Modeling, Control and Operation of a 10 MW Direct-Drive Wind Energy Conversion System

L. B. K. Fisch, M. Heldwein
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Abstract

The constant evolution of wind energy conversion systems (WECSs), especially in offshore applications, brings new trends to the wind energy market. Recently, industrial advances have proposed WECSs of 10-16 MW, and some of these are still under development. In addition, new grid codes are devised to connect the wind system to the grid. Therefore, adequate control systems are necessary to guarantee the operation of the WECSs. For this reason, this work proposes to develop a direct drive wind energy conversion system model with a rated power of 10 MW, following the trends in the offshore wind energy market. The main objective is to provide the literature with a wind system with current characteristics and a complete control system, allowing detailed studies of dynamic interaction, power quality, stability analysis and control strategies applied to grid-connected systems, including low voltage ride through (LVRT) operation. In general, the proposed system was divided into four energy conversion subsystems: wind turbine (WT), permanent magnet synchronous generator (PMSG), rectifier and inverter stages. Model parameters including WT, PMSG, power converter and operating strategies are discussed. The main results are presented for a 10-MW WECS with the proposed operation strategy, which were obtained from MATLAB / Simulink simulations.
10mw直接驱动风能转换系统的建模、控制和运行
风能转换系统(wecs)的不断发展,特别是在海上应用,为风能市场带来了新的趋势。最近,工业上的进步已经提出了10-16兆瓦的wecs,其中一些仍在开发中。此外,还设计了新的电网规范,将风力发电系统与电网连接起来。因此,需要适当的控制系统来保证wcs的运行。因此,根据海上风能市场的发展趋势,本工作提出开发额定功率为10 MW的直接驱动风能转换系统模型。主要目标是为文献提供具有电流特性的风系统和完整的控制系统,允许详细研究动态相互作用,电能质量,稳定性分析和应用于并网系统的控制策略,包括低电压穿越(LVRT)运行。总的来说,该系统分为四个能量转换子系统:风力发电机(WT)、永磁同步发电机(PMSG)、整流器和逆变器级。讨论了WT、PMSG、功率变换器等模型参数和运行策略。通过MATLAB / Simulink仿真,给出了采用所提出的运行策略的10mw WECS的主要结果。
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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