AbstractOn horizontal nondeformable ground, we consider the movement of a road train consisting of a biaxial tractor car and triaxi'/> Development and Research of the Mathematical Model of Planar Motion of a Vehicle with a Semitrailer
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Development and Research of the Mathematical Model of Planar Motion of a Vehicle with a Semitrailer

机译:用半拖车的车辆平面运动数学模型的发展与研究

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AbstractOn horizontal nondeformable ground, we consider the movement of a road train consisting of a biaxial tractor car and triaxial semitrailer treated as solid bodies. Based on the Lagrange’s equations of the second kind, we develop a nonlinear mathematical model of its plane motion, using the position of the fifth-wheel coupling and rotating angles of the tractor and semitrailer body as generalized coordinates. We analyze and linearize the constructed system of equations and obtain a linear mathematical model describing the small lateral displacements and rotations of the elements of a road train when it is moving at a high longitudinal speed, small jackknifing angle, and small rotation angle of the steering wheels. Using the equivalent transformations of the obtained system of equations, we construct a state-space linear model of the lateral motion of the road train. A comparative analysis of the use of linear and nonlinear models to describe the road train’s motion, carrying out standard maneuvers, is performed. It is shown that, if the restrictions are satisfied, then the results of nonlinear and linear model usage are quite close to each other and sufficiently well agree with the results of the field tests. The developed model, unlike the already known ones, is fairly simple (linear). Further, it could be used for an analytical synthesis of the control laws for the lateral component of the motion of road trains.]]>
机译:<![cdata [ <标题>抽象 ara>在水平非可变地面上,我们考虑由双轴拖拉机和三轴组成的道路列车的运动半拖车被视为固体。基于第二种的拉格朗日等式,我们使用拖拉机和半拖车体的第五轮耦合和旋转角度的位置开发其平面运动的非线性数学模型作为概括的坐标。我们分析和线性化构造的方程系统,并获得描述在高纵向速度,小千斤顶角度和转向的小旋转角度移动时的道路列车的元件的小横向位移和旋转的线性数学模型轮子。使用所获得的等式的等效变换,我们构造了道路列车的横向运动的状态空间线性模型。对使用线性和非线性模型来描述道路列车运动的比较分析,进行了标准演习。结果表明,如果满足限制,则非线性和线性模型使用的结果彼此非常接近并且足够好地同意现场测试的结果。与已知的模型不同,与已知的模型相当简单(线性)。此外,它可用于道路列车运动的横向部件的分析合成。 ]]>

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