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Comparison of fault-ride-through capability of dual and single-rotor wind turbines

机译:双转子和单转子风力发电机故障穿越能力的比较

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摘要

The majority of wind turbines currently in operation have the conventional concept design. That is a single-rotor wind turbine (SRWT) which is connected through spur gearbox to a generator. Recently, dual-rotor wind turbine (DRWT) has been introduced to the market. It has been proven that the steady state performance of the DRWT system for extracting energy is better than the SRWT. But, a comparison of fault-ride-through capability of these two types of turbines requires further research. In this paper, the fault-ride-through capability of DRWT and SRWT are evaluated and compared when generating units are operating at constant pitch angle and constant speed modes. Constant pitch angle mode is simulated to investigate the natural damping of DRWT and SRWT. To verify the time domain simulation results, damping characteristics of DRWT and SRWT are also compared through eigenvalue analysis and speed droop characteristics of the control system. The accuracy of the aerodynamic model of the DRWT is enhanced by including the stream tube effect in the simulation. It was uncovered that DRWT introduces higher damping torque to the network in both constant speed and constant pitch angle modes. This advantage improves the transient performance of DRWT-based wind farms.
机译:当前运行的大多数风力涡轮机具有常规概念设计。那就是单转子风力涡轮机(SRWT),它通过正齿轮箱连接到发电机。近来,双转子风力涡轮机(DRWT)已被引入市场。已经证明,DRWT系统用于提取能量的稳态性能优于SRWT。但是,对这两种类型的涡轮机的故障穿越能力进行比较需要进一步的研究。在本文中,当发电机组以恒定桨距角和恒定速度模式运行时,对DRWT和SRWT的故障穿越能力进行了评估和比较。模拟了恒定螺距角模式,以研究DRWT和SRWT的自然阻尼。为了验证时域仿真结果,还通过特征值分析和控制系统的速度下降特性比较了DRWT和SRWT的阻尼特性。通过在仿真中包括流管效应,可以提高DRWT空气动力学模型的准确性。人们发现,在恒定速度和恒定螺距角模式下,DRWT都会向网络引入更高的阻尼扭矩。这一优势提高了基于DRWT的风电场的暂态性能。

著录项

  • 来源
    《Renewable energy》 |2012年第2012期|p.473-481|共9页
  • 作者单位

    Faculty of Engineering and Industrial Sciences, Swinburne University of Technology, Hawthorn, 3122, VIC, Melbourne, Australia;

    Faculty of Engineering and Industrial Sciences, Swinburne University of Technology, Hawthorn, 3122, VIC, Melbourne, Australia;

    Faculty of Engineering and Industrial Sciences, Swinburne University of Technology, Hawthorn, 3122, VIC, Melbourne, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    wind turbine; transient response; dual-rotor wind turbine; eigenvalue analysis; speed droop;

    机译:风力发电机瞬态响应双转子风力发电机特征值分析速度下降;

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