Control strategy of a standalone variable speed wind energy conversion system based on direct drive permanent magnet synchronous generator

Messaoud Mayouf
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Abstract

In this paper, we propose a control strategy for a stand-alone wind energy conversion system (WECS) based on a direct drive permanent magnet synchronous generator (PMSG), loaded on a DC-type charge. In the considered wind-power generating system, the generator provides a DC voltage to the load through a three-phase rectifier, controlled by the Pulse Width Modulation (PWM) technique. The main control strategy target is to maintain the DC voltage insensitive to fast changes in wind speed and load, by offsetting the generator output current with the charge current. The approach adopted in this paper is based on the estimate of the PMSG electromagnetic torque assuming that wind velocity remains quasi-stationary in a steady state. The instant power reference is assessed by the charge controller according to the rated DC bus voltage, using actual electrical measurements as the voltage and current. To achieve adequately the power decoupling, the field-oriented control is used with conventional PI-type regulators to provide direct and quadrature control reference voltages and ensure DC bus voltage regulation. To assess the proposed control strategy efficiency, the simulation model was subjected to different load and wind speed variations. Simulation results performed using the MATLAB Simulink model show high accuracy and strength during steady-state and transient operations.
基于直驱永磁同步发电机的独立式变速风能转换系统控制策略
本文提出了一种基于直流型电荷负载的直接驱动永磁同步发电机(PMSG)的单机风能转换系统(WECS)的控制策略。在风力发电系统中,发电机通过三相整流器向负载提供直流电压,由脉宽调制(PWM)技术控制。主要控制策略目标是通过用充电电流抵消发电机输出电流来保持直流电压对风速和负载的快速变化不敏感。本文所采用的方法是基于假定风速在稳态下保持准平稳的PMSG电磁转矩估计。瞬时参考功率由充电控制器根据直流母线额定电压评估,使用实际的电气测量值作为电压和电流。为了实现充分的功率解耦,将磁场定向控制与传统的pi型稳压器一起使用,以提供直接和正交控制参考电压,并确保直流母线电压的调节。为了评估所提出的控制策略的有效性,对仿真模型进行了不同负载和风速变化的仿真。利用MATLAB Simulink模型进行的仿真结果表明,该模型在稳态和瞬态工况下均具有较高的精度和强度。
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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