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Parallel Operation of DFIGs in Three-Phase Four-Wire Autonomous Wind Energy Conversion System

机译:三相四线自主风能转换系统中双馈双馈发电机的并联运行

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摘要

This paper deals with a control algorithm for two parallel-operated doubly fed induction generators (DFIGs) driven by wind turbines in a three-phase four-wire autonomous system feeding local loads. The proposed autonomous wind energy conversion system (AWECS) is using back-to-back-connected pulsewidth-modulated insulated-gate-bipolar-transistor-based voltage source converters with a battery energy storage system at their dc link. The system utilizes separate rotor-side converters for each DFIG for maximum power tracking (MPT) through its rotor speed control. However, a common dc bus and a battery bank and stator-side converter are used for voltage and frequency control at the stator terminals of the DFIGs. A delta–star transformer is connected between the stator-side converter and the stator terminals of DFIGs for optimizing the voltage of dc bus, and the load-side neutral is connected to the neutral of the star side of the transformer. The proposed electromechanical system is modeled and simulated in MATLAB using Simulink and Sim Power Systems set toolboxes. The performance of the proposed AWECS is presented to demonstrate its capability of MPT, stator voltage and frequency control, harmonic elimination, load balancing, and load leveling.
机译:本文研究了一种在三相四线自主系统中为局部负载供电的,由风力涡轮机驱动的两台并联双馈感应发电机(DFIG)的控制算法。拟议的自主风能转换系统(AWECS)使用基于背对背连接的脉宽调制的绝缘栅双极晶体管的电压源转换器,在其直流链路上具有电池储能系统。该系统为每个DFIG使用单独的转子侧转换器,以通过其转子速度控制实现最大功率跟踪(MPT)。但是,在DFIG的定子端子上,使用公共的dc总线以及电池组和定子侧转换器来进行电压和频率控制。三角星形变压器连接在定子侧转换器和DFIG的定子端子之间,以优化dc总线的电压,而负载侧中性线连接到变压器星形侧的中性线。使用Simulink和Sim Power Systems设置工具箱在MATLAB中对所提出的机电系统进行建模和仿真。提出的拟议AWECS的性能旨在证明其MPT,定子电压和频率控制,谐波消除,负载平衡和负载均衡的能力。

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