Development of Hybrid Blade Angle Control System for Traversing Wind Turbines

Tomonobu Furuta, H. Kawai, M. Okamoto, K. Kubomura
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Abstract

In this paper, we consider a Passive-type Traversing Wind Turbine (PTWT) and propose a control system to improve power generation and windbreaker effect of the wind turbine. Wind power has been becoming more popular worldwide and several types of wind turbines to match different operating environments and objectives have been researched. As one of them, we have started to study a special type of Vertical-Axis Wind Turbine (VAWT) which may also solve wind disaster problems in agricultural areas. The parallel mechanism in this type of wind turbine makes it difficult to adjust blades angle, therefore the mechanism has trouble changing blade angle during sudden inversions in wind direction. However, by using a passive mechanism that only uses the power of the wind, the wind turbine can keep up with sudden inversions in wind direction. In addition, active control is possible by attaching actuators, and hybrid control (passive and active) may increase the efficiency of power generation and windbreaker effect. We conduct wind-tunnel tests to evaluate the incleased effectiveness of power generation using the hybrid control system. Additionally, we investigate drag of the wind turbine to clarify the windbreaker effect using the developed system.
横贯式风力机混合叶片角控制系统的研制
本文以一种无源穿越式风力发电机组为研究对象,提出了一种控制系统,以提高风力发电机组的发电能力和防风效果。风力发电在世界范围内越来越受欢迎,为了适应不同的运行环境和目标,已经研究了几种类型的风力涡轮机。作为其中之一,我们已经开始研究一种特殊类型的垂直轴风力发电机(VAWT),它也可以解决农业地区的风灾问题。这种风力机的并联机构使得叶片角度调整困难,因此在风向突然反转时,该机构在改变叶片角度方面存在困难。然而,通过使用一种仅利用风力的被动机制,风力涡轮机可以跟上风向的突然反转。此外,通过附加致动器可以实现主动控制,混合控制(被动和主动)可以提高发电效率和风衣效果。我们进行风洞试验,以评估使用混合控制系统增加的发电效率。此外,我们还研究了风力发电机的阻力,以阐明利用所开发的系统的风衣效应。
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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