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A Hybrid Task Schedule Algorithm for Real-Time System Employing Trusted Computing Technology

机译:采用可信计算技术的实时系统混合任务调度算法

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Security has been a serious concern in more and more embedded systems. But restricted by the constrained resources in embedded system, security may damage the system real-time performance, we refer to this challenge as the "security real-time gap". To bridge this gap, trusted computing technology can be a good candidate, however, researches focusing on real-time performance in embedded systems employing trusted computing is still blank. In this paper, we investigate the dynamic scheduling of hybrid tasks with trusted computing constraint, and present a hybrid tasks model to describe the tasks which need trusted computing resources and a strategy to manage the trusted requests. Furthermore, an advanced dynamic hybrid task schedule algorithm based on total bandwidth server (TBS) algorithm is presented in this paper, used for enhancing responsiveness performance of aperiodic tasks. In the evaluation by simulation, the proposed method reduced average response times of the aperiodic task by up to 30.4%.
机译:在越来越多的嵌入式系统中,安全一直是一个严重的问题。但是由于受嵌入式系统资源的限制,安全性可能会损害系统的实时性能,我们将此挑战称为“安全性实时差距”。为了弥合这一差距,可信计算技术可能是一个不错的选择,但是,针对采用可信计算的嵌入式系统中实时性能的研究仍然是空白。在本文中,我们研究了具有可信计算约束的混合任务的动态调度,并提出了一个混合任务模型来描述需要可信计算资源的任务以及管理可信请求的策略。此外,提出了一种基于总带宽服务器(TBS)算法的动态混合任务调度算法,用于提高非周期性任务的响应性能。在仿真评估中,该方法将非周期性任务的平均响应时间降低了30.4%。

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