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Modeling and control design of a stand alone wind energy conversion system based on functional model predictive control

机译:基于功能模型预测控制的独立风能转换系统建模与控制设计

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This paper investigates the application of the model predictive control (MPC) approach to control the voltage and frequency of a stand alone wind generation system. This scheme consists of a wind turbine which drives an induction generator feeding an isolated load. A static VAR compensator is connected at the induction generator terminals to regulate the load voltage. The rotor speed, and thereby the load frequency are controlled via adjusting the mechanical power input using the blade pitch-angle. The MPC is used to calculate the optimal control actions including system constraints. To alleviate computational effort and to reduce numerical problems, particularly in large prediction horizon, an exponentially weighted functional model predictive control (FMPC) is employed. Digital simulations have been carried out in order to validate the effectiveness of the proposed scheme. The proposed controller has been tested through step changes in the wind speed and the load impedance. Simulation results show that adequate performance of the proposed wind energy scheme has been achieved. Moreover, this scheme is robust against the parameters variation and eliminates the influence of modeling and measurement errors.
机译:本文研究了模型预测控制(MPC)方法在控制独立风力发电系统的电压和频率中的应用。该方案由一台风轮机组成,该风轮机驱动感应发电机向隔离负载供电。静态VAR补偿器连接在感应发电机端子上,以调节负载电压。通过使用叶片桨距角调节机械功率输入来控制转子速度,从而控制负载频率。 MPC用于计算包括系统约束在内的最佳控制动作。为了减轻计算量并减少数值问题,尤其是在较大的预测范围内,采用了指数加权功能模型预测控制(FMPC)。为了验证所提出方案的有效性,已经进行了数字仿真。所提出的控制器已经通过风速和负载阻抗的阶跃变化进行了测试。仿真结果表明,所提出的风能方案具有足够的性能。而且,该方案对参数变化具有鲁棒性,并且消除了建模和测量误差的影响。

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