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Technique for Determining Bridge Displacement Response Using MEMS Accelerometers

机译:使用MEMS加速度计确定桥位移响应的技术

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In bridge maintenance, particularly with regard to fatigue damage in steel bridges, it is important to determine the displacement response of the entire bridge under a live load as well as that of each member. Knowing the displacement response enables the identification of dynamic deformations that can cause stresses and ultimately lead to damage and thus also allows the undertaking of appropriate countermeasures. In theory, the displacement response can be calculated from the double integration of the measured acceleration. However, data measured by an accelerometer include measurement errors caused by the limitations of the analog-to-digital conversion process and sensor noise. These errors distort the double integration results. Furthermore, as bridges in service are constantly vibrating because of passing vehicles, estimating the boundary conditions for the numerical integration is difficult. To address these problems, this paper proposes a method for determining the displacement of a bridge in service from its acceleration based on its free vibration. To verify the effectiveness of the proposed method, field measurements were conducted using nine different accelerometers. Based on the results of these measurements, the proposed method was found to be highly accurate in comparison with the reference displacement obtained using a contact displacement gauge.
机译:在桥梁维护中,尤其是在钢桥的疲劳损伤方面,重要的是确定整个桥梁在活动载荷下的位移响应以及每个构件的位移响应。知道了位移响应后,就可以识别可能引起应力并最终导致损坏的动态变形,从而也可以采取适当的对策。从理论上讲,位移响应可以从测得的加速度的二次积分中计算得出。然而,由加速度计测量的数据包括由于模数转换过程和传感器噪声的限制而引起的测量误差。这些错误使双重积分结果失真。此外,由于在役桥梁由于车辆的驶过而不断振动,因此难以估计用于数值积分的边界条件。为了解决这些问题,本文提出了一种基于其自由振动从其加速度确定在役桥梁位移的方法。为了验证所提出方法的有效性,使用九种不同的加速度计进行了现场测量。根据这些测量的结果,发现与使用接触式位移计获得的参考位移相比,该方法具有较高的精确度。

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