DocumentCode :
2676324
Title :
Improvement of adaptive cruise control system based on speed characteristics and time headway
Author :
Benalie, Nassaree ; Pananurak, Worrawut ; Thanok, Somphong ; Parnichkun, Manukid
Author_Institution :
Asian Inst. of Technol., Klongluang, Thailand
fYear :
2009
fDate :
10-15 Oct. 2009
Firstpage :
2403
Lastpage :
2408
Abstract :
An adaptive cruise control (ACC) which was implemented on an AIT Intelligent Vehicle, a Mitsubishi Galant car, has been improved and added with more features to allow the vehicle to act with better performance compared with the previous system. An important feature of the new adaptive cruise control system is the ability to maintain a proper inter-vehicle gap based on the speed of leading vehicle and time headway (THW). To develop adaptive cruise control system, the conventional throttle valve system is modified to the drive-by-wire system which uses a DC motor to control the throttle valve position based on PD control with command compensation. In the automatic braking system, a DC motor is installed with steel cable transmission in order to pull the brake pedal to the desired level automatically by applying torque control. The brake control and velocity control have been merged together to control the speed to any desired speeds as fast as possible without jerk and steady-state error. A micro switch is installed at the brake pedal to allow the driver to take over the control of the vehicle anytime. There are three important inputs of the ACC system, speed of leading vehicle read from electronic control unit (ECU), THW set by driver, and actual gap measured from a laser scanner. The ACC processes these three inputs in order to calculate distance error and relative velocity which are used as the two inputs of a fuzzy controller. The fuzzy controller determines the desired speed command to maintain a proper gap based on current speed of the leading vehicle and the desired time headway. Experiments are conducted to evaluate the performance of the ACC system in various conditions. The results show good performance of the adaptive cruise control system.
Keywords :
DC motors; PD control; adaptive control; automated highways; automotive components; automotive electronics; brakes; braking; fuzzy control; position control; torque control; velocity control; ACC system; AIT intelligent vehicle; DC motor; Mitsubishi Galant car; PD control; adaptive cruise control system; automatic braking system; brake control; conventional throttle valve system; drive-by-wire system; electronic control unit; fuzzy controller; intervehicle gap; leading vehicle speed; micro switch; speed characteristic; steady-state error; steel cable transmission; throttle valve position control; time headway; torque control; velocity control; Adaptive control; Adaptive systems; Automatic control; Control systems; DC motors; Error correction; Programmable control; Valves; Vehicles; Velocity control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Robots and Systems, 2009. IROS 2009. IEEE/RSJ International Conference on
Conference_Location :
St. Louis, MO
Print_ISBN :
978-1-4244-3803-7
Electronic_ISBN :
978-1-4244-3804-4
Type :
conf
DOI :
10.1109/IROS.2009.5353922
Filename :
5353922
Link To Document :
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