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首页> 外文期刊>International Journal for Numerical Methods in Engineering >A general solution to the identification of moving vehicle forces on a bridge
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A general solution to the identification of moving vehicle forces on a bridge

机译:识别桥上行驶中的车辆行驶力的一般解决方案

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摘要

Bridge weigh-in-motion systems measure bridge strain caused by the passing of a truck to estimate static axle weights. For this calculation, they commonly use a static algorithm that takes the bridge influence line as reference. Such a technique relies on adequate filtering to remove bridge dynamics and noise. However, filtering can lead to the loss of a significant component of the underlying signal in bridges where the vibration does not have time to complete sufficient number of cycles and in cases of closely spaced axles traveling at high vehicle speeds. In order to overcome these limitations and also to provide additional information on the dynamics of the applied forces, this paper presents an algorithm based on first-order Tikhonov regularization and dynamic programming. First, strain measurements are simulated using an elaborate three-dimensional vehicle and orthotropic bridge interaction system. Then, strain is contaminated with noise and input into the moving force identification algorithm. The procedure to implement the algorithm and to derive the applied forces from the simulated strain record is described. Vehicle axle forces are shown to be accurately predicted for smooth and rough road profiles and a range of speeds. Copyright (C) 2008 John Wiley & Sons, Ltd.
机译:桥梁动态称重系统可测量因卡车驶过而引起的桥梁应变,以估算静态轴重。对于此计算,他们通常使用以桥影响线为参考的静态算法。这样的技术依赖于适当的滤波来消除桥动态和噪声。但是,滤波可能会导致桥梁中的基本信号丢失,因为桥梁中的振动没有时间来完成足够的循环次数,并且在车速较高的情况下,轴间距很小。为了克服这些限制并提供有关作用力动力学的其他信息,本文提出了一种基于一阶Tikhonov正则化和动态规划的算法。首先,使用复杂的三维车辆和正交异性桥相互作用系统模拟应变测量。然后,应变被噪声污染,并输入到移动力识别算法中。描述了实现算法并从模拟应变记录中导出作用力的过程。车轴力显示出可以准确预测出平坦和崎road的路面状况以及各种速度范围。版权所有(C)2008 John Wiley&Sons,Ltd.

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