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Kinematic Constraints to Make Front and Rear Slip Angles Compatibles Rodrigo de Souza Vieira

机译:运动约束使前后滑动角度兼容罗德里戈德萨萨维拉

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摘要

Tires have been taking an important role in vehicle safety in the last years. A lot of efforts have been taken in the way that we can understand, predict and follow its behavior, in the way that this could be useful for vehicle safety increasing. In this direction, several models describe the tire interaction with ground, considering the steering angle, pressure, temperature, friction coefficient and thread as well. Inside this analysis, there is the tire slip angle value, that is consequence of lateral forces acting over the tire. This characteristic is predicted in some cases, and evaluated on another ones. This paper brings to community another point of view of slip angle. We propose a mathematical model that describes a constraint linking slip angles and steering angle, in the way that makes the vehicle turns. We present the kinematic model that makes all three angles compatibles each other, function of the radius' corner. This model was simulated under two different scenarios, for an udersteering and an oversteering vehicles. At the end we show the results and the conclusions that we reached.
机译:轮胎在过去几年中一直在车辆安全方面具有重要作用。我们可以理解,预测和遵循其行为的方式拍摄了很多努力,这在这方面可用于车辆安全性增加。在这种方向上,考虑到转向角,压力,温度,摩擦系数和螺纹,几种模型描述了与地面的轮胎相互作用。在该分析中,存在轮胎滑角值,这是作用在轮胎上的侧向力的结果。在某些情况下预测该特征,并在另一个情况下评估。本文带来了社区的另一个角度。我们提出了一种数学模型,其描述了一种限制链接滑动角度和转向角的方式,使车辆转弯的方式。我们介绍了动态模型,使所有三个角度相互互相互相,半径的角落。该模型是在两种不同场景下模拟的,适用于UDersteering和超流量的车辆。最后,我们展示了结果和我们达成的结论。

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