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Development of Shunt-Type Three-Phase Active Power Filter with Novel Adaptive Control for Wind Generators

机译:分流式三相有源电力滤波器的开发与风力发生器新型自适应控制

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This paper proposes a new adaptive filter for wind generators that combines instantaneous reactive power compensation technology and current prediction controller, and therefore this system is characterized by low harmonic distortion, high power factor, and small DC-link voltage variations during load disturbances. The performance of the system was first simulated using MATLAB/Simulink, and the possibility of an adaptive digital low-pass filter eliminating current harmonics was confirmed in steady and transient states. Subsequently, a digital signal processor was used to implement an active power filter. The experimental results indicate, that for the rated operation of 2 kVA, the system has a total harmonic distortion of current less than 5.0% and a power factor of 1.0 on the utility side. Thus, the transient performance of the adaptive filter is superior to the traditional digital low-pass filter and is more economical because of its short computation time compared with other types of adaptive filters.
机译:本文提出了一种新的自适应滤波器,用于瞬时无功补偿技术和电流预测控制器的风力发生器,因此该系统的特征在于负载干扰期间的谐波失真,高功率因数和小的直流电压变化。首先使用MATLAB / Simulink模拟系统的性能,并且在稳定和瞬态状态下确认了自适应数字低通滤波器消除电流谐波的可能性。随后,使用数字信号处理器来实现有源电力滤波器。实验结果表明,对于2 kVA的额定操作,该系统的总谐波失真电流小于5.0%,电源侧的功率因数为1.0。因此,自适应滤波器的瞬态性能优于传统的数字低通滤波器,并且由于其与其他类型的自适应滤波器相比其短的计算时间更加经济。

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