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Design of a robust modulation controller over a wide range of load characteristics for AC/DC systems

机译:针对交流/直流系统的广泛负载特性设计鲁棒的调制控制器

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A method is presented for designing a robust modulation controller to improve the dynamic performance of AC/DC systems. Static load is modeled as a nonlinear function of load bus voltage and motor. Reactive power and DC power are considered for the modulation control. A static VAr compensator (SVC) is used for the reactive power modulation. The rotor speed and angle deviations of the synchronous generator are used as a stabilizing signal to the SVC. The controller gains are selected on the basis of the eigenvalue sensitivity of the electromechanical mode of the closed-loop system with respect to the load characteristics. Eigenvalue analysis and simulation results show that the proposed reactive power modulation control improves the system response over a wide range of voltage-dependent load characteristics as compared with the control using only rotor speed deviation. However, DC power modulation based on rotor speed deviation provides effective damping for static as well as dynamic load models.
机译:提出了一种用于设计鲁棒的调制控制器以改善AC / DC系统的动态性能的方法。静态负载建模为负载母线电压和电机的非线性函数。无功功率和直流功率被考虑用于调制控制。静态VAr补偿器(SVC)用于无功功率调制。同步发电机的转子速度和角度偏差用作SVC的稳定信号。基于闭环系统的机电模式相对于负载特性的特征值灵敏度来选择控制器增益。特征值分析和仿真结果表明,与仅使用转子速度偏差的控制相比,所提出的无功功率调制控制在很大的电压相关负载特性范围内改善了系统响应。但是,基于转子速度偏差的直流功率调制可为静态和动态负载模型提供有效的阻尼。

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