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首页> 外文期刊>International review of electrical engineering >A Kalman Latency Compensation Strategy for Model Predictive Control to Damp Inter-Area Oscillations in Delayed Power Systems
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A Kalman Latency Compensation Strategy for Model Predictive Control to Damp Inter-Area Oscillations in Delayed Power Systems

机译:时滞电力系统阻尼区域间振荡的模型预测控制的卡尔曼延迟补偿策略

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Power systems control strategies that use global signals have shown better results than those based on local signals, but the remote signals are usually taken far away from the control center. Because of that, wide area power systems controlled using global signals are inherently delayed, and time delays jeopardize the stability of power systems. This paper presents a Kalman based time delay compensation strategy, which feed a Model Predictive Control (MPC) scheme to damp inter-area oscillations in power systems with latencies in their communications. A Kalman state estimator is employed to get the states. The proposal uses a dynamic reduced order model obtained using Hankel singular values. The methodology is promissory because it considers time delays in control schemes design processes, useful for either centralized or distributed wide area power system controllers based on widespread metering. This approach was validated for controlling inter-area oscillations in a test power system with two areas, 4 generators and a tie power line. Results suggest an enhancement of the power system dynamic performance upon the application of the method proposed.
机译:使用全局信号的​​电力系统控制策略显示出比基于本地信号的策略更好的结果,但远程信号通常远离控制中心。因此,使用全局信号控制的广域电力系统固有地被延迟,并且时间延迟危及电力系统的稳定性。本文提出了一种基于卡尔曼的时延补偿策略,该策略提供了一种模型预测控制(MPC)方案,以抑制具有通信延迟的电力系统中的区域间振荡。使用卡尔曼状态估计器来获得状态。该提案使用使用汉克尔奇异值获得的动态降阶模型。该方法是偶然的,因为它考虑了控制方案设计过程中的时间延迟,这对于基于广泛计量的集中式或分布式广域电力系统控制器很有用。经过验证,此方法可用于控制具有两个区域(4个发电机和一条并列电源线)的测试电源系统中的区域间振荡。结果表明,所提出方法的应用提高了电力系统的动态性能。

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