DocumentCode
3403965
Title
Real time task manager for communications and control in multicar platoons
Author
Porche, Isaac R. ; Chang, Kwang Soo ; Li, William ; Varaiya, Pravin
Author_Institution
California Univ., Berkeley, CA, USA
fYear
1992
fDate
29 Jun-1 Jul 1992
Firstpage
409
Lastpage
414
Abstract
Present and future automated intelligent vehicle/highway systems (IVHS) require cooperation and communication between vehicles on the road. An IVHS system can be divided into four layers of control. The regulation layer executes control algorithms that actuate throttle, braking, and/or steering. The regulation layer receives commands from the platoon layer which plans maneuvers such as merging vehicles into a platoon, splitting a platoon of vehicles, and lane changes. The link layer may assign a platoon speed and size. This layer and a higher layer, the network layer, are implemented in roadside computers. The focus of this paper is on the regulation and platoon layers. A protocol is proposed to allow the exchange of messages by vehicles performing co-operative maneuvers. The protocol assumes that all of the interacting vehicles have access to a single radio channel. Data is transmitted in frames that are divided into two channels: a synchronous channel used for round robin transmissions or receptions of data, and a contention channel used to exchange messages of the platoon layer. The synchronous channel is used to transmit or receive speed and acceleration of each vehicle between its neighbors. The test and implementation of the protocol on an automatically controlled platoon to maintain longitudinal control is described. This paper presents another design of a communication task for multicar platoons and a C-language implementation
Keywords
intelligent control; mobile radio systems; protocols; radio data systems; real-time systems; road traffic; traffic computer control; C-language implementation; IVHS; co-operative maneuvers; communications; contention channel; intelligent vehicle/highway systems; link layer; multicar platoons; network layer; platoon layer; protocol; real-time task manager; regulation layer; round robin transmissions; synchronous channel; Access protocols; Automated highways; Automatic control; Communication system control; Computer networks; Control systems; Intelligent vehicles; Merging; Road vehicles; Round robin;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Vehicles '92 Symposium., Proceedings of the
Conference_Location
Detroit, MI
Print_ISBN
0-7803-0747-X
Type
conf
DOI
10.1109/IVS.1992.252293
Filename
252293
Link To Document