时间触发系统中的零星任务处理

Matthias Freier, Jian-Jia Chen
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引用次数: 2

摘要

实时应用的调度是一个重要的研究课题。我们考虑一个由100—1000个具有任务间通信的任务组成的大规模应用程序,它可以用任务图来表示。对于这些应用程序的调度,以往的研究结果表明,时间触发调度方法能够有效地利用实时平台。但是,时间触发调度方法只支持周期性激活的任务。零星(非周期性)任务在工业应用中也很常见,需要在时间触发方法中进行额外处理。在本文中,我们提出了一种通过改变时间触发调度来处理零星任务(非周期性)的方法。该方法提高了实时零星任务的响应性,而时间触发任务的调度仍然可行。我们定义了一个时间触发的服务器来处理零星事件和预留时间段,以确保延迟的时间触发调度的安全恢复。如果有零星任务到达,则该任务将在时间触发的服务器槽位开始执行,并转移当前时间触发的调度。本文对该方法下的时间触发任务和零星任务进行了可行性分析。我们确定时间触发的调度参数,以最大限度地提高时间触发服务器的性能。实验结果表明,该方法具有较高的可达系统利用率。
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Sporadic Task Handling in Time-Triggered Systems
Scheduling of real-time applications is an important research topic. We consider a large-scale application consisting of 100--1000 tasks with inter-task communications, which can be represented by a task graph. For scheduling these applications, previous research results have shown that the time-triggered scheduling approach is capable to effectively utilize real-time platforms. However, the time-triggered scheduling approach only supports periodically activated tasks. Sporadic (aperiodic) tasks, which are also common in industrial applications, require additional treatments in time-triggered approaches. In this paper, we present a method to handle the sporadic tasks (that are not periodic) by shifting the time-triggered schedule. This method improves the responsiveness of the real-time sporadic tasks, whereas the schedule of the time-triggered tasks remains feasible. We define a time-triggered server to handle sporadic events and reserve time slots to ensure a safe recovery of the delayed time-triggered schedule. If a sporadic task arrives, this task starts its execution during the time-triggered server slot and the current time-triggered schedule is shifted. This paper provides the feasibility analysis for the time-triggered and the sporadic tasks under this slot shifting method. We determine time-triggered scheduling parameters to maximize the performance of the time-triggered server. Experiments confirm higher reachable system utilization by using our slot shifting approach.
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