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A new evaluation model on green low carbon energy network for cloud computing— Quality of green(QoG)

机译:用于云计算的绿色低碳能源网络新评估模型—绿色质量(QoG)

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The topic of the network energy consumption is going to be the key factor which can restrict the development of the whole environment of the network system under the significantly growth of the network devices and the sensor terminals. For in a variety of methods based on a single point of network equipment, energy-saving mechanisms, and new routing energy-saving strategies, how to make an evaluation of the green network is an urgent problem. Some traditional methods tend to be confined to a single property of the network system or focus on the overall energy consumption of the network system, either too one-sided or too general, which makes it hard to find the main crux of the high energy consumption of the network, the impact of quality of Green(QoG), as well as to make a better green network environment. The core meaning of the green network is simple indeed: to obtain the minimum of the network energy consumption under the basic promise of QoS. In this paper, a new evaluation model on green low-carbon energy network is proposed to solve such problem mentioned before. This new model is name by quality of green(QoG). In this paper, we use network measuring which be divided by three topics - performance, traffic and topology of the network to map the relationship between the QoS and the green evaluation and also to quantify green energy consumption index. The green energy consumption indexes are divided into eight indexes based on performance; two indexes based on the traffic and four indexes on the topology. Then we quantify four green fuzzy indexes as: Fluctuation F, vulnerability V, persistence P, recoverability R based on the statistical analysis. After that, we determine for the membership of the 14 green energy consumption indexes to the 4 green fuzzy indexes. Finally we build the evaluation matrix by fuzzy mathematics comprehensive evaluation method to get the standardized computing framework of QoG—quality of green. At last, we define a new concept- as network exergy: the useful energy consumption during a conversion processs from a current network QoS conditions A to another QoS conditons B. After it reaches B, the network exergy is zero. The practical significance of this network exergy is that you must define the initial QoS and final QoS at the same time.
机译:在网络设备和传感器终端的显着增长下,网络能耗这一主题将成为制约网络系统整个环境发展的关键因素。对于基于单点网络设备,节能机制和新的路由节能策略的多种方法,如何对绿色网络进行评估是当务之急。一些传统方法倾向于局限在网络系统的单一属性中,或者侧重于网络系统的整体能耗,要么太单方面,要么过于笼统,这使得很难找到高能耗的主要症结所在。网络质量,绿色质量(QoG)的影响以及打造更好的绿色网络环境。绿色网络的核心含义确实很简单:在QoS的基本承诺下获得最低的网络能耗。针对上述问题,本文提出了一种新的绿色低碳能源网络评价模型。这个新模型以绿色(QoG)的质量命名。在本文中,我们使用网络测量将网络性能,流量和拓扑划分为三个主题,以绘制QoS与绿色评估之间的关系,并量化绿色能耗指数。根据性能将绿色能源消耗指标分为八个指标。基于流量的两个索引和拓扑上的四个索引。然后,基于统计分析,将四个绿色模糊指标量化为:波动F,脆弱性V,持久性P,可恢复性R。之后,我们将14个绿色能耗指标的成员确定为4个绿色模糊指标。最后,通过模糊数学综合评价方法建立评价矩阵,得到了QoG的标准化计算框架-绿色质量。最后,我们定义了一个新概念-网络能级:从当前网络QoS条件A到另一个QoS条件B的转换过程中的有用能量消耗。达到B后,网络能级为零。这种网络利用的实际意义在于,您必须同时定义初始QoS和最终QoS。

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