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Shuqi Song Peng Han Dong Zou 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2018,56(1):113-127
The rail is modelled as a simply supported beam in the vehicle–track coupled dynamics. The beam is formulated by a partial differential equation that is transformed into an ordinary differential equation by the method of mode superposition for numerical calculation. However, the size of the matrix that is formed by the mode-superposition method increases significantly with track length, which limits the calculation efficiency. Some methods have been developed to solve this calculation issue, but they diminish the merits of the vehicle–track coupled dynamics, which would systematically investigate the dynamics of a vehicle and a track from the entire vehicle–track system. A new method is developed to resolve this contradiction. First, a theory based on a sliding window is established to improve the computational stability with respect to the length and the window-movement ratio. Then, two methods, namely finite element method analysis and an analytical solution, are used to verify the accuracy of the new method, which is highly efficient when used in a vertical half-vehicle–track coupled model to calculate the vehicle response when the vehicle moves on a long track. The results of the vehicle response calculated with and without the sliding window show good consistency. 相似文献
624.
Sönke Kraft Julien Causse Frédéric Coudert 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2018,56(2):190-220
The assessment of the geometry of railway tracks is an indispensable requirement for safe rail traffic. Defects which represent a risk for the safety of the train have to be identified and the necessary measures taken. According to current standards, amplitude thresholds are applied to the track geometry parameters measured by recording cars. This geometry-based assessment has proved its value but suffers from the low correlation between the geometry parameters and the vehicle reactions. Experience shows that some defects leading to critical vehicle reactions are underestimated by this approach. The use of vehicle responses in the track geometry assessment process allows identifying critical defects and improving the maintenance operations. This work presents a vehicle response-based assessment method using multi-body simulation. The choice of the relevant operation conditions and the estimation of the simulation uncertainty are outlined. The defects are identified from exceedances of track geometry and vehicle response parameters. They are then classified using clustering methods and the correlation with vehicle response is analysed. The use of vehicle responses allows the detection of critical defects which are not identified from geometry parameters. 相似文献
625.
E. N. Smith E. Velenis D. Tavernini D. Cao 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2018,56(2):221-248
In this paper, the effect of both passive and actively-modified vehicle handling characteristics on minimum time manoeuvring for vehicles with 4-wheel torque vectoring (TV) capability is studied. First, a baseline optimal TV strategy is sought, independent of any causal control law. An optimal control problem (OCP) is initially formulated considering 4 independent wheel torque inputs, together with the steering angle rate, as the control variables. Using this formulation, the performance benefit using TV against an electric drive train with a fixed torque distribution, is demonstrated. The sensitivity of TV-controlled manoeuvre time to the passive understeer gradient of the vehicle is then studied. A second formulation of the OCP is introduced where a closed-loop TV controller is incorporated into the system dynamics of the OCP. This formulation allows the effect of actively modifying a vehicle's handling characteristic via TV on its minimum time cornering performance of the vehicle to be assessed. In particular, the effect of the target understeer gradient as the key tuning parameter of the literature-standard steady-state linear single-track model yaw rate reference is analysed. 相似文献
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路面结构设计中一般是结合实测轴载数据计算累计当量轴次,但是新建和改建路面设计中实测轴载数据的调查往往难以实现,导致预测交通量无法准确表征实际交通状况。针对此问题,通过对陕西省18条高速路段的车流量数据和6条典型高速路段的实测轴载数据进行比对,分析其车型分布规律、轴型分布规律以及轴载分布规律的区域特征,为利用轴载特性相似区域的已知轴载调查数据预测交通量提供理论依据。研究结果表明:西安周边地区小客车占比明显高于其他类型车辆占比,通往外省地区拖挂车占比与小客车占比接近;西安周边地区以轻型拖挂车为主,通往外省地区以重型拖挂车为主;2个区域的超载比例差异明显,通往外省地区高速路段的超载比例多数是西安周边地区的2倍。 相似文献
628.
为了考量新能源汽车的推广使用对环境的具体影响,对新能源汽车的购买行为和普及率进
行了研究,同时分析新能源汽车在优惠政策条件下在实际路网中的环境影响。首先,对大连市居
民进行了意向问卷调查,建立描述家庭新能源汽车购买行为模型;其次,应用该模型对新能源汽
车在大连市的普及率进行分析;最后,在道路收费优惠政策条件下,考虑新能源汽车的普及率和
出行频率的变化,利用多用户交通平衡分配模型进行实例分析,探索新能源汽车在实际路网中的
排放影响。结果表明,在低普及率情况下,新能源汽车的减排效果并不明显,而在高普及率情况
下,减排效果比较显著。然而,对于交通领域巨大的碳排放体量而言,低普及率带来的碳排放量
下降的累积效应仍是非常可观的。 相似文献
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630.
交控系统是利用各项侦测器或纵坐标名称、单位来进行交通特性搜集的,近年来由于在有线与无线传输的技术上日渐成熟,许多的信息都可以快速的传回至交控中心。但是目前车辆侦测器设置的位置会影响数据收集的准确度,且感应线圈车辆侦测器面临着经常发生数据遗漏。数据产生缺漏对于交通管理决策缺乏效率,而且无法彰显出投资车辆侦测器之价值。为了避免车辆侦测器数据遗漏、断线或数据异常不能使用之情形出现,利用自回归移动平均模型(ARIMA)来填补车辆侦测器所遗失的数据,其MAPE值小于20%,故ARIMA模式較平均法更优秀,其係以历史资料来建构,故有相当优良的填补绩效。 相似文献