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A Direct-Drive Wind Turbine Control for a Wind Power Plant with an Internal DC Distribution System

机译:具有内部直流配电系统的风力发电厂的直接驱动式风力发电机控制

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In this paper, a torque control algorithm of a Permanent Magnet Synchronous Generator (PMSG) for Direct Drive Wind Turbines (DDWTs) is proposed. In particular, a twelve-phase PMSG with four independent three-phase output subsystems has been considered with the aim of improving the DDWT torque management, energy efficiency, power generation and reliability; these goals are achieved by means of the decoupled control of each three-phase subsystem which the generator is split in. Hence, a novel coordinate transformation and the synthesis of the proposed master control algorithm are introduced: this last one allows the independent management of the reference currents of each subsystem and, thus, permits the development of an efficient variable speed wind turbine control. In addition, using the proposed DDWT, a novel topology of Continuous Medium Voltage Distribution system (CMVD)for a wind power plant is presented. In particular, the DC subsystems power outputs are connected by means the proposed CMVD to a centralized cascaded H-Bridge inverter structure, which is the only interface between the electric power transmission network and the wind power plant. The goodness of the proposed control algorithm is verified by means of a simulation study carried out in the Matlab Simulink environment, whose results are presented in the paper.
机译:本文提出了一种用于直驱风力发电机(DDWT)的永磁同步发电机(PMSG)的转矩控制算法。特别地,已经考虑了具有四个独立的三相输出子系统的十二相PMSG,目的是改善DDWT的扭矩管理,能效,发电和可靠性。通过分离发电机的每个三相子系统的解耦控制,可以实现这些目标。因此,介绍了一种新颖的坐标变换方法和所提出的主控制算法的综合方法:最后一个方法允许对发电机进行独立管理。每个子系统的参考电流,从而允许开发高效的变速风力发电机控制。此外,利用提出的DDWT,提出了一种用于风力发电厂的连续中压配电系统(CMVD)的新型拓扑。特别是,DC子系统的功率输出通过建议的CMVD连接到集中式H桥逆变器结构,该结构是电力传输网络和风力发电厂之间的唯一接口。通过在Matlab Simulink环境中进行的仿真研究,验证了所提出控制算法的优越性,并在本文中给出了结果。

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