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Enhancing Security of Real-Time Applications on Grids Through Dynamic Scheduling

机译:通过动态调度提高网格上实时应用程序的安全性

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摘要

Real-time applications with security requirements are emerging in various areas including government, education, and business. However, conventional real-time scheduling algorithms failed to fulfill the security requirements of real-time applications. In this paper we propose a dynamic real-time scheduling algorithm, or SAREG, which is capable of enhancing quality of security for real-time applications running on Grids. In addition, we present a mathematical model to formally describe a scheduling framework, security-sensitive real-time applications, and security overheads. We leverage the model to measure security overheads incurred by security services, including encryption, authentication, integrity check, etc. The SAREG algorithm seamlessly integrates security requirements into real-time scheduling by employing the security overhead model. To evaluate the effectiveness of SAREG, we conducted extensive simulations using a real world trace from a supercomputing center. Experimental results show that SAREG significantly improves system performance in terms of quality of security and schedulability over three existing scheduling algorithms.
机译:具有安全要求的实时应用程序正在包括政府,教育和商业在内的各个领域中出现。但是,传统的实时调度算法无法满足实时应用程序的安全要求。在本文中,我们提出了一种动态实时调度算法SAREG,该算法能够提高运行在Grids上的实时应用程序的安全性。此外,我们提供了一个数学模型来正式描述调度框架,对安全性敏感的实时应用程序和安全性开销。我们利用该模型来衡量安全服务产生的安全开销,包括加密,身份验证,完整性检查等。SAREG算法通过采用安全开销模型将安全需求无缝集成到实时调度中。为了评估SAREG的有效性,我们使用了来自超级计算中心的真实轨迹进行了广泛的模拟。实验结果表明,与现有的三种调度算法相比,SAREG在安全性和可调度性方面显着提高了系统性能。

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