COMPREHENSIVE METHOD OF ENERGY-EFFICIENT WORKLOAD PROCESSING IN THE INFORMATION AND COMMUNICATION NETWORK

Nataliia Prokopets, L. Globa
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Abstract

Background. Peculiarities of the workload in a modern information and communication network (ICN) determine specific requirements for energy efficiency, performance and availability of its processing system. Existing approaches to increase energy efficiency and performance of workload processing do not take into account the possibility of dynamic changes in ICN workload arrival rate and individual energy consumption characteristics of computing nodes of the system. Objective. The purpose of the paper is to increase the energy efficiency and performance of ICN workload processing while meeting the requirements for the availability of the processing system, taking into account dynamic changes in the input workload arrival rate and the individual characteristics of the computing nodes’ energy consumption. Methods. A mathematical model of the workload processing system was built using the queueing theory methods, and an ontological model of this system was built using intelligent data analysis methods, which made it possible to quantitatively and qualitatively describe the complex relationships between system parameters and workload processing efficiency indicators. On the basis of the built models, a comprehensive method of energy-efficient workload processing was proposed, which differs from the known ones by the use of individual energy consumption models of computing nodes, combining the advantages of horizontal scaling and energy-efficient scheduling taking into account dynamic changes in workload arrival rate. Results. The efficiency of ICN workload processing is increased by 15.722% according to the efficiency criterion, which includes energy efficiency and performance indicators, compared to the known energy-efficient Backfill approach while meeting the requirements for the availability of the processing system. Conclusions. The energy efficiency, performance and availability of the ICN workload processing system can be improved by combining horizontal scaling and energy-efficient scheduling approaches using individual energy consumption models of computing nodes and taking into account dynamic changes in the input workload arrival rate.
信息通信网络中高效负荷处理的综合方法
背景。现代信息通信网(ICN)工作量的特殊性决定了其处理系统对能源效率、性能和可用性的具体要求。现有的提高工作负载处理能效和性能的方法没有考虑到ICN工作负载到达率和系统计算节点单个能耗特征动态变化的可能性。目标。本文的目的是在满足处理系统可用性要求的同时,考虑到输入工作负载到达率的动态变化和计算节点能耗的个体特征,提高ICN工作负载处理的能效和性能。方法。利用排队论方法建立了工作负载处理系统的数学模型,利用智能数据分析方法建立了系统的本体模型,从而可以定量和定性地描述系统参数与工作负载处理效率指标之间的复杂关系。在构建的模型基础上,结合水平扩展和考虑工作负载到达率动态变化的节能调度优势,提出了一种不同于以往使用单个计算节点能耗模型的综合节能工作负载处理方法。结果。在满足处理系统可用性要求的前提下,根据效率标准(包括能源效率和性能指标),ICN工作量处理效率比已知的节能回填方法提高15.722%。结论。利用计算节点的个体能耗模型,并考虑输入工作负载到达率的动态变化,结合水平扩展和节能调度方法,可以提高ICN工作负载处理系统的能效、性能和可用性。
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