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首页> 外文期刊>Journal of supercomputing >Optimal configuration of a multicore server processor for managing the power and performance tradeoff
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Optimal configuration of a multicore server processor for managing the power and performance tradeoff

机译:用于管理电源和性能折衷的多核服务器处理器的最佳配置

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We consider the problem of power and performance management for a multicore server processor in a cloud computing environment by optimal server configuration for a specific application environment. The motivation of the study is that such optimal virtual server configuration is important for dynamic resource provision in a cloud computing environment to optimize the power and performance tradeoff for certain specific type of applications. Our strategy is to treat a multicore server processor as an M/M/m queueing system with multiple servers. The system performance measures are the average task response time and the average power consumption. Two core speed and power consumption models are considered, namely, the idle-speed model and the constant-speed model. Our investigation includes justification of centralized management of computing resources, server speed constrained optimization, power constrained performance optimization, and performance constrained power optimization. Our main results are (1) cores should be managed in a centralized way to provide the highest performance without consumption of more energy in cloud computing; (2) for a given server speed constraint, fewer high-speed cores perform better than more low-speed cores; furthermore, there is an optimal selection of server size and core speed which can be obtained analytically, such that a multicore server processor consumes the minimum power; (3) for a given power consumption constraint, there is an optimal selection of server size and core speed which can be obtained numerically, such that the best performance can be achieved, i.e., the average task response time is minimized; (4) for a given task response time constraint, there is an optimal selection of server size and core speed which can be obtained numerically, such that minimum power consumption can be achieved while the given performance guarantee is maintained.
机译:通过针对特定应用程序环境的最佳服务器配置,我们考虑了云计算环境中多核服务器处理器的电源和性能管理问题。该研究的动机是,这种最佳虚拟服务器配置对于在云计算环境中动态提供资源以优化某些特定类型的应用程序的功能和性能折衷至关重要。我们的策略是将多核服务器处理器视为具有多台服务器的M / M / m排队系统。系统性能指标是平均任务响应时间和平均功耗。考虑了两个核心速度模型和功耗模型,分别是怠速模型和恒速模型。我们的调查包括对计算资源进行集中管理的理由,服务器速度受限的优化,功耗受限的性能优化以及性能受限的功耗优化。我们的主要结果是:(1)应该以集中方式管理内核,以提供最高的性能,而不会在云计算中消耗更多的精力; (2)对于给定的服务器速度约束,较少的高速核心性能要优于更多的低速核心;此外,可以通过分析获得对服务器大小和核心速度的最佳选择,从而使多核服务器处理器消耗最低的功耗; (3)对于给定的功耗约束,可以通过数值获得对服务器大小和核心速度的最佳选择,从而可以实现最佳性能,即,平均任务响应时间最小。 (4)对于给定的任务响应时间约束,可以通过数字获得对服务器大小和核心速度的最佳选择,从而可以在保持给定性能保证的同时实现最低功耗。

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