Reconstruction of axle load signal, measurement basis of static load of vehicle axles through the high speed weigh in motion system

Lhoussaine Oubrich, M. Ouassaid, M. Maaroufi
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引用次数: 3

Abstract

The dynamic loads are the variable component of axle load signal of vehicles, while its continuous component corresponds to the static load of the axle. These dynamic loads are the main factor that affects the accuracy of the High Speed Weigh in Motion System (HS-WIM), which are designed for measuring axle load of moving vehicles at normal speed. This paper introduces the algorithm of the Lagrange Polynomial Interpolation to reconstruct the axle load signal on a limited bandwidth and few simulation tests are completed as well. The reconstruction of the signal, performed from discrete samples, allows the estimation of the static axle load. The drawn conclusion of this study confirms, through the simulation tests, the efficiency of the studied algorithm, which is proven through the encouraging values of the evaluation indicators related to the signal reconstruction quality.
通过高速运动称重系统重构车轴载荷信号,为车轴静态载荷的测量提供依据
动载荷是车辆轴载信号的可变分量,其连续分量对应于车轴的静载荷。这些动态载荷是影响高速运动称重系统(HS-WIM)精度的主要因素,高速运动称重系统是为测量正常速度下运动车辆的轴载荷而设计的。本文介绍了在有限带宽下利用拉格朗日多项式插值重构轴载信号的算法,并完成了少量的仿真试验。信号的重建,从离散的样本执行,允许估计静态轴载荷。通过仿真测试,本研究得出的结论证实了所研究算法的有效性,并通过与信号重构质量相关的评价指标的激励值证明了这一点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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