首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Study on the stability of the steering torque feedback system considering the time delay and the system characteristics
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Study on the stability of the steering torque feedback system considering the time delay and the system characteristics

机译:考虑时间延迟和系统特性的转向扭矩反馈系统的稳定性研究

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摘要

The steering torque feedback system, as one of the most critical parts in a driving simulator or a steer-by-wire system, is used to generate an faithful or desired steering feel for drivers. This requires that the steering torque feedback system should stably simulate the steering feel for a sufficiently large range. There are many factors that can influence the stability region of the steering torque feedback system, such as the characteristics of the system, the time delay and other non-linear factors. In this paper, from the viewpoint of the system design, a stability criterion is derived using an energy-based approach. In particular, some influencing factors are quantitatively investigated and analysed in this paper, including the characteristics of the damping, friction and stiffness system, the time delay and other non-linear factors of the system. The stability criterion and the analysis results of these influencing factors can be used as guidelines for the design of a steering torque feedback system with the aim of achieving a better performance, such as appropriate parameters for the system damping, friction and stiffness, the maximum allowable time delay of the system and the design of the system control algorithms. As well as a finished steering torque feedback system, the stability region can also be calculated from the criterion using the system parameters. The derived stability criterion and analysis results of these influencing factors are all verified by both simulations and experiments.
机译:转向扭矩反馈系统,作为驾驶模拟器或逐线系统中最关键的部件之一,用于为司机产生忠实或所需的转向感。这要求转向扭矩反馈系统应稳定地模拟足够大的范围的转向感。存在许多因素可以影响转向扭矩反馈系统的稳定区域,例如系统的特性,时间延迟和其他非线性因素。在本文中,从系统设计的观点来看,使用基于能量的方法来导出稳定标准。特别地,在本文中定量地研究和分析了一些影响因素,包括阻尼,摩擦和刚度系统的特性,系统的时间延迟和其他非线性因素。这些影响因素的稳定性标准和分析结果可以用作方向转向扭矩反馈系统的指导方针,其目的是实现更好的性能,例如用于系统阻尼,摩擦和刚度的适当参数,最大允许的系统延迟和系统控制算法的设计。除了完成的转向扭矩反馈系统,还可以使用系统参数从标准计算稳定区域。这些影响因素的衍生稳定性标准和分析结果全部通过模拟和实验验证。

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