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Stability analysis and controller design of a wide-area time-delay system based on the expectation model method

机译:基于期望模型方法的广域时滞系统稳定性分析与控制器设计

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Summary form only given. Stochastic time delay is a new challenge for communication networks in wide-area damping control systems. Uncertainties introduced by stochastic time delays increase the difficulty of modeling, analyzing the stability and designing the controller. In this paper, a new approach for stability analysis and controller design through expectation modelling is proposed to solve for the uncertainty in wide-area controlled power systems introduced by the effect of a stochastic time delay. In the proposed method, the expectation model that considers the detailed stochastic time delay distribution is derived to accurately model the effect of a communication network on the wide-area control performance. Through a matrix transformation of the expectation model, the eigenvalue of the wide-area damping control system that considers time delay can then be calculated; this eigenvalue can be used for analyzing the system stability. A novel expectation model based controller design procedure is established, through which traditional methods can be applied in the controller design of a power system with a stochastic time delay. Finally, the effectiveness of the stability analysis and controller design methods are validated through simulations in a power system of 4 generators and 2 areas with an HVDC link and a power system with 8 generators and 36 buses.
机译:仅提供摘要表格。随机时间延迟是广域阻尼控制系统中通信网络面临的新挑战。随机时延带来的不确定性增加了建模,分析稳定性和设计控制器的难度。本文提出了一种通过期望模型进行稳定性分析和控制器设计的新方法,以解决由于随机时延的影响而引入的广域控制电力系统的不确定性。在所提出的方法中,导出了考虑详细的随机时延分布的期望模型,以准确地建模通信网络对广域控制性能的影响。通过期望模型的矩阵变换,可以计算出考虑了时延的广域阻尼控制系统的特征值。该特征值可用于分析系统稳定性。建立了一种新颖的基于期望模型的控制器设计程序,通过该方法可以将传统方法应用于具有随机时间延迟的电力系统的控制器设计中。最后,通过在具有HVDC链接的4台发电机和2个区域的电力系统以及8台发电机和36台母线的电力系统中的仿真,验证了稳定性分析和控制器设计方法的有效性。

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