Title :
An Antilock-Braking Algorithm for an Eddy-Current-Based Brake-By-Wire System
Author :
Anwar, Sohel ; Zheng, Bing
Author_Institution :
Purdue Sch. of Eng. & Technol., Indiana Univ., Indianapolis, IN
fDate :
5/1/2007 12:00:00 AM
Abstract :
This paper presents a nonlinear sliding-mode-type controller for slip regulation in a braking event for an electromagnetic brake-by-wire (BBW)-system-equipped automobile. The electromagnetic BBW system under consideration consists of a set of eddy current brakes (ECBs) attached to the automobile wheels. The antilock-braking controller modifies the brake torque command generated by a supervisory controller which, in turn, is based on the driver´s command sensed via brake pedal sensors. The modified brake torque command is then generated by a closed-loop actuator control algorithm to control the ECB system. It is shown in this paper that the proposed antilock-braking control system is stable in the sense of Lyapunov. Experimental results are presented for a test vehicle equipped with an eddy-current-based BBW system. Experimental results show that the proposed antilock brake control algorithm provides very good slip regulation in a braking event on low friction-coefficient surfaces (wet jennite) when compared with that of a braking event without the proposed antilock-braking control. Experimental results also indicate that the proposed antilock-braking control system provides a smooth stop for the vehicle
Keywords :
Lyapunov methods; actuators; automobiles; automotive components; brakes; closed loop systems; eddy currents; nonlinear control systems; sensors; torque; variable structure systems; wheels; antilock-braking algorithm; automobile wheels; brake pedal sensors; brake torque command; brake-by-wire system; closed-loop actuator control algorithm; eddy-current brakes; electromagnetic system; nonlinear sliding mode type controller; slip regulation; supervisory controller; Actuators; Automobiles; Control systems; Eddy currents; Friction; Roads; Sliding mode control; Torque control; Vehicle dynamics; Wheels; Antilock braking; brake-by-wire (BBW); eddy current brake (ECB); sliding mode control;
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2007.895604