Presentation 2015-12-18
A Highly Reliable Technique for CAN under Highly Electromagnetic Noise
Koji Konomi, Muneyuki Nakamura, Kazuya Sakai, Satoshi Fukumoto,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) In controller area networks (CANs) on modern electronic vehicles and hybrid vehicles, noise level caused by high voltage switching in DC-DC converters could be very high.On the basis of noise injection experiments using an inverter, we propose an application layer-based hybrid ARQ protocol, which consists of automatic repeat request (ARQ), forward error correction (FEC), and HALT modes. This protocol transitions to each mode by referring to transmission and reception error counter incorporated in CAN node. The noise insertion experiment using a pseudo-noise injection circuit or an actual inverter shows that the number of overhead frames by proposed protocol is less than that by the original CAN protocol, and so on.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) CAN / DC-DC converter / switching noise / hybrid ARQ
Paper # DC2015-79
Date of Issue 2015-12-11 (DC)

Conference Information
Committee DC
Conference Date 2015/12/18(1days)
Place (in Japanese) (See Japanese page)
Place (in English) Kurieito Mulakami (Murakami City)
Topics (in Japanese) (See Japanese page)
Topics (in English)
Chair Nobuyasu Kanekawa(Hitachi)
Vice Chair Michiko Inoue(NAIST)
Secretary Michiko Inoue(RTRI)
Assistant

Paper Information
Registration To Technical Committee on Dependable Computing
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) A Highly Reliable Technique for CAN under Highly Electromagnetic Noise
Sub Title (in English)
Keyword(1) CAN
Keyword(2) DC-DC converter
Keyword(3) switching noise
Keyword(4) hybrid ARQ
1st Author's Name Koji Konomi
1st Author's Affiliation Tokyo Metropolitan University(Tokyo Metropolitan Univ.)
2nd Author's Name Muneyuki Nakamura
2nd Author's Affiliation Tokyo Metropolitan University(Tokyo Metropolitan Univ.)
3rd Author's Name Kazuya Sakai
3rd Author's Affiliation Tokyo Metropolitan University(Tokyo Metropolitan Univ.)
4th Author's Name Satoshi Fukumoto
4th Author's Affiliation Tokyo Metropolitan University(Tokyo Metropolitan Univ.)
Date 2015-12-18
Paper # DC2015-79
Volume (vol) vol.115
Number (no) DC-382
Page pp.pp.35-40(DC),
#Pages 6
Date of Issue 2015-12-11 (DC)