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MPPT control of variable speed wind generators with squirrel cage induction machines

机译:鼠笼感应电机变速风力发电机的MPPT控制

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In order to realize maximum power point tracking (MPPT) control of wind energy generation system, it is necessary to regulate the wind turbine speed at an optimal tip-speed ratio (TSR). For obtaining the optimal tip-speed ratio, modern wind turbine controller usually uses wind speed information as a vital signal to implement the feedback of the controller. However, the rotor effective wind speed (EWS) cannot be measured by the anemometer installed at the front of the turbine. In this paper, we present two methods to estimate the rotor effective wind speed from the turbine torque and the turbine speed. Then, we utilize the estimated wind speed and the optimal tip-speed ratio to compute the generator reference speed. In the entire wind energy system, a back-to-back arrangement with two voltage source converters (VSC) has been considered: one on the machine side controlled by field oriented controller (FOC) and the other on the grid side controlled by voltage oriented controller (VOC). Finally, the comparisons of two estimation integrated with the wind energy system have been emulated to demonstrate good performance.
机译:为了实现风力发电系统的最大功率点跟踪(MPPT)控制,有必要以最佳的叶尖速比(TSR)调节风力涡轮机的速度。为了获得最佳的叶尖速比,现代风力涡轮机控制器通常使用风速信息作为重要信号来实现控制器的反馈。但是,转子有效风速(EWS)无法通过安装在涡轮机前部的风速计进行测量。在本文中,我们提出了两种从涡轮转矩和涡轮速度估算转子有效风速的方法。然后,我们利用估计的风速和最佳叶尖速比来计算发电机参考速度。在整个风能系统中,已经考虑了具有两个电压源转换器(VSC)的背靠背装置:一个在机器侧由磁场定向控制器(FOC)控制,另一个在电网侧由电压定向控制控制器(VOC)。最后,通过仿真比较了两个与风能系统集成的估计值,以显示出良好的性能。

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