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Measurement uncertainty estimation of a novel torque transducer for wind turbine test benches

机译:新型风力发电机试验台扭矩传感器的测量不确定度估算

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摘要

This paper covers the measurement uncertainty estimation of a novel 5 MN m torque transducer based on the Force-Lever principle for wind turbine test benches. The motivation of this novel transducer is to provide a satisfying accuracy in torque measurement above 1.1 MNm. Therefore the estimation of the measurement uncertainty is significant to evaluate the design. At the beginning the design is shortly introduced. Afterwards, the design is investigated under operational conditions (e.g. torque, gravity, rotational speed and multiaxial loads) by using FE simulations to determine the deformation and the parasitic loads. Finally, the measurement uncertainty is determined based on these FE simulations according to the type B evaluation of the GUM [1], including metrological aspects (e. g. linearity deviation and hysteresis). Additionally, the share in the measurement uncertainty is examined to indicate further starting points for improvements of the design. It can be shown that the novel torque transducer provides a high potential to significantly improve the measurement uncertainty in the MNm range towards existing torque measurement methods.
机译:本文涵盖了基于力杆原理的新型5 MN m扭矩传感器在风力涡轮机试验台上的测量不确定度估计。这种新型换能器的动机是在1.1 MNm以上的扭矩测量中提供令人满意的精度。因此,测量不确定度的估计对于评估设计非常重要。刚开始时就简短介绍了该设计。然后,通过使用有限元模拟确定变形和寄生载荷,在运行条件(例如扭矩,重力,转速和多轴载荷)下研究设计。最后,根据这些FE模拟,根据GUM [1]的B型评估来确定测量不确定度,包括计量方面(例如,线性偏差和磁滞)。此外,还将检查测量不确定度中的份额,以指示改进设计的其他起点。可以证明,新颖的扭矩传感器提供了很大的潜力,可以朝着现有的扭矩测量方法显着提高MNm范围内的测量不确定度。

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