Improved Predictive Model Controller for Voltage Regulation in Standalone Power Generation System

Halima Ikaouassen, A. Raddaoui, M. Rezkallah
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Abstract

This paper discusses an improved predictive model control strategy with a prediction horizon of one sampling time for three phase pulse width modulation (PWM) converter used for standalone power generation system in the presence of sudden load disturbances and sampling time variations. The proposed control law uses the system model to predict directly the behavior of the output voltage at each sampling prediction interval for all switching state. Next, a cost function is evaluated as a criterion to choose the switching state that will be applied in the next sampling prediction instant. To regulate constant and sinusoidal the AC voltage at the point common coupling (PCC), an LRC high harmonics filter is used in the output of the PWM converter for the power quality improvement. The performances of the proposed system and their control strategies are verified using MATLAB/Simulink.
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独立发电系统电压调节的改进预测模型控制器
针对单机发电系统中存在突然负载扰动和采样时间变化的三相PWM变换器,提出了一种改进的预测模型控制策略,预测范围为一个采样时间。所提出的控制律使用系统模型直接预测输出电压在所有开关状态的每个采样预测区间的行为。接下来,评估代价函数作为选择将在下一个采样预测瞬间应用的切换状态的标准。在PWM变换器的输出端采用LRC高次谐波滤波器,对点共耦合处的交流电压进行恒、正弦调节,以改善电能质量。利用MATLAB/Simulink对系统的性能和控制策略进行了验证。
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