Multivariable control strategy for autonomous operation of a converter-based distributed generation system

Afsoon Nejati, A. Nobakhti, H. Karimi
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引用次数: 3

Abstract

This paper presents a control strategy for the autonomous (islanded) operation of a distributed generation (DG) unit. The DG unit supplies a balanced load through a voitage-sourced converter (VSC). To maintain the autonomous operation in the islanded mode, the DG unit should provide its dedicated load with a sinusoidal voltage with a constant magnitude and a constant frequency. The dynamic model of the islanded DG system is represented by a set of nonlinear equations. Since the objective is to regulate voltage and frequency of the islanded DG about their rated values, the nonlinear model is linearized about the operating point. The obtained linearized model represents a multivariable LTI system with the converter voltages as the inputs, and the load voltage magnitude and frequency as the outputs. Based on the Nyquist array method, a controller is designed to achieve the objectives for the islanded system. To verify the effectiveness of the proposed control strategy, a set of nonlinear simulation case studies are carried out in the MATLAB/SimPowerSystems toolbox. In particular, the performance of the proposed controller with respect to the reference signal tracking and the load resistance perturbations is verified. The simulation results show that the proposed control strategy offers a good robust tracking/performance properties.
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基于变流器的分布式发电系统自主运行多变量控制策略
提出了一种分布式发电机组自主(孤岛)运行的控制策略。DG单元通过电压源转换器(VSC)提供平衡负载。为了保持孤岛模式下的自主运行,DG机组应向其专用负载提供恒幅恒频的正弦电压。孤岛DG系统的动力学模型由一组非线性方程表示。由于目标是将孤岛DG的电压和频率调节到额定值左右,因此非线性模型对工作点进行了线性化。所得到的线性化模型表示一个以变换器电压为输入,负载电压幅值和频率为输出的多变量LTI系统。基于奈奎斯特阵列方法,设计了一种控制器来实现孤岛系统的目标。为了验证所提出的控制策略的有效性,在MATLAB/SimPowerSystems工具箱中进行了一组非线性仿真案例研究。特别地,验证了所提控制器在参考信号跟踪和负载电阻摄动方面的性能。仿真结果表明,该控制策略具有良好的鲁棒跟踪性能。
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