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A dynamic priority assignment technique for streams with (m, k)-firm deadlines

机译:具有(m,k)个企业截止期限的流的动态优先级分配技术

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The problem of scheduling multiple streams of real-time customers, is addressed in this paper. The paper first introduces the notion of (m, k)-firm deadlines to better characterize the timing constraints of real-time streams. More specifically, a stream is said to have (m, k)-firm deadlines if at least m out of any k consecutive customers must meet their deadlines. A stream with (m, k)-firm deadlines experiences a dynamic failure if fewer than m out of any k consecutive customers meet their deadlines. The paper then proposes a priority-based policy for scheduling N such streams on a single server to reduce the probability of dynamic failure. The basic idea is to assign higher priorities to customers from streams that are closer to a dynamic failure so as to improve their chances of meeting their deadlines. The paper proposes a heuristic for assigning these priorities. The effectiveness of this approach is evaluated through simulation under various customer arrival and service patterns. The scheme is compared to a conventional scheme where all customers are serviced at the same priority level and to an imprecise computation model approach. The evaluation shows that substantial reductions in the probability of dynamic failure are achieved when the proposed policy is used.
机译:本文解决了调度多个实时客户流的问题。本文首先介绍了(m,k)个企业截止期限的概念,以更好地表征实时流的时序约束。更具体地说,如果任何k个连续客户中至少有m个必须满足其期限,则流被称为具有(m,k)个企业期限。如果(k,firm)个截止期限的流在任何k个连续客户中都少于m个,则它们会发生动态故障。然后,本文提出了一种基于优先级的策略,用于在单个服务器上调度N个此类流,以降低动态故障的可能性。基本思想是从更接近动态故障的流中为客户分配更高的优先级,以提高他们达到截止日期的机会。本文提出了一种启发式方法来分配这些优先级。通过在各种客户到达和服务模式下进行仿真,可以评估这种方法的有效性。该方案与常规方案(其中所有客户都以相同的优先级得到服务)和不精确的计算模型方法进行了比较。评估表明,使用建议的策略可以大大降低动态故障的可能性。

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