首页> 外文会议>European Wind Energy Association Annual Event >THREE-DIMENSIONAL DEFLECTION ESTIMATION OF A COMPOSITE BLADE USING A MODAL APPROACH BASED SHAPE ESTIMATION ALGORITHM WITH EMBEDDED SENSOR ARRAY
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THREE-DIMENSIONAL DEFLECTION ESTIMATION OF A COMPOSITE BLADE USING A MODAL APPROACH BASED SHAPE ESTIMATION ALGORITHM WITH EMBEDDED SENSOR ARRAY

机译:基于模态方法的嵌入式传感器阵列的模态方法估计算法的三维偏转估计

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摘要

Real-time deflection monitoring of a composite wind blade was conducted using a shape estimation algorithm using modal approach with strain data. The strain data was measured by fiber Bragg grating (FBG) sensors embedded in pressure side skin of the blade. The displacement-strain transformation (DST) matrix on the basis of the modal approach was obtained by the finite element model of the composite structure. The locations of the nine FBG strain sensors were optimized by minimizing the condition number of the displacement-strain transformation matrix. The deflection-monitoring test of the 11m span composite blade was conducted to verify the shape reconstruction algorithm and applicability of the FBG sensors in deflection shape estimation. The estimated shapes measured by FBG sensors are compared with the directly captured deflection shapes measured by stereo pattern recognition (SPR) cameras.
机译:使用具有应变数据的模态方法的形状估计算法进行复合风刀片的实时偏转监测。通过嵌入叶片的压力侧皮的光纤布拉格光栅(FBG)传感器测量应变数据。基于模态方法的位移 - 应变变换(DST)矩阵是通过复合结构的有限元模型获得的。通过最小化位移 - 应变变换矩阵的条件数来优化九个FBG应变传感器的位置。进行11M跨度复合刀片的偏转监测测试以验证FBG传感器在偏转形状估计中的形状重建算法和适用性。将由FBG传感器测量的估计形状与通过立体图案识别(SPR)相机测量的直接捕获的偏转形状进行比较。

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