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SAREC: a security-aware scheduling strategy for real-time applications on clusters

机译:SAREC:用于群集上实时应用程序的安全意识调度策略

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摘要

Security requirements of security-critical real-time applications must be met in addition to satisfying timing constraints. However, conventional real-time scheduling algorithms ignore the applications' security requirements. In recognition that an increasing number of applications running on clusters demand both real-time performance and security, we investigate the problem of scheduling a set of independent real-time tasks with various security requirements. We propose a security overhead model that is capable of measuring security overheads incurred by security-critical tasks. Further, we propose a security-aware scheduling strategy, or SAREC, which integrates security requirements into scheduling for real-time applications by employing our security overhead model. To evaluate the effectiveness of SAREC, we implement a security-aware real-time scheduling algorithm (SAREC-EDF), which incorporates the earliest deadline first (EDF) scheduling algorithm into SAREC Extensive simulation experiments show that SAREC-EDF significantly improves overall system performance over three baseline scheduling algorithms (variations of EDF) by up to 72.55%.
机译:除了满足时序约束之外,还必须满足对安全性至关重要的实时应用程序的安全性要求。但是,常规的实时调度算法会忽略应用程序的安全要求。认识到越来越多的在群集上运行的应用程序同时要求实时性能和安全性,因此我们研究了调度一组具有各种安全性要求的独立实时任务的问题。我们提出了一种安全开销模型,该模型能够测量由安全关键型任务引起的安全开销。此外,我们提出了一种安全意识调度策略或SAREC,该策略通过采用我们的安全性开销模型将安全需求集成到实时应用程序的调度中。为了评估SAREC的有效性,我们实现了一种安全感知的实时调度算法(SAREC-EDF),该算法将最早的截止日期优先(EDF)调度算法集成到SAREC中。广泛的仿真实验表明,SAREC-EDF可以显着提高整体系统性能三种基线调度算法(EDF的变化)最多可达到72.55%。

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