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Direct Active and Reactive Power Regulation of DFIG Using Sliding-Mode Control Approach

机译:使用滑模控制方法直接对DFIG进行有功和无功功率调节

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摘要

This paper presents a new direct active and reactive power control (DPC) of grid-connected doubly fed induction generator (DFIG)-based wind turbine systems. The proposed DPC strategy employs a nonlinear sliding-mode control scheme to directly calculate the required rotor control voltage so as to eliminate the instantaneous errors of active and reactive powers without involving any synchronous coordinate transformations. Thus, no extra current control loops are required, thereby simplifying the system design and enhancing the transient performance. Constant converter switching frequency is achieved by using space vector modulation, which eases the designs of the power converter and the ac harmonic filter. Simulation results on a 2-MW grid-connected DFIG system are provided and compared with those of classic voltage-oriented vector control (VC) and conventional lookup table (LUT) DPC. The proposed DPC provides enhanced transient performance similar to the LUT DPC and keeps the steady-state harmonic spectra at the same level as the VC strategy.
机译:本文提出了一种新的基于并网双馈感应发电机(DFIG)的风力涡轮机系统的直接有功和无功功率控制(DPC)。提出的DPC策略采用非线性滑模控制方案直接计算所需的转子控制电压,从而消除有功功率和无功功率的瞬时误差,而无需进行任何同步坐标变换。因此,不需要额外的电流控制环路,从而简化了系统设计并增强了瞬态性能。通过使用空间矢量调制可以实现恒定的转换器开关频率,从而简化了功率转换器和交流谐波滤波器的设计。提供了在2兆瓦并网DFIG系统上的仿真结果,并与经典的面向电压矢量控制(VC)和常规查找表(LUT)DPC的仿真结果进行了比较。拟议中的DPC提供了类似于LUT DPC的增强的瞬态性能,并将稳态谐波频谱保持在与VC策略相同的水平上。

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