Development of converter configuration and corresponding control strategy for wind turbines using permanent magnet synchronous generator: A Case study

Q3 Energy
Vandai Le
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引用次数: 0

Abstract

This study aims to investigate a feasible converter architecture and corresponding control method for Wind Turbine (WT) systems using permanent magnet synchronous generators (PMSG). The converter configuration is designed based on the AC/DC/AC converter, including the Diode Bridge Rectifier (DBR) and Pulse Width Modulated Current Source Inverter (PWM-CSI), Buck-Boost Converter (BBC), and Bypass Chopper (BC). The control strategy for the proposed converter is developed to enhance the operating performance of WT-PMSG, which must satisfy four requisitions. Firstly, it proposes the control approach for the pitch angle to control the output power of the WT when the wind speed is over the rated value. The selected control variables are the generator speed and active power. Secondly, the Maximum Power Point Tracking (MPPT) is archived to the satisfaction of the full-range operation through the control strategy for the BBC. The control strategy is applied by the Proportional Integral (PI) controller. The control variables are the generator speed and the diode rectifier's output DC current. Thirdly, the control strategy for PWM-CSI controls the voltage at the connection point and the frequency of the inverter. Fourthly, the DC-link voltage is controlled to the constant value at various operating conditions. Simulation of a 3MW and 0.69 kV WT-PMSG was carried on in PSCAD software to verify under considering the variable wind speed and the three-phase fault. The obtained results prove the feasibility of the proposed WT-PMSG system that serves as an alternative for a high-power wind energy conversion system.
永磁同步发电机风机变流器配置及相应控制策略的开发:一个案例研究
本研究旨在为使用永磁同步发电机(PMSG)的风力涡轮机(WT)系统研究一种可行的转换器架构和相应的控制方法。转换器配置基于AC/DC/AC转换器设计,包括二极管桥式整流器(DBR)和脉宽调制电流源逆变器(PWM-CSI)、降压-升压转换器(BBC)和旁路斩波器(BC)。为了提高WT-PMSG的运行性能,开发了所提出的转换器的控制策略,这必须满足四个要求。首先,提出了当风速超过额定值时,桨距角的控制方法来控制WT的输出功率。所选控制变量为发电机转速和有功功率。其次,通过对BBC的控制策略,将最大功率点跟踪(MPPT)存档,以满足全量程操作的要求。该控制策略由比例积分(PI)控制器应用。控制变量是发电机速度和二极管整流器的输出直流电流。第三,PWM-CSI的控制策略控制逆变器连接点的电压和频率。第四,在各种操作条件下,DC链路电压被控制为恒定值。在PSCAD软件中对3MW和0.69kV的WT-PMSG进行了仿真,以在考虑可变风速和三相故障的情况下进行验证。所获得的结果证明了所提出的WT-PMSG系统的可行性,该系统可作为大功率风能转换系统的替代方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Energy Systems
Journal of Energy Systems Environmental Science-Management, Monitoring, Policy and Law
CiteScore
1.60
自引率
0.00%
发文量
29
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