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INTEGRATION OF ADVANCED TIRE-ICE INTERFACE MODEL INTO A BICYCLE MODEL

机译:高级轮胎冰界面模型将高级轮胎 - 冰界面模型集成到自行车模型中

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The use of kinematic and dynamic vehicle models for model-based control design is becoming increasingly important, particularly for autonomous driving. For this study, a handling vehicle model, often referred to as the "bicycle model", which considers the longitudinal, lateral, and yaw motion under the assumption of negligible lateral weight shift while traveling over smooth ice, is studied. To ensure the accuracy of the vehicle simulation, the tire model chosen must account for the conditions in which the model will operate. In this paper, an Advanced Tire-Ice Interface Model (ATIIM) is used in conjunction with a bicycle model to accurately predict the dynamics of the vehicle when operating on smooth ice. ATIIM simulates the temperature rise in the contact patch based on the measured pressure distribution and the thermal properties of the tread compound and of the ice surface. ATIIM allows a thorough investigation of the tire-ice contact, with the capabilities of simulating the height of the water film created from the melted ice and tractive effort, the estimation of the viscous friction due to the water layer, and the influence of braking operations. The original Pacejka Tire Model, a modified version of it (to include ATIIM), and a linear tire model are employed to describe the wheel/ground interaction. These tire models are compared to examine their accuracy in predicting the vehicle's performance when employed in a bicycle vehicle model. The study has shown that by incorporating the ATIIM in the tire model, the vehicle was capable of following the desired driving path more accurately than when the other tire models were used.
机译:运用运动学和动力学车辆模型基于模型的控制设计正变得越来越重要,特别是对自主驾驶。对于本研究,一个处理车辆模型,通常被称为“自行车模型”,它可以忽略不计考虑横向偏移量的假设下的纵向,横向,和偏航运动,同时在行进平滑冰,进行了研究。确保车辆模拟的精度,对于条件轮胎模型选择必须考虑其中模型将操作。在本文中,高级轮胎冰接口模型(ATIIM)结合使用时与自行车模型上光滑冰操作时准确地预测所述车辆的动态。 ATIIM模拟在基于所测量的压力分布和胎面化合物和冰面的热性能的接触面的温度上升。 ATIIM使得轮胎冰接触的彻查,与模拟从融化的冰和牵引力,粘性摩擦的估计产生的水膜的高度的,由于水层的能力,和制动操作的影响。原始Pacejka轮胎模型,它的一个修改版本(包括ATIIM),和线性轮胎模型被用于描述车轮/地面相互作用。这些轮胎模型进行比较,以检查在自行车车型使用时预测车辆的性能其准确性。该研究表明,通过将在ATIIM轮胎模型,该车辆能够在使用了其他的轮胎模型比更准确地跟随所希望的行驶路径的。

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