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THE INVESTIGATION OF APPROPRIATE CONTROL ALGORITHMS FOR THE SPEED CONTROL OF WIND TURBINE HYDROSTATIC SYSTEMS

机译:风轮机静液压系统速度控制的适当控制算法研究

摘要

This report consists of two chapters. The first is concerned with a new approach to pipe flow modelling and the second has to do with the simulation of the hydrostatic system which will be applied to a wind turbine.For the pipe flow model, the main focus has been to create a flow model which accounts for the frequency dependent friction, i.e. the fluid friction which occurs at non-steady conditions. The author is convinced that the solution to this problem lies in the velocity profile, as the friction is a direct result of the shear stresses in the pipe. At the same time, it is possible to keep track of the velocity profile in the pipe as the pressure evolves in time and space.The new model utilizes the continuity equation for pipe flow and the equation of motion for axisymmetrical flow of a Newtonian fluid to find both a pressure distribution in the pipe and velocity profiles throughout the pipe. There are uncertainties whether the approach to find these velocity profiles done in the new model is correct.The modelling of the hydrostatic transmission to a wind power turbine is done using SIMULINK software. The design of the system and basics of the modelling are described inthe second chapter. The motor speed is regulated using a PID-controller and the generator torque is varied based on the pressure drop over the hydraulic motor. The PID-controller for motor speed seems be of good-enough quality and speed deviations are within acceptablelimits.Simulation results are given for one certain case with an initial rotor torque of 20kNm and an additional step torque of 20kNm.
机译:该报告包括两章。第一个与管道流动建模的新方法有关,第二个与将应用于风力涡轮机的静液压系统的仿真有关。对于管道流动模型,主要重点是创建流动模型它解决了与频率有关的摩擦,即在非稳态条件下发生的流体摩擦。作者坚信解决此问题的方法在于速度曲线,因为摩擦力是管道中剪切应力的直接结果。同时,随着压力在时间和空间上的变化,可以跟踪管道中的速度曲线。新模型利用了牛顿流体向管道流动的连续性方程和轴对称流动的运动方程。求出管道中的压力分布和整个管道的速度曲线。在新模型中找到这些速度曲线的方法是否正确尚不确定。使用SIMULINK软件对向风力涡轮机的静液压传动进行建模。第二章介绍了系统的设计和建模基础。使用PID控制器调节电动机速度,并根据液压电动机上的压降来改变发电机转矩。电机速度的PID控制器的质量似乎足够好,速度偏差在可接受的范围内。在某些情况下给出了模拟结果,初始转子转矩为20kNm,附加步进转矩为20kNm。

著录项

  • 作者

    Gulstad Magnus Johan;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 nor
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