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The Profiling of International Roughness Index (IRI) Based on Lagrangian Method

机译:基于拉格朗日方法的国际粗糙度指数(IRI)分析

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The phenomenological equations of motion for the international roughness index (IRI) have been reviewed and discussed in terms of Lagrangian method in physics. The current paper proposes a practical, two-dimensional model for studying essentially three-dimensional, vibrating,? and? mechanical systems (vehicles). The purpose is to provide a new profiling method for IRI, which is practical in computations and compatible with traditional profiling for roughness of a road-surface. The modern technology employs elaborated sensors such as gyro sensor, Global Positioning System (GPS), magnetometer sensor,? and? accelerometer to measure high-speed longitudinal motions, resulting in time series of big-data expressed as compressed longitudinal spikes. The time series of longitudinal spikes obtained from high-speed longitudinal motions are traditionally considered as a background noise for constructing a profile. The conventional IRI is calculated from big-data of the road profile by employing statistical method, but the Lagrangian model dynamically determines the road profile. The useful concept and relation among the road-roughness function? , associated roughness index (ARI), acceleration and position are introduced and examined in the present paper. The associated roughness index (ARI) defined by the current dynamical approach is examined by applying virtual simulations which represent roughness of a road-surface. The current theoretical model supports and compensates information of interpreting a profile of IRI and elucidates physical meanings for the roughness index of a road-surface.
机译:国际物理粗糙度指数(IRI)的现象学运动方程已经在物理学中根据拉格朗日方法进行了讨论。本论文提出了一种实用的二维模型,用于本质上研究三维振动。和?机械系统(车辆)。目的是提供一种用于IRI的新的轮廓分析方法,该方法在计算中是实用的并且与用于路面粗糙度的传统轮廓分析兼容。现代技术采用了复杂的传感器,例如陀螺仪传感器,全球定位系统(GPS),磁力计传感器,和?加速度计可测量高速纵向运动,从而将大数据的时间序列表示为压缩的纵向峰值。从高速纵向运动获得的纵向尖峰的时间序列传统上被视为构造轮廓的背景噪声。传统的IRI是通过统计方法从道路轮廓的大数据中计算出来的,但是拉格朗日模型是动态确定道路轮廓的。路面不平度函数之间的有用概念和关系?本文介绍并检查了相关的粗糙度指数(ARI),加速度和位置。当前动态方法定义的关联粗糙度指数(ARI)通过应用代表路面粗糙度的虚拟模拟进行检查。当前的理论模型支持并补偿解释IRI轮廓的信息,并阐明路面粗糙度指数的物理含义。

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