Implementation and vehicle tests of a vehicle stop-and-go cruise control system

Author:

Yi K1,Ryu N2,Yoon H J3,Huh K1,Cho D4,Moon I1

Affiliation:

1. Hanyang University School of Mechanical Engineering Seoul, Korea

2. Hyundai Motor Company Kyonggi-Do, Korea

3. Seoul National University Department of Electronic and Electrical Engineering Seoul, Korea

4. Hanyang University Department of Automotive Engineering Seoul, Korea

Abstract

Implementation and vehicle tests of a vehicle longitudinal control algorithm for stop-and-go cruise control have been performed. The vehicle longitudinal control scheme consists of a set-speed control algorithm, a speed control algorithm, and a distance control algorithm. A desired acceleration for the vehicle for the control of vehicle-to-vehicle relative speed and clearance has been designed using linear quadratic optimal control theory. Performance of the control algorithm has been investigated via vehicle tests. Vehicle tests have been conducted using two test vehicles. A 2000 cm3 passenger car equipped with a radar distance sensor, throttle/brake actuators and a controller has been used as a subject vehicle in the vehicle tests. A millimetre wave radar sensor has been used for distance measurement. A step motor and an electronic vacuum booster have been used for throttle/brake actuators. It has been shown that the implemented vehicle longitudinal control system can provide satisfactory performance in vehicle set-speed control and vehicle clearance control at lower speeds.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Aerospace Engineering

Reference9 articles.

1. Rajamani R., Choi S. B., Hedrik J. K., Law B. Design and experimental implementation of control for a platoon of automated vehicles. In Proceedings of the ASME Dynamic Systems and Control Division, 1998, pp. 681–689 (ASME).

2. A vehicle control algorithm for stop-and-go cruise control

3. Muller R., Nocker G. Intelligent cruise control with fuzzy logic. In Intelligent Vehicles ‘92 Symposium, Detroit, 1992, pp. 173–178 (IEEE Industrial Electronics Society).

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