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Accurate Bolt Tightening using Model-Free Fuzzy Control for Wind Turbine Hub Bearing Assembly

机译:无模型模糊控制的风力机轮毂轴承组件精确螺栓紧固

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摘要

"In the modern wind turbine industry, one of the core processes is the assembly of the bolt-nut connections of the hub, which requires tightening bolts and nuts to obtain well-distributed clamping force all over the hub. This force deals with nonlinear uncertainties due to the mechanical properties and it depends on the final torque and relative angular position of the bolt/nut connection. udThis paper handles the control problem of automated bolt tightening processes. To develop a controller, the process is divided into four stages, according to the mechanical characteristics of the bolt/nut connection: a Fuzzy Logic Controller (FLC) with expert knowledge of tightening process and error detection capability is proposed. For each one of the four stages, an individual FLC is designed to address the highly non-linearity of the system and the error scenarios related to that stage, to promptly prevent and avoid mechanical damage.udThe FLC is implemented and real time executed on an industrial PC and finally validated. Experimental results show the performance of the controller to reach precise torque and angle levels as well as desired clamping force. The capability of error detection is also validated.ud"
机译:“在现代风力涡轮机行业中,核心过程之一是轮毂的螺栓-螺母连接的组装,这需要拧紧螺栓和螺母以在整个轮毂上获得分布均匀的夹紧力。该力处理非线性不确定性由于其机械性能,它取决于螺栓/螺母连接的最终扭矩和相对角度位置 ud本文解决了自动螺栓拧紧过程的控制问题,要开发一个控制器,该过程分为四个阶段,针对螺栓/螺母连接的机械特性:提出了具有拧紧过程和错误检测能力专业知识的模糊逻辑控制器(FLC),对于这四个阶段中的每个阶段,都设计了一个单独的FLC来解决高度不可靠的问题。系统的线性度以及与该阶段相关的错误情形,以便及时防止和避免机械损坏。 udFLC已实现,并且在工业现场实时执行试用PC并最终通过验证。实验结果表明,该控制器可达到精确的扭矩和角度水平以及所需的夹紧力。错误检测功能也得到了验证。 ud“

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