A design-diversity based fault-tolerant COTS avionics bus network

被引:5
|
作者
Chau, SN [1 ]
Smith, J [1 ]
Tai, AT [1 ]
机构
[1] CALTECH, Jet Prop Lab, Pasadena, CA 91109 USA
关键词
D O I
10.1109/PRDC.2001.992677
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
This paper describes a COTS bus network architecture consisted of the IEEE 1394 and SpaceWire buses. This architecture is based on the multi-level fault tolerance design methodology proposed by Chau but has much less overhead than the original IEEE 1394/(IC)-C-2 implementation. The simplifications are brought about by the topological flexibility and high performance of the SpaceWire. The Space Wire can forma connected graph that embeds multiple spanning trees. This is a significant advantage because it allows the IEEE 1394 bus to select a different tree topology when a fault occurs. It also has sufficient performance to stand in for IEEE 1394 bus during fault recovery, so that a backup IEEE 1394 bus is no longer required. These two buses are very compatible at the physical level and therefore can easily be combined. Analysis of the effectiveness of the IEEE 1394/SpaceWire architecture shows that it can achieve the same fault tolerance capability as the IEEE 1394/(IC)-C-2 architecture with less redundancy.
引用
收藏
页码:35 / 42
页数:8
相关论文
共 50 条
  • [1] Design of a fault-tolerant COTS-based bus architecture
    Chau, SN
    Alkalai, L
    Tai, AT
    Burt, JB
    IEEE TRANSACTIONS ON RELIABILITY, 1999, 48 (04) : 351 - 359
  • [2] The implementation of a COTS based fault tolerant avionics bus architecture
    Chau, S
    Luong, H
    Charlan, W
    Fukuhara, R
    Holmberg, E
    Jones, P
    Pixler, G
    2000 IEEE AEROSPACE CONFERENCE PROCEEDINGS, VOL 7, 2000, : 297 - 305
  • [3] A Fault-Tolerant Architecture of PCI-Express Bus for Avionics Systems
    Kim, Sung-Jun
    Kim, Kyong-Hoon
    Jun, Yong-Kee
    JOURNAL OF THE KOREAN SOCIETY FOR AERONAUTICAL AND SPACE SCIENCES, 2020, 48 (12) : 1005 - 1012
  • [4] A kind of COTS Onboard computer fault-tolerant design
    PuWeihua
    2017 PROGNOSTICS AND SYSTEM HEALTH MANAGEMENT CONFERENCE (PHM-HARBIN), 2017, : 749 - 753
  • [5] Outboard Flaps Control System based on the Avionics Deterministic Fault-Tolerant Data Bus LTTP
    Kitoko, LeBel
    Klein, Lothar
    Ried, Georg
    Zanker, Ulrich
    2008 6TH IEEE INTERNATIONAL CONFERENCE ON INDUSTRIAL INFORMATICS, VOLS 1-3, 2008, : 240 - 245
  • [6] Interlocking bus network for fault-tolerant processor arrays
    Siegle, M.G.
    Reeves, D.S.
    Kozminski, K.
    Proceedings of the International GI/ITG/GMA Conference, 1991,
  • [7] FAULT-TOLERANT MULTIPROCESSOR LINK AND BUS NETWORK ARCHITECTURES
    PRADHAN, DK
    IEEE TRANSACTIONS ON COMPUTERS, 1985, 34 (01) : 33 - 45
  • [8] Research on architecture and design principles of COTS components based generic fault-tolerant computer
    Ou, ZH
    Yuan, YG
    Zhao, XY
    11TH PACIFIC RIM INTERNATIONAL SYMPOSIUM ON DEPENDABLE COMPUTING, PROCEEDINGS, 2005, : 227 - 234
  • [9] A fault-tolerant attitude determination system based on COTS devices
    Duarte, Ricardo O.
    Martins-Filho, Luiz S.
    Knop, Guilherme E. T.
    Prado, Ricardo S.
    14TH IEEE INTERNATIONAL ON-LINE TESTING SYMPOSIUM, PROCEEDINGS, 2008, : 85 - 90
  • [10] A control and monitor CAN bus network based on fault-tolerant control theory
    Yu Chuanqiang
    Guo Xiaosong
    Zhan An
    Chen Deguo
    PROCEEDINGS OF THE INTERNATIONAL CONFERENCE INFORMATION COMPUTING AND AUTOMATION, VOLS 1-3, 2008, : 1158 - 1161