A hierarchical graph model for probing multimedia applications

Baochun Li
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引用次数: 3

Abstract

In order to achieve the best application-level Quality-of-Service (QoS), complex multimedia applications need to be dynamically tuned and reconfigured to adapt to unpredictable open environments offered by general-purpose systems. We believe that the objective of such adaptations should be to maintain a stable QoS with respect to a set of critical application QoS parameters. However, we have observed that only a limited set of parameters may be used as “tuning knobs” to affect the application behavior. In this paper, we present a hierarchical graph model to discover the relationships between the sets of tunable and critical QoS parameters. Based on such a model, we propose a polynomialcomplexity QoS probing algorithm to quantitatively capture the run-time relationships between the two sets of parameters. Our probing algorithm is integrated into our broader framework, Agilos, which uses a configurable visual tracking application to verify the effectiveness of adaptations.
用于探测多媒体应用程序的层次图模型
为了实现最佳的应用程序级服务质量(QoS),需要对复杂的多媒体应用程序进行动态调优和重新配置,以适应通用系统提供的不可预测的开放环境。我们认为,这种调整的目标应该是在一组关键的应用QoS参数方面保持稳定的QoS。然而,我们已经观察到,只有一组有限的参数可以用作“调优旋钮”来影响应用程序的行为。在本文中,我们提出了一个层次图模型来发现可调和关键QoS参数集之间的关系。基于此模型,我们提出了一种多项式复杂度QoS探测算法,以定量捕获两组参数之间的运行时关系。我们的探测算法集成到我们更广泛的框架Agilos中,它使用一个可配置的视觉跟踪应用程序来验证适应性的有效性。
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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