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Monitoring the Dynamics of a Helicopter Main Rotor With High-Speed Stereophotogrammetry

机译:高速立体摄影术监测直升机主旋翼的动力学

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Stereophotogrammetry in conjunction with three-dimensional point tracking (3DPT) algorithms has proven to be a highly robust dynamic measurement technique on small, rotating bladed systems. This measurement technique can be scaled up to much larger systems and has several desirable features for helicopter and wind turbine structural health monitoring (SHM) applications that include: (1) it is noncontact and does not require the use of roll/slip rings for signal transmission; (2) the applied measurement targets negligibly affect the aerodynamics or structural mass/stiffness; and (3) position data can be collected on many hundreds of points over what is capable using conventional multichannel data acquisition (DAQ) systems. A field test was conducted in which operating data were collected on the main rotor of a helicopter in both grounded and hovering operating conditions. Part 1 of this work describes the experimental setup and DAQ process of the test performed and part 2 of this work presents some of the results including blade dynamics and extracted operating deflection shape information for the helicopter. The promising results presented in this work will serve as the foundation for the development of noncontacting SHM techniques that can be applied to large, rotating bladed structures while in operation.
机译:立体摄影测量学与三维点跟踪(3DPT)算法相结合已被证明是在小型旋转刀片系统上的一种高度可靠的动态测量技术。此测量技术可以扩展到更大的系统,并具有直升机和风力涡轮机结构健康监测(SHM)应用的一些理想功能,其中包括:(1)它是非接触式的,不需要使用滚动/滑环来发出信号传播; (2)所采用的测量目标对空气动力学或结构质量/刚度的影响可忽略不计; (3)可以使用常规的多通道数据采集(DAQ)系统在数百个点上收集位置数据。进行了现场测试,其中在着陆和悬停工作条件下都收集了直升机主旋翼的工作数据。这项工作的第1部分描述了进行的测试的实验设置和DAQ过程,而这项工作的第2部分则介绍了一些结果,包括桨叶动力和为直升机提取的操作偏转形状信息。这项工作中提出的有希望的结果将为开发非接触式SHM技术奠定基础,该技术可在运行时应用于大型旋转叶片结构。

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