200815th World Congress on Intelligent Transport Systems and ITS America's 2008 Annual MeetingITS AmericaERTICOITS JapanTransCoreRequires access

Development of Adaptive Cruise Control System using Navigation Information

Masahide Nakamura, Yoshitaka Uemura, Takuya Inoue, Minoru Tamura

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Abstract

This paper reports on the development of an Adaptive Cruise Control (ACC) system that uses navigation information to support acceleration/deceleration operations. The authors remind readers that standard ACC systems maintain a steady distance between vehicles by detection the distance between the vehicle with the ACC and the preceding vehicle through a radar sensor. Current ACC systems still depend on the driver to make the decision for the deceleration when entering a curve or the acceleration after driving through a curve. The authors report on the new system that supports the acceleration/deceleration operation by estimating the road curvature of the preceding curve based on the information from the navigation system. This development adds a function to the ACC and enables drivers to drive at a target speed according to the road curvature. The authors report on the successful road tests conducted with the ACC enhancements that demonstrate the system can develop a curvature calculation logic that is accurate enough to control vehicle speed at curves. This system could be used to reduce the driving workload for drivers.

About this research paper

What this paper is about

This paper reports on the development of an Adaptive Cruise Control (ACC) system that uses navigation information to support acceleration/deceleration operations. The authors remind readers that standard ACC systems maintain a steady distance between vehicles by detection the distance between the vehicle with the ACC and the preceding vehicle through a radar sensor. Current ACC systems still depend on the driver to make the decision for the deceleration when entering a curve or the acceleration after driving through a curve. The authors report on the new system that supports the acceleration/deceleration operation by estimating the road curvature of the preceding curve based on the information from the navigation system. This development adds a function to the ACC and enables drivers to drive at a target speed according to the road curvature. The authors report on the successful road tests conducted with the ACC enhancements that demonstrate the system can develop a curvature calculation logic that is accurate enough to control vehicle speed at curves. This system could be used to reduce the driving workload for drivers.

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Available abstract

This paper reports on the development of an Adaptive Cruise Control (ACC) system that uses navigation information to support acceleration/deceleration operations. The authors remind readers that standard ACC systems maintain a steady distance between vehicles by detection the distance between the vehicle with the ACC and the preceding vehicle through a radar sensor. Current ACC systems still depend on the driver to make the decision for the deceleration when entering a curve or the acceleration after driving through a curve. The authors report on the new system that supports the acceleration/deceleration operation by estimating the road curvature of the preceding curve based on the information from the navigation system. This development adds a function to the ACC and enables drivers to drive at a target speed according to the road curvature. The authors report on the successful road tests conducted with the ACC enhancements that demonstrate the system can develop a curvature calculation logic that is accurate enough to control vehicle speed at curves. This system could be used to reduce the driving workload for drivers.

Key concepts: Cruise control, Acceleration, Curvature, Computer science, Radar, Navigation system, Control system, Cruise

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