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Numerical evaluation of braking feel to design optimal brake-by-wire system

机译:刹车感觉的数值评估,以设计最佳的线控刹车系统

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摘要

Over the years there have been significant advances in automotive engineering thanks to recent development of electronics. Antilock brake system (ABS) technology with modern electronic components has shown superior braking performance to conventional vehicles on highways. The brake-by-wire (BBW) system equipped with powerful electronic devices also allows us to arbitrarily tailor the force feel at brake pedal. Conventionally, however, the brake system has been developed through trial and error on test tracks, which necessitates a great amount of time and cost. This study attempts to establish an analytical tool to evaluate braking feel to help design optimal brake systems. First, mathematical models of brake systems are developed and are confirmed through computer simulations. Second, mechanical impedance at brake pedal is modelled based on the developed brake system models. The brake pedal feel is represented in the form of impedance surface. Third, to provide a guideline to design optimal braking feel, relations between pedal force, pedal stroke and vehicle deceleration are investigated. An expert test driver's evaluation process is modelled based on his subjective ratings of brake systems.
机译:多年来,由于电子学的最新发展,汽车工程领域取得了重大进步。具有现代电子元件的防抱死制动系统(ABS)技术已显示出优于公路上常规车辆的制动性能。装备有强大电子设备的线控制动(BBW)系统还使我们能够随意调整制动踏板上的力感。然而,传统上,制动系统是通过在试验轨道上反复试验而开发的,这需要大量的时间和成本。这项研究试图建立一种分析工具来评估制动感觉,以帮助设计最佳的制动系统。首先,开发了制动系统的数学模型,并通过计算机仿真对其进行了确认。其次,基于已开发的制动系统模型对制动踏板处的机械阻抗进行建模。制动踏板的感觉以阻抗面的形式表示。第三,为了提供设计最佳制动感觉的指导,研究了踏板力,踏板行程和车辆减速度之间的关系。基于其对制动系统的主观评价,对专业测试驾驶员的评估过程进行建模。

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