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Voltage Sags Ride-Through of Motion Sensorless Controlled PMSG for Wind Turbines

机译:用于风力涡轮机的运动无传感器控制pmsG的电压降低

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摘要

This paper describes a variable-speed motion-sensorless permanent magnet synchronous generator (PMSG) control system for wind energy generation. The proposed system contains a PMSG connected to the grid by a back-to-back PWM inverter with bidirectional power flow, a line filter, and a transformer. The control system employs PI current controllers with crosscoupling decoupling for both inverters, an active power controller, and a DC link voltage controller. The PMSG rotor speed without using emf integration, and the line voltage frequency are estimated by two PLL based observers. A Dmodule filter is used to robustly estimate the grid voltage positivesequence for control in the case of asymmetric voltages. The paper investigates the ride-through performance of this system during power grid voltage sags. Design details for various parts of the control system are presented, together with experimental results for single-, two-, and three-phase voltage source sags. Smooth transition through asymmetric voltage sags is demonstrated by all experiments.
机译:本文介绍了一种用于风能发电的变速无运动传感器永磁同步发电机(PMSG)控制系统。拟议的系统包含一个PMSG,该PMSG通过具有双向功率流的背靠背PWM逆变器连接到电网,一个线路滤波器和一个变压器。该控制系统采用具有交叉耦合去耦功能的PI电流控制器(两个逆变器),一个有功功率控制器和一个DC链路电压控制器。不使用emf集成的PMSG转子速度和线电压频率由两个基于PLL的观察器估算。 Dmodule滤波器用于稳健地估计电网电压正序,以在不对称电压的情况下进行控制。本文研究了电网电压骤降期间该系统的穿越性能。介绍了控制系统各部分的设计细节,以及单相,两相和三相电压暂降的实验结果。所有实验都证明了通过不对称电压骤降的平稳过渡。

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