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A Session-Based Adaptive Admission Control Approach for Virtualized Application Servers

机译:虚拟应用服务器的基于会话的自适应准入控制方法

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This paper presents a session-based adaptive admission control approach for virtualized application servers called ACVAS (adaptive Admission Control for Virtualized Application Servers). ACVAS uses measured and predicted resource utilizations of a server to make admission control decisions for new user sessions. Instead of using the traditional on-off control, it implements per session admission control, which reduces the risk of over-admission. Moreover, instead of relying only on rejection of new sessions, ACVAS takes benefit of the cloud elasticity, which allows dynamic provisioning of cloud resources. It also implements a simple session deferment mechanism that reduces the number of rejected sessions while increasing session throughput. Thus, each admission control decision has three possible outcomes: admit, defer, or reject. Performance under varying user load is guaranteed by automatic adjustment and tuning of the admission control mechanism. The proposed approach is demonstrated in a discrete-event simulation.
机译:本文提出了一种针对虚拟化应用服务器的基于会话的自适应准入控制方法,称为ACVAS(虚拟化应用服务器的自适应准入控制)。 ACVAS使用服务器的测量和预测资源利用率来为新用户会话做出准入控制决策。代替使用传统的开关控制,它实现了每个会话的准入控制,从而降低了过度准入的风险。此外,ACVAS不仅依赖于拒绝新会话,还利用了云弹性,该弹性允许动态配置云资源。它还实现了一个简单的会话延迟机制,该机制可以减少拒绝会话的数量,同时提高会话吞吐量。因此,每个准入控制决定都有三个可能的结果:准入,推迟或拒绝。通过自动调整和调整准入控制机制,可以保证在不断变化的用户负载下的性能。离散事件仿真中演示了该方法。

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