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PMSG based wind energy generation system: Energy maximization and its control

机译:基于PMSG的风能发电系统:能量最大化及其控制

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This paper deals with the energy maximization and control analysis for the permanent magnet synchronous generator (PMSG) based wind energy generation system (WEGS). The system consists of a wind turbine, a three-phase IGBT based rectifier on the generator side and a three-phase IGBT based inverter on the grid side converter system. The pitch angle control by perturbation and observation (P&O) algorithm for obtaining maximum power point tracking (MPPT). MPPT is most effective under, cold weather, cloudy or hazy days. A designed control technique is proposed for the MPPT mechanism of the system. This paper will explore in detail about the control analysis for both the generator and grid side converter system. Further, it will also discuss about the pitch angle control for the wind turbine in order to obtain maximum power for the complete wind energy generation system. The proposed WEGS for maximization of power is modelled, designed and simulated using MATLAB R2014b Simulink with its power system toolbox and discrete step solver incorporated in the simulation tool.
机译:本文针对基于永磁同步发电机(PMSG)的风能发电系统(WEGS)进行了能量最大化和控制分析。该系统由一个风力涡轮机,一个在发电机侧的基于三相IGBT的整流器和一个在电网侧的变流器系统中基于三相IGBT的逆变器组成。通过摄动和观测(P&O)算法控制俯仰角,以获得最大功率点跟踪(MPPT)。 MPPT在寒冷的天气,阴天或朦胧的天气下最有效。针对系统的MPPT机制,提出了一种设计的控制技术。本文将详细探讨发电机和电网侧变流器系统的控制分析。此外,还将讨论关于风力涡轮机的俯仰角控制,以便获得整个风力发电系统的最大功率。使用MATLAB R2014b Simulink及其电源系统工具箱和包含在仿真工具中的离散步长求解器,可以对拟议的WEGS进行最大程度的功率建模,设计和仿真。

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