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DEVELOPMENT OF A BRAKE SYSTEM FOR LIGHTWEIGHT VEHICLE

机译:轻型车辆制动系统的开发

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摘要

With a growing demand for improved fuel efficiency and reduced emissions, lightweight vehicles have gained strong attention in current automotive industry. This paper discusses the development of a brake system for a lightweight vehicle that has significant weight variations. A conventional brake system was first designed and its performance was assessed. In order to improve the brake efficiency and prevent wheel lockup under all loading cases, antilock brake system (ABS) is proposed in which a wheel slip controller based on sliding mode control and a solenoid valve actuator is modeled. In the wheel slip controller, Extended Kalman Filter (EKF) was used to monitor the brake forces and a pulse width modulation (PWM) technique was applied to control the solenoid valve. The overall brake performance was evaluated through simulation of 8 DOF nonlinear vehicle model. The proposed brake system showed significant improvement in brake efficiency.
机译:随着对提高燃油效率和减少排放的需求不断增长,轻型汽车在当前的汽车工业中受到了广泛的关注。本文讨论了重量变化显着的轻型车辆制动系统的开发。首先设计了常规制动系统,并对其性能进行了评估。为了提高制动效率并防止在所有负载情况下车轮抱死,提出了防抱死制动系统(ABS),在该系统中,对基于滑模控制和电磁阀致动器的车轮打滑控制器进行了建模。在车轮打滑控制器中,扩展卡尔曼滤波器(EKF)用于监测制动力,而脉冲宽度调制(PWM)技术则用于控制电磁阀。通过仿真8自由度非线性车辆模型来评估整体制动性能。所提出的制动系统显示出制动效率的显着提高。

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