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Sensorless Vector Control of Induction Generators for Variable-Speed Wind Turbines Using Micro-2407

机译:使用Micro-2407的变速风力涡轮机感应发电机的无传感器矢量控制

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A sensorless vector-control strategy for an induction generator in a grid-connected wind energy conversion system is presented. The sensorless control system is based on a model reference adaptive system (MRAS) to estimate the rotational speed. In order to tune the MRAS observer and compensate for the parameter variation and uncertainties, a separate estimation of the speed is obtained from the rotor slot harmonics using an algorithm for spectral analysis. This algorithm can track fast dynamic changes in the rotational speed, with high accuracy. Two back to back pulse width modulated (PWM) inverters are used to interface the induction generator with the grid. The front-end converter is also vector controlled. The dc link voltage is regulated using a PI fuzzy controller. The proposed sensorless control strategy has been experimentally verified on a 2.5-kW experimentally set up with an induction generator driven by a wind turbine emulator. The emulation of the wind turbine is performed using a novel strategy that allows the emulation of high-order wind turbine models, preserving all of the dynamic characteristics. The experimental results show the high level of performance obtained with the proposed sensorless vector-control method.
机译:提出了并网风能转换系统中感应发电机的无传感器矢量控制策略。无传感器控制系统基于模型参考自适应系统(MRAS)来估计转速。为了调整MRAS观测器并补偿参数变化和不确定性,使用频谱分析算法从转子槽谐波中获得了转速的单独估计值。该算法可以高精度地跟踪转速的快速动态变化。两个背对背脉宽调制(PWM)逆变器用于将感应发电机与电网连接。前端转换器也是矢量控制的。使用PI模糊控制器调节直流母线电压。拟议的无传感器控制策略已在2.5 kW实验设置下进行了实验验证,该设置由风力发电机仿真器驱动的感应发电机进行了实验设置。风力涡轮机的仿真使用一种新颖的策略执行,该策略允许仿真高阶风力涡轮机模型,并保留所有动态特性。实验结果表明,该无传感器矢量控制方法具有较高的性能。

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