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Adaptive Sensorless Control of PMSGs-Based Offshore Wind Farm and VSC-HVdc Stations

机译:基于PMSGs的海上风电场和VSC-HVdc站的自适应无传感器控制

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This paper proposes sensorless control strategies for an offshore wind farm (OWF) and voltage source converter high voltage direct current (VSC-HVdc) stations. The extended Kalman filter provides an estimation of the speeds and rotor positions of permanent magnet synchronous generators (PMSGs) of OWF, the dc voltage at dc-bus and the dc voltages of the both VSC-HVdc stations. The OWF, composed of 150 variable speed wind turbines based on PMSGs, is considered in this paper, where each generator is connected in series by its own ac–dc converter to dc-bus. Only one dc–ac inverter converts the dc-bus voltage to a proper ac voltage of wind farm ac-bus. The HVdc transmission system based on a three-level neutral point clamped VSC is used for the interconnection between the OWF and the onshore grid via two dc cables. Detailed modeling and control strategies are developed for each individual component of the system. Simulation results show the effectiveness of the proposed method to manage the desired HVdc system operation.
机译:本文提出了一种用于海上风电场(OWF)和电压源转换器高压直流(VSC-HVdc)站的无传感器控制策略。扩展的卡尔曼滤波器可估算OWF永磁同步发电机(PMSG)的速度和转子位置,直流母线处的直流电压以及两个VSC-HVdc站的直流电压。本文考虑了由150个基于PMSG的变速风力涡轮机组成的OWF,其中每个发电机都通过自己的ac-dc转换器串联到直流母线。只有一个dc-ac逆变器将dc总线电压转换为风电场ac总线的适当ac电压。基于三电平中性点钳位VSC的HVdc传输系统用于通过两条直流电缆在OWF和陆上电网之间进行互连。为系统的每个单独组件开发了详细的建模和控制策略。仿真结果表明,该方法可有效管理所需的HVdc系统运行。

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