ESACR:面向绿色云环境的云资源节能途径

S. Saxena, Mohammad Zubair Khan, R. Singh
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摘要

由于其服务对用户的广泛可用性,云是最受认可的计算环境。云数据中心采用虚拟化资源,技术上称为虚拟机(vm),以实现高效的业务计算。但是,通过云数据中心(cdc)的功耗被强调为导致云计算服务质量下降的主要问题之一。因为CDC中大量的电子资源,如处理节点、服务器、磁盘存储、网络节点(即交换机/路由器)等,在计算过程中消耗了大量的能量。为了冷却数据中心,冷却设备也会消耗能源,因为它会在周围产生大量的热量(二氧化碳)。由于高能耗,云提供商支付了高昂的能源计算成本,同时也向大气中排放了更多的碳。减少能源消耗和二氧化碳排放是云计算向绿色计算转变的主要挑战。因此,我们在本文中的主要重点是开发一种基于资源管理的云计算节能方法。由于用户对服务的要求不同,计算过程中对资源的需求也不同。用户的请求量在一天的24小时内并不总是相同的。有一段时间它是非常低的,在那段时间,许多资源变得闲置,消耗一些固定数量的能量,这是能源的浪费。按照这种方式,拟议的ESACR方法首先根据用户在任何实例上对服务的请求定义活动(必需的)和空闲(非必需的)资源;之后,将空闲资源转换为节能模式(即关闭),除非不需要为用户的请求服务。因此,如果在任何情况下将所有不可用的资源定义为OFF模式,则节省的能源将增加。
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ESACR: An Energy Saving Approach from Cloud Resources for Green Cloud Environment
Cloud is most recognized environment of computing due to the widely availability of its services to the users. Cloud data centers have adopted virtualization of resources technically known as virtual machines (VMs) for the effective and efficient computation of services. But power consumption through the cloud data centers (CDCs) highlighted as one of the major issues responsible to reduce the quality of services of Cloud computing. Because a large number of electronic resources like processing nodes, servers, disk storage, and networking nodes (i.e. switch/routers) in CDC consume a high degree of energy during computation. Energy is also consumed by cooling plants to cool the data centers as it produces a huge amount of heat (CO2) surrounding it. Due to the high energy consumption, the cloud providers pay a high cost of energy computation and it also contributes more carbon emissions to the atmosphere. Reducing energy consumption and CO2 emission is a major challenge in turning the computation from cloud computing to green computing. So, our main focus in this paper is to develop an energy-saving approach for cloud computing based on resource management. Due to variations in the request of services by the users, the demand for resources also varies during the computation. The amount of users’ request are not always same for all 24 hours in a day. Some period of time it is very low and at that period of time, many resources become idle and consume some fixed amount of energy that is a wastage of energy. In this manner, the proposed ESACR approach first define active (required) and idle (non-required) resources as per the users’ request for services at any instance; after that, it converts the idle resources into an energy-saving mode (i.e., turn OFF) unless it is not required for the service of users’ request. So that the saving of energy will increased, if at any instance all non-useable resources is define in OFF mode.
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