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Q-fabric: System support for continuous online quality management.

机译:Q-fabric:持续在线质量管理的系统支持。

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摘要

The explosive growth in networked systems and applications and the increase in device capabilities (as evidenced by the availability of inexpensive multimedia devices) enable novel complex distributed applications, including video conferencing, on-demand computing services, and virtual environments. These applications' need for high performance; real-time, or reliability requires the provision of Quality of Service (QoS) guarantees along the path of information exchange between two or more communicating systems. Execution environments that are prone to dynamic variability and uncertainty make QoS provision a challenging task, e.g., changes in user behavior, resource requirements, resource availabilities, or system failures are difficult or even impossible to predict. Further, with the coexistence of multiple adaptation techniques and resource management mechanisms, it becomes increasingly important to provide an integrated or cooperative approach to distributed QoS management.; This work's goals are the provision of system-level tools needed for the efficient integration of multiple adaptation approaches available at different layers of a system (e.g., application-level, operating system, or network) and the use of these tools such that distributed QoS management is performed efficiently with predictable results. These goals are addressed constructively and experimentally with the Q-Fabric architecture, which provides the required system-level mechanisms to efficiently integrate multiple adaptation techniques. The foundation of this integration is the event-based communication implemented by it, realizing a loosely-coupled group communication approach frequently found in multi-peer applications. Experimental evaluations are performed in the context of a mobile multimedia application, where the focus is directed toward efficient energy consumption on battery-operated devices. Here, integration is particularly important to prevent the multiple energy management techniques found on modern mobile devices to negate the energy savings of each other.
机译:联网系统和应用程序的爆炸性增长以及设备功能的增长(通过廉价的多媒体设备的可用性可以证明)实现了新颖而复杂的分布式应用程序,包括视频会议,按需计算服务和虚拟环境。这些应用对高性能的需求;实时或可靠性要求在两个或多个通信系统之间的信息交换路径上提供服务质量(QoS)保证。容易发生动态变化和不确定性的执行环境使QoS提供成为一项具有挑战性的任务,例如,用户行为,资源需求,资源可用性或系统故障的变化很难甚至无法预测。此外,随着多种适配技术和资源管理机制的共存,为分布式QoS管理提供集成或协作的方法变得越来越重要。这项工作的目标是提供系统级工具,以有效集成在系统的不同层(例如,应用程序级,操作系统或网络)可用的多种适应方法,并使用这些工具,以实现分布式QoS。有效地执行管理并获得可预测的结果。这些目标通过Q-Fabric架构进行建设性和实验性解决,该架构提供了有效集成多种自适应技术所需的系统级机制。这种集成的基础是由它实现的基于事件的通信,从而实现了在多对等应用程序中经常发现的松耦合的组通信方法。实验评估是在移动多媒体应用程序的环境中进行的,其中的重点是电池驱动设备的高效能耗。在这里,集成对于防止现代移动设备上发现的多种能源管理技术相互抵消能量节省特别重要。

著录项

  • 作者

    Poellabauer, Christian.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 184 p.
  • 总页数 184
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化技术、计算机技术;
  • 关键词

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