Thuyloi University, Hanoi, Vietnam.
PLoS One. 2023 Apr 13;18(4):e0284018. doi: 10.1371/journal.pone.0284018. eCollection 2023.
In this paper, the author proposes a novel solution to evaluate the dependence between the maximum roll angle and the minimum vertical force at the wheel on the vehicle's height and speed. 4D graphs that fully and clearly describe the dependence between parameters are used to replace conventional 2D and 3D graphs. A complex dynamic model is established to describe the vehicle's oscillations when steering. Calculations and simulations are performed using Simulink® software with many specific cases. In all cases, the input values such as steering angle, speed, and distance from RA (roll axis) to CG (the center of gravity), all change flexibly. According to the paper's findings, the roll angle will rise once speed or height increases. In addition, the maximum roll angle increases significantly once both the velocity and the height increase. This causes the vertical force at the wheel to drop suddenly, and rollover may occur if this value reduces to zero. 4D graphs provide a more specific and intuitive assessment of vehicle rollovers.
本文提出了一种新的解决方案,用于评估车辆高度和速度对最大侧倾角度和最小车轮垂直力之间的依赖性。使用充分且清晰描述参数之间依赖性的 4D 图代替传统的 2D 和 3D 图。建立了一个复杂的动态模型来描述车辆转向时的振动。使用 Simulink®软件进行计算和模拟,并针对许多具体情况进行了仿真。在所有情况下,输入值(如转向角度、速度以及 RA(侧倾轴)到 CG(重心)的距离)都可以灵活地变化。根据本文的研究结果,一旦速度或高度增加,侧倾角度就会上升。此外,一旦速度和高度同时增加,最大侧倾角度会显著增加。这会导致车轮的垂直力突然下降,如果该值降至零,可能会发生侧翻。4D 图提供了对车辆侧翻更具体和直观的评估。