DocumentCode
3481563
Title
Communication channel modeling of controller area network (CAN)
Author
Donghyuk Jang ; Sungmin Han ; Suwon Kang ; Ji-Woong Choi
Author_Institution
Dept. of Inf. & Commun. Eng, Daegu Gyeongbuk Inst. of Sci. & Technol. (DGIST), Daegu, South Korea
fYear
2015
fDate
7-10 July 2015
Firstpage
86
Lastpage
88
Abstract
Controller area network (CAN) has been widely used for in-vehicle network. The demand of data rate of invehicle network has risen sharply, while traditional CAN communication cannot support this demand of data rate with limited bandwidth around DC. To overcome the limitation, passband communication systems can be considered where wider bandwidth may be available. In order to use the passband, we need to understand and analyze CAN communication channel. However, since real measurement of the channel response takes so much time and efforts, it will be convenient if channel modeling of CAN communication system is available. In this paper, we perform modeling of passband CAN communication systems in case of end-to-end topology by using transmission matrix and cascade of two port network methods. Instead of real measurement, we expect to reduce the time and efforts significantly to obtain a passband CAN communication channel response by using the channel modeling result. Finally, we suggest the range of frequency band and bridge tap lengths for designing CAN communication systems.
Keywords
controller area networks; on-board communications; telecommunication channels; telecommunication network topology; transmission line matrix methods; CAN communication system design; DC; bandwidth availability; bridge tap length; channel modeling; channel response; communication channel modeling; controller area network; data rate; end-to-end topology; frequency band; in-vehicle network; limited bandwidth; passband CAN communication channel response; passband communication systems; real measurement; transmission matrix; two-port network method cascade; Europe; Impedance; Impedance measurement; Passband; AWG 24 twisted pair; Channel modeling; Controller area network (CAN); Transmission matrix;
fLanguage
English
Publisher
ieee
Conference_Titel
Ubiquitous and Future Networks (ICUFN), 2015 Seventh International Conference on
Conference_Location
Sapporo
ISSN
2288-0712
Type
conf
DOI
10.1109/ICUFN.2015.7182505
Filename
7182505
Link To Document