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基于ISM的动态优先级调度算法 被引量:3

Dynamic Priority Schedule Algorithm Based on ISM
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摘要 在嵌入式Linux操作系统的实时调度算法中,EDF调度算法不能解决负载过载问题。为此,引进对系统负载有着良好表现的SLAD算法和BACKSLASH算法。基于ISM算法思路,提出一种动态优先级调度算法。该算法能根据一段时间内负载过载的情况,灵活地调度EDF算法和SLAD算法,从而提高系统在正常负载和过载情况下的调度效率。对实时任务截止期错失率DMR指标的测试结果证明了其改进效果。 The EDF schedule algorithm, one of main real-time schedule algorithms of the embedded Linux operating system, can not solve the overload schedule. For this, the paper introduces SLAD algorithm and BACKSLASH algorithm, which have good performance of system load. According to thinking of ISM algorithm, it puts forward a kind of dynamic priority schedule algorithm. According to case of overloads within some time, the algorithm can adjust EDF algorithm and SLAD algorithm neatly, thus improves schedule efficiency of system in usual load and overload cases. Test results for real-time tasks Deadline Miss Ratio(DMR) show its improvement effect.
出处 《计算机工程》 CAS CSCD 北大核心 2011年第4期284-286,共3页 Computer Engineering
关键词 EDF调度算法 SLAD算法 BACKSLASH算法 ISM方法 LINUX内核 EDF schedule algorithm SLAD algorithm BACKSLASH algorithm ISM method Linux core
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  • 1DANIEL,P, Bovet, MARCO,Cesati,陈茉君,冯锐,牛欣源,译.深入理解Linux内核[M].北京:中国电力出版社,2001..
  • 2Joseph M,Pandya P.Finding Response Times in a Real-Time System[J].The Computer Journal,1986,29 (5):390-395.
  • 3Liu C,Layland J.Scheduling Algorithms for Multiprogramming in a Hard-Real-Time Environment[J].Journal of the ACM,1973,20(1):40-61.
  • 4Sprunt B,Sha L,Lehoczky J.Aperiodic Task Scheduling for Hard-Real-Time Systems[J].Real Time Systems,1989(1):27-60.
  • 5Spuri M,Buttazzo G.Scheduling aperiodic tasks in dynamic priority systems[J].Real-time Systems J,1996(1):179 -210.
  • 6Labrosse J J.嵌入式操作系统μC/OS-Ⅱ[M].邵贝贝,译.北京:北京航空航天大学出版社,2003.
  • 7翟鸿鸣.单处理器系统的实时调度算法研究[J].微机发展,2003,13(10):99-101. 被引量:15

共引文献23

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  • 1宾雪莲,杨玉海,金士尧.一种有限优先级的静态优先级分配算法[J].软件学报,2004,15(6):815-822. 被引量:14
  • 2涂刚,阳富民,卢炎生.基于动态优先级策略的最优软非周期任务调度算法[J].计算机研究与发展,2004,41(11):2026-2034. 被引量:20
  • 3王汝传,韩光法.网格计算环境下作业调度的策略研究[J].重庆邮电学院学报(自然科学版),2005,17(2):198-203. 被引量:8
  • 4Mifdaoui A, Frances F. Performance Analysis of a Master/Slave Switched Ethernet for Military Embedded Applications[ J]. Industrial Informatics, IEEE Transactions on, 2011 (4) : 534-547.
  • 5Lim Hyung-Taek, Kay Weckemann, Daniel Herrscher Performance. Study of an In-Car Switched Ethemet Network without Prioritization[ J]. Communication Technologies for Vehicles ,2011:83-88.
  • 6Ricardo Marau, Lufs Almeida, Paulo Pedreiras. Enhancing Real-time Communication over COTS Ethernet Switches [ C ] ff WFCS' 06: IEEE Internationai Workshop on Factory Communication Systems,2006:295-302.
  • 7Hoang H, Jonsson M, Hagstrom U, et al. Switched Real-time Ethernet with Earliest Deadline First Scheduling Protocols and Traffic Handling[ C ]//Proceedings of the International Parallel and Distributed Processing Symposium,2002:94-99.
  • 8Joseph M, Pandya P. Finding Response Times in a Real-Time System[ J]. BCS Computer Journal, 1986,29 (5):390-395.
  • 9Audsley N, Bums A, Richardson M, et al. Applying New Scheduling Theory to Static Priority Pre-Emptive Scheduling[ J]. Software Engineering Journal, 1993,8:284-292.
  • 10何福贵,侯义斌,李辉.基于有限优先级的动态调度分组算法[J].北京工业大学学报,2008,34(8):873-877. 被引量:3

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