An integrated feedback control approach for proportional slowdown differentiation on Internet servers

Jianbin Wei, Chengzhong Xu, Xiaobo Zhou
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引用次数: 2

Abstract

On Internet servers, there is an increasing demand for provisioning of fine-grained quality of service (QoS). Feedback control provides a sound way for such QoS provisioning by amortizing the effect of disturbances from unpredictable and dynamic server workloads. The performance of a feedback control approach is dependent on its agility to the workload changes. Queueing-model based prediction is effective in improving the agility. In this paper, we present a feedback control approach to manage the processing rate on Internet servers for QoS provisioning with respect to slowdown. Slowdown is the ratio of a request's queueing delay to its service time and reflects the requirement that all requests should be treated equally regardless of their resource requirements. The approach adjusts the processing rate of a class using an integral feedback controller according to measured deviations from the target slowdown ratios. For agility, a queueing-model based predictor is integrated to periodically estimates the processing rate of the class. The experimental results under various environment settings demonstrate the approach's effectiveness, robustness, and agility in providing proportional slowdown differentiation services.
互联网服务器比例减速微分的综合反馈控制方法
在Internet服务器上,对提供细粒度服务质量(QoS)的需求越来越大。反馈控制通过平摊来自不可预测和动态服务器工作负载的干扰的影响,为这种QoS提供了一种合理的方式。反馈控制方法的性能取决于它对工作负载变化的敏捷性。基于排队模型的预测是提高敏捷性的有效方法。在本文中,我们提出了一种反馈控制方法来管理互联网服务器上的处理速率,以提供有关减速的QoS配置。减速是请求排队延迟与其服务时间之比,反映了无论资源需求如何,都应平等对待所有请求的要求。该方法使用积分反馈控制器根据测量的偏离目标减速比来调整类的处理速率。为了提高敏捷性,集成了基于排队模型的预测器来定期估计类的处理速率。不同环境下的实验结果表明,该方法在提供比例减速差异化服务方面具有有效性、鲁棒性和敏捷性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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