首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >PITCH CONTROL FOR ANTICIPATION IN THE MEASUREMENT OF WIND SPEED FOR SMALL WIND TURBINES INSTALLED IN AREAS WITH ATYPICAL WINDS
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PITCH CONTROL FOR ANTICIPATION IN THE MEASUREMENT OF WIND SPEED FOR SMALL WIND TURBINES INSTALLED IN AREAS WITH ATYPICAL WINDS

机译:用于在有非典型风中安装的小型风力涡轮机测量风速度的预期控制

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The production of electricity by renewable means is necessary to meet the growing energy demand and to protect the environment. Wind energy is an alternative, however, in places with a limited wind resource only the installation of small horizontal Axis wind turbines (SHAWT) is profitable. At rotor height, in this size of turbines, the wind is usually unstable with gusts and turbulence due to obstacles in its path such as buildings and trees. To reduce the effects of wind, the angle of incidence of the blade with the wind must be adaptable to guarantee the nominal rotation speed. The pitch angle is the angle of blade rotation around the longitudinal axis is commonly regulated with a Proportional-Integral-Derivative (PID) feedback controller, which works correctly when the wind is stable, but not when the wind presents drastic changes in speed, as a faster response speed is required. To correct this problem, this article presents a PID controller with automatic adjustment of the gain values and offering different response times for which a fuzzy logic controller (FLC) is used. The membership functions of the FLC are determined from the measurement of the wind speed at a calculated distance, so it is possible to anticipate the response of the actuator to the arrival of a wind gust to the rotor. The algorithm is implemented in 14 kW SHAWT where the difference of performance versus a conventional controller is quantified.
机译:通过可再生能源来生产电力的需要,以满足日益增长的能源需求和保护环境。风能是一种选择,但在有限的风力资源只有该装置的小型水平轴风力涡轮机(SHAWT)是有利可图的地方。在转子的高度,在这个尺寸的涡轮机,风通常是阵风和湍流不稳定,由于它的道路上的障碍,如建筑物和树木。为了减少风的影响,随着风叶片的入射角必须适应,以保证额定转速。俯仰角是绕纵向轴线叶片旋转的角度通常与一个比例 - 积分 - 微分(PID)反馈控制器,当风力稳定其工作正常调节,但不是当风呈现速度的急剧变化,如更快的响应速度是必需的。要解决此问题,本文提出了一种PID控制器与所述增益值的自动调整,并提供用于其一个模糊逻辑控制器(FLC)不同的响应时间。的FLC的隶属函数从在计算出的距离的风速的测量来确定,因此可以预见到致动器来阵风到达至转子的响应。该算法在14千瓦SHAWT其中的性能与传统控制器的区别进行量化来实现。

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