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WIND TURBINE CONTROLLER TO MITIGATE STRUCTURAL LOADS ON A FLOATING WIND TURBINE PLATFORM

机译:风轮机控制器,用于减轻浮动风轮机平台上的结构载荷

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This paper summarizes the control design work that was performed to optimize the controller of a wind turbine on the Wind-Float structure. The WindFloat is a semi-submersible floating platform designed to be a support structure for a multi-megawatt power-generating wind turbine. A controller developed for a bottom-fixed wind turbine configuration was modified for use when the turbine is mounted on the WindFloat platform. This results in an efficient platform heel resonance mitigation scheme. In addition several control modules, designed with a coupled linear model, were added to the fixed-bottom baseline controller. The approach was tested in a fully coupled nonlinear aero-hydro-elastic simulation tool in which wind and wave disturbances were modeled. This testing yielded significant improvements in platform global performance and tower-base-bending loading.
机译:本文总结了为优化风浮结构上的风力涡轮机控制器而进行的控制设计工作。 WindFloat是一种半潜水式浮动平台,旨在用作多兆瓦发电风力涡轮机的支撑结构。当将涡轮安装在WindFloat平台上时,针对底部固定式风力涡轮机配置开发的控制器经过修改后可以使用。这导致了有效的平台后跟共振缓解方案。另外,将具有耦合线性模型设计的几个控制模块添加到固定底基线控制器。该方法在完全耦合的非线性空气-水-弹性模拟工具中进行了测试,在该工具中对风浪干扰进行了建模。该测试对平台的整体性能和塔基弯曲负荷产生了显着改善。

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