Title :
Hybrid supervisory control for real-time embedded bus rapid transit applications
Author :
Girard, Anouck R. ; Howell, Adam S. ; Hedrick, J. Karl
Author_Institution :
Univ. of California, Berkeley, CA, USA
Abstract :
Complex large-scale embedded systems arise in many applications, in particular in the design of automotive systems, controllers, and networking protocols. In this paper, we attempt to present a review of salient results in modeling of complex large-scale embedded systems, including hybrid systems, and review existing results for composition, analysis, model checking, and verification of safety properties. We then present a library of vehicle models designed for vehicle following [cruise control (CC), adaptive CC (ACC), cooperative ACC (CACC)]. The models and controllers attempt to cross the chasm between theory and practice by capturing real-world challenges faced by industry and making the library accessible in a public domain form, with a gradation of levels of complexity. The most complex level was used for controller design and simulation for a bus rapid transit demonstration. Experimental results are shown.
Keywords :
adaptive control; control system synthesis; embedded systems; large-scale systems; rapid transit systems; road vehicles; traffic control; automotive systems; cooperative adaptive cruise control; networking protocols; real-time embedded bus rapid transit; supervisory control; Automotive engineering; Control systems; Embedded system; Large-scale systems; Libraries; Programmable control; Protocols; Safety; Supervisory control; Vehicles; Cooperative systems; embedded software; hybrid systems; road vehicles;
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2005.853466