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首页> 外文期刊>International journal of electrical power and energy systems >Renewable and energy storage resources for enhancing transient stability margins: A PDE-based nonlinear control strategy
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Renewable and energy storage resources for enhancing transient stability margins: A PDE-based nonlinear control strategy

机译:可再生和储能资源,用于提高瞬态稳定性边缘:基于PDE的非线性控制策略

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In this paper, we present a robust Partial Differential Equation-based (PDE) control strategy, which can optimally control both distributed energy storage systems and photovoltaic power plants to enhance the stability margins of synchronous generators. The amount of power that is injected or absorbed from each local power source is determined by a coordination layer, which is implemented by solving a constrained optimization problem that minimizes the cost of the controller action by Lagrangian relaxation. The presented nonlinear controller is robust to unknown time-varying delay and uncertainties on measurements. A time delay compensation technique is developed to inject delay-free control signal into the closed-loop system. Lyapunov-based stability analysis shows that all tracking error signals are globally uniformly ultimately bounded. The proposed method is implemented on IEEE 39-Bus Test System to demonstrate the success of proposed control framework in restoring system stability after being subjected to a large disturbance.
机译:在本文中,我们介绍了一种坚固的部分微分方式(PDE)控制策略,其可以最佳地控制分布式能量存储系统和光伏发电厂,以增强同步发电机的稳定性边缘。从每个局部电源注入或吸收的功率量由协调层确定,该协调层通过求解受约束的优化问题来实现,这使拉格朗日松弛能够最小化控制器动作的成本。所提出的非线性控制器对于未知的时变延迟和测量的不确定性是强大的。开发了一种时间延迟补偿技术以将延迟控制信号注入闭环系统。基于Lyapunov的稳定性分析表明,所有跟踪误差信号都是全球均匀的最终界限。所提出的方法在IEEE 39总线测试系统上实施,以展示在经受大扰动之后恢复系统稳定性的提出控制框架的成功。

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