Task scheduling for real-time multi-processor simulations

G. Borriello, D. Miles
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引用次数: 14

Abstract

Scheduling of tasks onto multi-processors is an increasingly important problem in the simulation of avionics systems. The problem is difficult due to the many hard real-time constraints imposed on the schedule in the form of processor frame-time limits and latency requirements. In this paper, we present a solution to this real-time scheduling problem using simulated annealing techniques. The running time of the algorithm is fast enough for it to be applied in the rapid reconfiguration of simulation test benches in use at Boeing Flight Systems Laboratory. Its efficacy is demonstrated using an example with 60 tasks communicating through 1800 common blocks and scheduled onto 6 processors under 4 latency constraints which achieved a utilization factor over 95%. Such an example can be scheduled in approximately 35 minutes of CPU time on an HP-Apollo 425 workstation.<>
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实时多处理器仿真的任务调度
多处理器任务调度是航空电子系统仿真中一个日益重要的问题。这个问题很困难,因为以处理器帧时间限制和延迟需求的形式强加在调度上的许多硬实时约束。本文提出了一种利用模拟退火技术解决这一实时调度问题的方法。该算法运行速度快,可用于波音飞行系统实验室正在使用的仿真试验台的快速重构。在一个示例中,60个任务通过1800个公共块进行通信,并在4个延迟约束下调度到6个处理器上,从而实现了超过95%的利用率。在HP-Apollo 425工作站上,可以在大约35分钟的CPU时间内调度这样一个示例
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