Timing constraint remapping to achieve time equi-continuity in distributed real-time systems

被引:0
|
作者
Ryu, M [1 ]
Park, J [1 ]
Hong, S [1 ]
机构
[1] Seoul Natl Univ, Sch Elect Engn & Comp Sci, Seoul 151742, South Korea
关键词
distributed real-time system; timing constraint transformation; clock synchronization; real-time scheduling;
D O I
暂无
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
Discretely synchronized, distributed real-time systems may suffer from a time discontinuity problem in that local clocks observe the disappearance or reappearance of time intervals. This problem occurs since traditional discrete clock synchronization algorithms adjust local clocks instantaneously. Such time discontinuities may lead to runtime faults due to the loss or gain of critical time points such as task release times and deadlines. In this paper, we propose a dynamic constraint transformation technique we call a constraint transformation for equi-continuity (CTEC) to correctly enforce timing requirements in a distributed real-time system possessing periodically synchronized distributed local clocks. While continuous clock synchronization is generally suggested to avoid the time discontinuity problem, it incurs too much runtime overhead to be implemented in software. The proposed CTEC technique can solve the time discontinuity problem without modifying discrete clock synchronization algorithms. The CTEC, working as an added component of discrete clock synchronization, moves timing constraints out of discontinuous time intervals. In doing so, it makes use of a mapping derived from continuous clock synchronization in order to exploit its continuity property. We formally prove the correctness of CTEC by showing that the CTEC with discrete clock synchronization generates the same task schedule as continuous clock synchronization. In order to show the effectiveness of CTEC, we have implemented it on a distributed platform based on the CAN bus and performed extensive experiments. The experimental results indicate that time discontinuities present a consistency problem to real-world systems. They also show that CTEC is an effective solution to the problem while incurring little run-tine overhead.
引用
收藏
页码:1310 / 1320
页数:11
相关论文
共 50 条
  • [41] Middleware for real-time distributed simulation systems
    van Paassen, MM
    Pronk, C
    Delatour, J
    [J]. SIMULATION IN INDUSTRY'2000, 2000, : 351 - 358
  • [42] STATIC ANALYSIS OF REAL-TIME DISTRIBUTED SYSTEMS
    LIU, LY
    SHYAMASUNDAR, RK
    [J]. IEEE TRANSACTIONS ON SOFTWARE ENGINEERING, 1990, 16 (04) : 373 - 388
  • [43] AN ENVIRONMENT FOR DISTRIBUTED PROTOTYPING OF REAL-TIME SYSTEMS
    ALONSO, A
    DUENAS, JC
    LEON, G
    DELAPUENTE, JA
    [J]. CONTROL ENGINEERING PRACTICE, 1995, 3 (06) : 871 - 876
  • [44] Real-time framework for distributed embedded systems
    Chaaban, K
    Crubillé, P
    Shawky, M
    [J]. PRINCIPLES OF DISTRIBUTED SYSTEMS, 2004, 3144 : 96 - 107
  • [45] A taxonomy of distributed real-time control systems
    Agre, JR
    Clare, LP
    Sastry, S
    [J]. ADVANCES IN COMPUTERS, VOL 49, 1999, 49 : 303 - 352
  • [46] Transaction Scheduling in Distributed Real-Time Systems
    Kwok-wa Lam
    Victor C. S. Lee
    Sheung-lun Hung
    [J]. Real-Time Systems, 2000, 19 : 169 - 193
  • [47] STATIC ANALYSIS OF REAL-TIME DISTRIBUTED SYSTEMS
    LIU, LYH
    SHYAMASUNDAR, RK
    [J]. LECTURE NOTES IN COMPUTER SCIENCE, 1988, 331 : 134 - 138
  • [48] LANGUAGE CONSTRUCTS FOR REAL-TIME DISTRIBUTED SYSTEMS
    BERRY, DM
    GHEZZI, C
    MANDRIOLI, D
    TISATO, F
    [J]. COMPUTER LANGUAGES, 1982, 7 (01): : 11 - 20
  • [49] Task scheduling in distributed real-time systems
    A. M. Gruzlikov
    N. V. Kolesov
    Yu. M. Skorodumov
    M. V. Tolmacheva
    [J]. Journal of Computer and Systems Sciences International, 2017, 56 : 236 - 244
  • [50] DESIGNING REAL-TIME DEPENDABLE DISTRIBUTED SYSTEMS
    LELANN, G
    [J]. COMPUTER COMMUNICATIONS, 1992, 15 (04) : 225 - 234