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A ROBUST PSS AUTOMATED DESIGN BASED ON ADVANCED H_2 AND Hoo FREQUENCY CONTROL TECHNIQUES TO IMPROVE POWER SYSTEM STABILITY

机译:基于高级H_2和Hoo频率控制技术的鲁棒PSS自动化设计,可提高电力系统的稳定性

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This paper proposes the automated design of power system stabilizer (PSS) based on robust loop-shaping H_∞ controller (HinfPSS). The control objective is to enhance the stability and to improve the dynamic response of a single-machine power system operating in different conditions. Simulation results show that this control strategy is very robust, flexible and alternative performance. The nonlinear model of the power system is constructed with the differential equations. In other part, the Linear Quadratic - Gaussian (LQG) control scheme (has the same structure as the traditional Russian A VR-PSS [4]), consists of an optimal state-feedback gain and a KALMAN state estimator, and equivalently in this paper on a robust H_2 controller 'H2PSS', who was applied as a test control system in this paper. A detailed sensitivity analysis for a one-machine-infinite-bus system reveals that the fuzzy sliding-mode power system stabilizer is quite robust to wide variations in operating load and system parameters. Stabilizers suggested in this work have the same structure as the traditional Russian PSS. The simulation results show that a highs performances and robustness using the first regulation technique method (HinfPSS) in comparison with using robust H2PSS, due to the initial physical (real) non-linear proprieties of power system.
机译:本文提出了基于鲁棒环路整形H_∞控制器(HinfPSS)的电力系统稳定器(PSS)的自动化设计。控制目标是增强稳定性并改善在不同条件下运行的单机电源系统的动态响应。仿真结果表明,该控制策略具有鲁棒性,灵活性和可替代性。用微分方程构造电力系统的非线性模型。在另一部分中,线性二次高斯(LQG)控制方案(与传统的俄罗斯A VR-PSS [4]具有相同的结构),由最佳状态反馈增益和KALMAN状态估计器组成,在这种情况下等效一篇关于健壮的H_2控制器“ H2PSS”的论文,该论文在本文中被用作测试控制系统。对单机无限母线系统进行的详细灵敏度分析表明,模糊滑模电力系统稳定器对于较大的运行负载和系统参数变化具有很强的鲁棒性。这项工作中建议的稳定剂的结构与传统的俄罗斯PSS相同。仿真结果表明,由于电力系统的初始物理(实际)非线性特性,与使用鲁棒H2PSS相比,使用第一调节技术方法(HinfPSS)具有更高的性能和鲁棒性。

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