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Design of the FEM-FIR filter for displacement reconstruction using accelerations and displacements measured at different sampling rates

机译:FEM-FIR滤波器的设计,用于使用在不同采样率下测得的加速度和位移来重建位移

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This paper presents a displacement reconstruction scheme using acceleration measured at a high sampling rate and displacement measured at a considerably low sampling rate. The governing equation and the boundary conditions for the reconstruction are derived using the variational statement of an inverse problem to minimize the errors between measured and reconstructed responses. The transfer function of the governing equation is identically 1 over whole frequency domain, and the proposed scheme would not result in any reconstruction error. A finite impulse response filter (FIR filter) is formulated through the finite element discretization of the governing equation. The Hermitian shape function is adopted to interpolate the displacement in a finite element. The transfer functions of the FIR filter are derived, and their characteristics are thoroughly discussed. It is recommended that the displacement sampling rate should be higher than the Nyquist rate of the target frequency, which is the lowest physically meaningful frequency in measured acceleration. In case the displacement sampling rate is lower than the recommended rate, the use of a higher target accuracy, which is the predefined accuracy at the target frequency, is required. The reconstruction of velocity with the proposed scheme is also presented. The validity of the proposed scheme is demonstrated with a numerical simulation study and a field test on a simply-supported railway bridge.
机译:本文提出了一种位移重建方案,该方案使用以高采样率测量的加速度和以相当低采样率测量的位移。使用反问题的变式来推导重构的控制方程和边界条件,以最大程度地减少测量和重构响应之间的误差。控制方程的传递函数在整个频域上均等于1,所提出的方案不会导致任何重构误差。通过控制方程的有限元离散化,形成了有限脉冲响应滤波器(FIR滤波器)。采用Hermitian形状函数对有限元中的位移进行插值。推导了FIR滤波器的传递函数,并对其特性进行了全面讨论。建议位移采样率应高于目标频率的奈奎斯特速率,这是测得的加速度中最低的物理意义频率。如果位移采样率低于建议的采样率,则需要使用更高的目标精度,即目标频率下的预定义精度。还提出了用所提出的方案重建速度。通过数值模拟研究和在简支铁路桥梁上的现场测试证明了该方案的有效性。

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