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1)  aperiodic task
非周期任务
1.
The problem of scheduling hybrid sets of tasks is discussed,consisting of firm period tasks and firm aperiodic tasks.
讨论了在准实时环境下,包括准实时周期任务和准实时非周期任务在内的混合任务调度算法HTSF。
2.
This paper presents a task model for real time systems and gives the conditions that guarantee periodic and aperiodic tasks to be schedulable respectively.
提出了一种实时系统任务模型 ,分析了该模型中周期和非周期任务可调度的条件 ,并给出了一种强实时非周期任务的可预测调度算法。
2)  aperiodic tasks
非周期任务
1.
Based on the analysis of periodic tasks RM scheduling,this paper present a compact method that can get aperiodic tasks priorities in real-time system easily?Using the modified RMS algorithm, the real-time system can schedule the aperiodic tasks and periodic tasks equally.
本文在RMS对周期性任务调度的基础上,给出一种简洁易行的确定实时系统中的非周期任务优先级的方法,以便于RMS算法同样能对非周期任务进行调度。
2.
New Method of Scheduling Periodic and Aperiodic Tasks via RMS;
该方法利用数理统计的规律克服了普通RMS算法只能对系统中周期任务进行有效调度而不能对系统中的非周期任务进行有效调度的局限,扩大了RMS算法的适用范围,简化了非周期任务的处理过程,减小了系统开销。
3)  periodic task
周期任务
1.
Based on studying feature for periodic tasks carefully,we proposed the least sw.
该文在深入研究周期任务特点的基础上,给出了最少切换次数的最低松弛度优先调度算法。
2.
This paper presents a task model for real time systems and gives the conditions that guarantee periodic and aperiodic tasks to be schedulable respectively.
提出了一种实时系统任务模型 ,分析了该模型中周期和非周期任务可调度的条件 ,并给出了一种强实时非周期任务的可预测调度算法。
4)  duty circle
任务周期
1.
To the characteristic of FMS, we present a method to update the result of evaluation according to the duty circle.
并针对FMS可靠性增长的特点提出了可靠性增长评估结果的任务周期修正法。
5)  periodic tasks
周期任务
1.
Based on the analysis of periodic tasks RM scheduling,this paper present a compact method that can get aperiodic tasks priorities in real-time system easily?Using the modified RMS algorithm, the real-time system can schedule the aperiodic tasks and periodic tasks equally.
本文在RMS对周期性任务调度的基础上,给出一种简洁易行的确定实时系统中的非周期任务优先级的方法,以便于RMS算法同样能对非周期任务进行调度。
6)  period task
周期任务
1.
The problem of scheduling hybrid sets of tasks is discussed,consisting of firm period tasks and firm aperiodic tasks.
讨论了在准实时环境下,包括准实时周期任务和准实时非周期任务在内的混合任务调度算法HTSF。
补充资料:非想非非想处天
1.佛教语。即三界中无色界第四天。此天没有欲望与物质﹐仅有微妙的思想。
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