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Model predictive control for an SAPF interfaced by a wind energy conversion system

机译:风能转换系统对SAPF的模型预测控制

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This paper treats the connection of a wind generation system to the grid through a shunt active power filter (SAPF) which used mostly to improve the power quality, compensate the reactive power and reduce the distortion appeared on the ?grid current waveforms produced by the connecting non-linear loads. Another task assigned to the SAPF is to inject the active power extracted from the wind system to the power grid and ensure a load power sharing. The SAPF is a three-phase two level inverter controlled by a predictive current control and is fed by a wind system through a DC-link capacitor; a PI regulator is synthesized to fixe the DC-bus voltage at a constant value and compensate the system losses. The wind system composed of a wind turbine coupled to a gearless permanent magnetic synchronous ?generator (PMSG) convert the mechanical energy available on the shaft to an electrical energy, because of the fluctuating and unpredictable nature of the wind and its speed variation; an uncontrolled three-phase diode rectifier connected to a DC/DC boost converter is used to control and fed the electric power extracted from the wind system to the DC-link, Matlab Simulink simulations show the effectiveness of the used control to improve the grid current waveforms, to compensate the reactive power and ensure a continuous injection of the wind power to the point of common coupling (PCC) ?to share the load power with the grid.
机译:本文通过并联有源电力滤波器(SAPF)处理风力发电系统与电网的连接,该滤波器主要用于改善电能质量,补偿无功功率并减少由连接产生的电网电流波形上出现的失真。非线性负载。分配给SAPF的另一项任务是将从风力系统提取的有功功率注入电网,并确保负载功率共享。 SAPF是三相两电平逆变器,由预测电流控制控制,由风力系统通过直流母线电容器馈电。合成了一个PI调节器,以将DC总线电压固定在一个恒定值,并补偿系统损耗。由风轮机和无齿轮永磁同步发电机(PMSG)组成的风力系统,由于风的波动性和不可预测性及其速度变化,将轴上可用的机械能转换为电能。连接到DC / DC升压转换器的不受控制的三相二极管整流器用于控制并将从风力系统提取的电力馈送至DC-link,Matlab Simulink仿真显示了所使用的控制方法对改善电网电流的有效性波形,以补偿无功功率并确保将风能连续注入到公共耦合点(PCC)–与电网共享负载功率。

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