A QoS-Enabled WorkManager Model for Web Application Servers

Wei Wang, Wen-bo Zhang, Jun Wei, Tao Huang
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引用次数: 4

Abstract

The overload of Web application servers (WAS) is a typical and critical problem encountered in nowaday Web commerce. This problem imposes greater demands on WAS to provide QoS support under overload conditions. However, even with a practical solution, the implementation of a flexible QoS model to enable finegrained QoS control in WAS is still a challenging task. In this paper we propose a QoS-enabled workmanager model (WMQ), which hides the complexity of QoS mechanisms implementations and provides a flexible QoS architecture. Hybrid QoS schemes are proposed base on this model to support self-optimization and fine-grained QoS control. We implement this model and integrate it in a Web application server. Our integrating experience shows that the WMQ model significantly reduces the implementation effort in developing a QoS-enabled WAS. We evaluate this model by a TPC-W workload generator in a typical e-commerce application. Evaluation results show that, our overload control allows consistent performance and improves the system throughput up to 22% during extreme overload. In addition, compared with other widely used scheduling policies, our hybrid request scheduling policy shows better performance on improving the system throughput and minimizing the number of aborted requests.
一个支持qos的Web应用服务器工作管理器模型
Web应用服务器过载是当今Web商务中遇到的一个典型而又关键的问题。这个问题对WAS在过载条件下提供QoS支持提出了更高的要求。然而,即使有了实用的解决方案,在WAS中实现灵活的QoS模型以实现细粒度QoS控制仍然是一项具有挑战性的任务。在本文中,我们提出了一个支持QoS的工作管理器模型(WMQ),该模型隐藏了QoS机制实现的复杂性并提供了灵活的QoS架构。在此基础上提出了混合QoS方案,支持自优化和细粒度QoS控制。我们实现该模型并将其集成到Web应用服务器中。我们的集成经验表明,WMQ模型大大减少了开发支持qos的WAS的实现工作量。我们通过典型电子商务应用程序中的TPC-W工作负载生成器来评估该模型。评估结果表明,我们的过载控制允许在极端过载情况下保持一致的性能并将系统吞吐量提高22%。此外,与其他广泛使用的调度策略相比,我们的混合请求调度策略在提高系统吞吐量和最小化请求放弃数量方面表现出更好的性能。
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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