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Energy-Efficient Server Selection Algorithm Based on the Extended Simple Power Consumption Model

机译:基于扩展简单功耗模型的节能服务器选择算法

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In information systems, a client first selects a server in a cluster of servers and issues a request to the server. The request is performed as a process in the server. In this paper, we consider a computation process which mainly consumes CPU resource. Cooling devices like fans consume the electric power in addition to CPU and other devices in a server. The rotation speed of a fan is changed in servers according to the temperature of a server. Thus, the total power consumption of a server depends on not only computational devices like CPU but also cooling devices. The extended simple power consumption (ESPC) model of a server is proposed to perform processes. In this paper, the ESPC model is improved to consider a server with a multi-core CPU. It is critical to discuss how to select a server for each request from clients in order to not only achieve performance objectives but also reduce the total power consumption of a system based on the ESPC model. The improved power consumption laxity based (IPCLB) algorithm for selecting a server is proposed in this paper, which consumes the minimum power to perform the process. We evaluate the ESPC model and the IPCLB algorithm in terms of the power consumption and elapse time in this paper.
机译:在信息系统中,客户端首先在服务器集群中选择服务器,并向服务器发出请求。请求作为服务器中的进程执行。在本文中,我们考虑一个主要消耗CPU资源的计算过程。除CPU和服务器中的其他设备外,风扇等冷却装置也消耗了电力。根据服务器的温度,在服务器中改变风扇的旋转速度。因此,服务器的总功耗不仅取决于CPU等计算设备,还取决于CPU,还取决于冷却设备。提出了服务器的扩展简单功耗(ESPC)模型来执行进程。在本文中,改进了ESPC模型以考虑具有多核CPU的服务器。讨论如何为客户选择每个请求的服务器来说是至关重要的,以便不仅实现性能目标,而且还减少了基于ESPC模型的系统的总功耗。本文提出了用于选择服务器的改进的基于功耗LAXITY(IPCLB)算法,其消耗了执行该过程的最小功率。我们在本文的功耗和经过时间方面评估ESPC模型和IPCLB算法。

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