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Magic Formula Tyre Model with Transient Properties

机译:具有瞬态特性的Magic Formula轮胎模型

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The tyre force and moment generating properties connected with the vehicle's horizontal motions are considered. Knowledge of tyre properties is necessary to properly design vehicle components and advanced control systems. For this purpose, mathematical models of the tyre are being used in vehicle simulation models. The steady-state empirical 'Magic Formula tyre model' is discussed. The aligning torque description is based on the concepts of pneumatic trail and residual torque. This facilitates its combined slip description. Following Michelin, weighting functions have been introduced to model the combined slip force generation. A full set of equations of the steady-state part of the model of the new version 'Delft Tyre 97' is presented. The non-steady state behaviour of the tyre is of importance in rapid transient maneuvres, when cornering on uneven roads and for the analysis of oscillatory braking and steering properties. A relatively simple model for longitudinal and lateral transient responses restricted to relatively low time and path frequencies is introduced.
机译:考虑与车辆水平运动有关的轮胎力和力矩产生特性。要正确设计车辆部件和先进的控制系统,必须具备轮胎属性的知识。为此,在车辆仿真模型中使用了轮胎的数学模型。讨论了稳态经验“魔术公式轮胎模型”。对准扭矩描述基于气动尾部和剩余扭矩的概念。这有助于其组合的单据描述。继米其林之后,引入了加权函数来模拟组合滑动力的产生。提出了新版本“代尔夫特轮胎97”模型的稳态部分的完整方程式。轮胎的非稳态行为在快速瞬态操纵中,在崎road不平的道路上转弯时以及对于振荡制动和转向特性的分析非常重要。引入了相对简单的纵向和横向瞬态响应模型,该模型被限制在相对较低的时间和路径频率下。

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