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Improving Multicore Server Performance and Reducing Energy Consumption by Workload Dependent Dynamic Power Management

机译:通过依赖于工作负载的动态电源管理来提高多核服务器性能并降低能耗

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The technique of using workload dependent dynamic power management (i.e., variable power and speed of processor cores according to the current workload) to improve system performance and to reduce energy consumption is investigated. Typically, the power supply and the core speed are increased when there are more tasks in a server, such that tasks can be processed faster and the average task response time is reduced. On the other hand, the power supply and the core speed are decreased when there are less tasks in a server, such that energy consumption can be reduced without significant performance degradation. A queueing model of multicore server processors with workload dependent dynamic power management is established. Several speed schemes are proposed and it is demonstrated that for the same average power consumption, it is possible to design a multicore server processor with workload dependent dynamic power management, such that its average task response time is shorter than a multicore server processor of constant speed (i.e., without workload dependent dynamic power management). It is shown that given certain application environment and average power consumption, there is an optimal speed scheme that minimizes the average task response time. For two-speed schemes, the problem of optimal design of a two-speed scheme for given power supply and power consumption model is formulated and solved. It is pointed out that power consumption reduction subject to performance constraints can be studied in a similar way as performance improvement (i.e., average task response time reduction) subject to power consumption constraints. To the best of our knowledge, this is the first work on analytical study of workload dependent dynamic power management.
机译:研究了使用依赖于工作负载的动态电源管理(即,根据当前工作负载改变处理器内核的电源和速度)来提高系统性能并降低能耗的技术。通常,当服务器中有更多任务时,电源和核心速度会提高,从而可以更快地处理任务并减少平均任务响应时间。另一方面,当服务器中的任务较少时,电源和核心速度会降低,从而可以减少能耗,而不会显着降低性能。建立了具有依赖于工作负载的动态电源管理的多核服务器处理器的排队模型。提出了几种速度方案,并证明了对于相同的平均功耗,可以设计具有与工作负载相关的动态电源管理的多核服务器处理器,从而使其平均任务响应时间比恒定速度的多核服务器处理器短。 (即,没有依赖于工作负载的动态电源管理)。结果表明,在给定的特定应用环境和平均功耗的情况下,存在一种最佳速度方案,该方案可使平均任务响应时间最小化。对于两速方案,提出并解决了给定电源和功耗模型的两速方案的优化设计问题。应当指出,可以以与受功耗约束的性能改善(即,平均任务响应时间降低)相似的方式研究受性能约束的功耗降低。就我们所知,这是有关工作负载相关的动态电源管理的分析研究的第一项工作。

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