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首页> 外文期刊>International journal of structural stability and dynamics >Combined Road Roughness and Vehicle Parameter Estimation Based on a Minimum Variance Unbiased Estimator
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Combined Road Roughness and Vehicle Parameter Estimation Based on a Minimum Variance Unbiased Estimator

机译:基于最小差异无偏估计的基于最小方差的道路粗糙度和车辆参数估计

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摘要

This paper deals with the simultaneous identification of road roughness and vehicle parameters, considering the effect of vehicle-structure interaction. The proposed technique avoids the use of bridge response data (which has practical implementation difficulties along with the high chances of corruption with environmental noises) and utilizes the vehicle response data (which is relatively easier to record). Further, vehicle calibration is not needed as the roughness is estimated simultaneously. The identification is carried out by the coupling of an unbiased minimum variance estimator with an optimization scheme. This study considers a quarter-car vehicle model and a half-car vehicle model, instrumented to measure the vehicle vibration data. The unbiased minimum variance estimator (MVE) allows a linear temporal evolution of the state variables, incorporating the roughness as an unknown input term such that the need for linearization is avoided, unlike the traditional nonlinear filters. The optimization scheme helps in choosing a set of optimal solutions for the vehicle parameters as designed in the coupled scheme. The best split of the available measurement data to be used in the two schemes (MVE and optimization scheme) is discussed. The effect of different objective functions is also studied. The proposed technique is successful in terms of simultaneously estimating the vehicle parameters, roughness profile and vehicle responses (states) accurately.
机译:本文考虑了车辆结构相互作用的影响,涉及道路粗糙度和车辆参数的同时识别。该提出的技术避免了使用桥梁响应数据(具有实际实施困难以及与环境噪声腐败的高机会),并利用车辆响应数据(相对容易地记录)。此外,不需要车辆校准,因为同时估计粗糙度。通过具有优化方案的非偏叠的最小方差估计器的耦合来执行识别。本研究考虑了四分之一车辆车型和半汽车车辆模型,用于测量车辆振动数据。非偏见的最小方差估计器(MVE)允许状态变量的线性时间演变,并将粗糙度包含为未知的输入项,以避免对线性化的需求不同,与传统的非线性滤波器不同。优化方案有助于为耦合方案设计的车辆参数选择一组最佳解决方案。讨论了在两种方案(MVE和优化方案)中使用的可用测量数据的最佳分割。还研究了不同客观功能的影响。在准确地估计车辆参数,粗糙度和车辆响应(状态)方面,所提出的技术是成功的。

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