手动与自动驾驶双模式电动助力转向系统建模与分析

M. H. Nugraha, Oka Mahendra, E. Rijanto
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引用次数: 0

摘要

关于电动助力转向(EPS)的建模和控制已经有了一些出版物。然而,解决手动和自动驾驶双模式EPS的出版物仍然有限。此外,大多数现有的文章没有包括转向轮胎的转动惯量在他们的模型。本文对小型汽车手动和自动驾驶双模式EPS进行了建模和动力学分析。我们将转向轮胎的转动惯量纳入模型,并对其动力学特性进行了详细的分析。在推导了几个运动方程后,给出了路面转矩到转向转矩和电机电流到转向角的两个传递函数。第一传递函数决定了在手动操作时驾驶员感觉的转向性能。第二部分对自动驾驶EPS控制器的设计至关重要。我们画出了这些传递函数的波德图。结果表明,第一个传递函数的共振频率约为12 Hz,而第二个传递函数的幅度急剧减小,几乎为零,约为9.8 Hz。这些结果为设计双模式操作的EPS控制器提供了重要的知识。
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Modeling and Analysis of a Dual-mode Electric Power Steering for Manual and Autonomous Driving
There have been several publications on the modeling and control of electric power steering (EPS). However, publications that address a dual-mode EPS for manual and autonomous driving are still limited. Moreover, most existing articles do not include the steering tire's moment of inertia in their models. This paper presents modeling and dynamic analysis of a dual-mode EPS in manual and autonomous driving for small vehicles. We incorporated the steering tire's moment of inertia into the model and provided a detailed analysis of dynamical characteristics. After deriving several motion equations, we present two transfer functions, i.e., from the road torque to the steering torque and from the motor current to the steering angle. The first transfer function determines the steering performance regarding driver feel during manual operation. The second one is vital for designing the EPS controller for autonomous driving. We plotted the Bode diagrams of those transfer functions. The results indicate that the first transfer function demonstrates a resonant frequency of around 12 Hz and that the magnitude of the second transfer function decreases drastically, almost to zero, at around 9.8 Hz. These results provide significant knowledge for designing an EPS controller for dual-mode operation.
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