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An innovative method to calibrate a spinner anemometer without the use of yaw position sensor

机译:一种在不使用偏航位置传感器的情况下校准旋转式风速计的创新方法

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摘要

A spinner anemometer can be used to measure the yaw misalignment and flow inclination experienced by a wind turbine. Previous calibration methods used to calibrate a spinner anemometer for flow angle measurements were based on measurements of a spinner anemometer with default settings (arbitrary values, generally k1,d  =  1 and k2,d  =  1) and a reference yaw misalignment signal measured with a yaw position sensor. The yaw position sensor is normally present in wind turbines for control purposes; however, such a signal is not always available for a spinner anemometer calibration. Therefore, an additional yaw position sensor was installed prior to the spinner anemometer calibration. An innovative method to calibrate the spinner anemometer without a yaw positions sensor was then developed. It was noted that a non-calibrated spinner anemometer that overestimates (underestimates) the inflow angle will also overestimate (underestimate) the wind speed when there is a yaw misalignment. The new method leverages the non-linearity of the spinner anemometer algorithm to find the calibration factor Fα by an optimization process that minimizes the dependency of the wind speed on the yaw misalignment. The new calibration method was found to be rather robust, with Fα values within ±2.7 % of the mean value for four successive tests at the same rotor position.
机译:旋转风速仪可用于测量风力涡轮机的偏航偏心和流向倾斜。以前用于校准旋转角风速计以进行流量角测量的校准方法是基于旋转角风速计的默认设置(任意值,通常为k1,d = 1和k2,d = 1),以及使用偏航位置传感器。偏航位置传感器通常存在于风力涡轮机中,用于控制目的。但是,这种信号并非始终可用于旋转风速计校准。因此,在微调风速仪校准之前,安装了一个额外的偏航位置传感器。然后开发了一种无需偏航位置传感器即可校准微调风速计的创新方法。要注意的是,当偏航未对准时,高估(低估)流入角度的非校准旋转风速计也会高估(低估)风速。新方法利用微调器风速仪算法的非线性特性,通过优化过程找到了校准因子Fα,该过程使风速对偏航未对准的依赖性最小。发现新的校准方法非常可靠,在相同的转子位置进行的四个连续测试的Fα值均在平均值的±2.7%之内。

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