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Optimal Power Control for a PMSG Small Wind Turbine in a Grid-Connected DC Microgrid

机译:并网直流微电网中PMSG小型风力发电机的最优功率控制

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This paper presents a Maximum Power Point Tracking (MPPT) algorithm to obtain optimal power operation of a small wind turbine (SWT) connected to a grid-connected DC Microgrid. The MPPT algorithm vary the duty cycle of a boost converter according to the change in the DC link power and in the DC link voltage to obtain maximum power output at all wind speeds. The proposed MPPT algorithm was tested using simulations with a SWT system modelled in Matlab/Simulink. The modelled system consisted of a Permanent Magnet Synchronous Generator (PMSG) driven by a SWT which was interfaced to the DC microgrid through a rectification stage and boost converter. The MPPT algorithm and the Boost converter are explained in detail. Simulation of the system operating under varying wind conditions is presented, showing the performance of the proposed MPPT algorithm.
机译:本文提出了一种最大功率点跟踪(MPPT)算法,以获得连接到并网DC Microgrid的小型风力涡轮机(SWT)的最佳功率运行。 MPPT算法根据直流母线功率和直流母线电压的变化来改变升压转换器的占空比,以获得在所有风速下的最大功率输出。使用在Matlab / Simulink中建模的SWT系统进行仿真,对提出的MPPT算法进行了测试。该模型系统由一个由SWT驱动的永磁同步发电机(PMSG)组成,该永磁同步发电机通过整流级和升压转换器与DC微电网连接。详细说明了MPPT算法和Boost转换器。给出了在变化的风力条件下运行的系统的仿真,显示了所提出的MPPT算法的性能。

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