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A Lyapunov-based approach for differentiated service admission control and scheduling in cloud

机译:基于Lyapunov的云中差异化服务准入控制和调度方法

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Open cloud platform provides compute, storage and network resources as services to application developers. It is unrealistic to require all the third-party developers to develop stable applications. Hence admission control and reasonable scheduling of all the requests are very necessary for the platform stability. Based on the theory of Lyapunov drift and Lyapunov optimization, a differentiated service admission control model for open cloud platform is proposed in this paper. This model supports heterogeneous back-end Web cluster, and can distinguish between different types of requests. In the paper, we give a specific admission control and resource scheduling algorithm, which achieve an objective value only worse than the optimum by a constant factor. This property is achieved without any statistics of the arrival flows. Finally, we give a formal proof and some simulations, the result shows our algorithm runs well as we expected.
机译:开放云平台将计算,存储和网络资源作为服务提供给应用程序开发人员。要求所有第三方开发人员开发稳定的应用程序是不现实的。因此,对于平台稳定性而言,非常必要的是准入控制和合理安排所有请求。基于Lyapunov漂移理论和Lyapunov优化理论,提出了一种开放云平台的差分服务接纳控制模型。该模型支持异构后端Web群集,并且可以区分不同类型的请求。在本文中,我们给出了一种特定的准入控制和资源调度算法,该算法仅通过一个常数因子就可以达到比最佳值差的目标值。此属性是在没有任何到达流量统计信息的情况下实现的。最后,我们给出了形式证明和一些仿真,结果表明我们的算法可以按预期运行。

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