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Filtering techniques in the dynamic deformation estimation using multiple strains measured by FBGs

机译:使用FBG测量的多个应变进行动态变形估计的滤波技术

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This paper investigates the use of filtering techniques such as the Low-pass and Kalman filter in combination with the quasi-static strain-displacement transformation in order to estimate dynamic structural displacement based on noisy strain measurements. Numerical simulations and vibration experiments were performed on simple beam structures under various dynamic loading cases to determine the sensitivity of estimation procedures against model errors and noise disturbance. In the experimental setup the multiplexing ability of fiber Bragg grating (FBG) sensors was used to obtain strain data with high accuracy and low noise level. Estimated displacements in the experiment were verified against laser displacement readings. Depending on the load case the noise-sensitive, quasi-static shape estimation results could be highly improved by applying recursive filtering methods which allow an application of the simple approach even for complex, vibrating structures.
机译:本文研究了将低通滤波和卡尔曼滤波等滤波技术与准静态应变位移转换结合使用的方法,以便基于噪声应变测量来估算动态结构位移。在各种动态载荷情况下,对简单的梁结构进行了数值模拟和振动实验,以确定估计程序对模型误差和噪声干扰的敏感性。在实验设置中,使用光纤布拉格光栅(FBG)传感器的复用能力来获得具有高精度和低噪声水平的应变数据。针对激光位移读数验证了实验中估计的位移。根据负载情况,通过应用递归滤波方法可以大大提高对噪声敏感的准静态形状估计结果,即使对于复杂的振动结构也可以使用简单的方法。

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