳定性。首先,使用变化的延迟特性将HVDC / AC互连系统线性化为标称延迟相关的线性模型。接下来,使用鲁棒的H_∞设计方法来求解最佳状态反馈型控制器参数。所有控制器设计问题都是在线性矩阵不等式(LMI)框架内制定的,这便于将控制器设计问题转换为标准非线性优化问题,该问题被表示为具有一组LMI约束的优化目标。提出了一种迭代算法来解决优化问题。在控制器设计期间,应考虑广域信号的变化延迟对阻尼性能的影响。此外,状态观察器用于将状态反馈控件转换为方便实际应用的输出反馈控件。在Kundur的4机2区域系统和新英格兰/纽约互连系统上进行了两个案例研究,以验证所提出的控制概念和设计的HVDC广域阻尼控制器。

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