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Integrating energy efficiency-based prognostic approaches into energy management systems of base stations

机译:将基于能源效率的预后方法集成到基站的能源管理系统中

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Telecommunication industry is predicted to have an important role in total energy consumption of industry area. Thus, the increasing energy cost in operational costs demands effective tools to identify energy efficiency indicators (EEIs) and predict the evolution of energy efficiency performance (EEP). The energy efficiency (EE) improvement of any segment in the communication networks (CNs) can help lower energy cost and protect environment of network operators. The spread of users in overall areas results in the increasing number of base stations (BSs), which are main components of CN. As a supporting function of management tools, predicting EEP is a requested function of energy management system (EMS) by network operators. In this context, this paper presents the demand of EMS for integrating prediction of EEP deterioration. In addition, the energy efficiency function block to modelling the BSs with numerous of indicators is proposed. By prognostic approaches (PA) and suitable aggregation methods, network operators can handle their situations. An EEP degradation demonstration has been conducted by using PA and EE model of BS. An additional benefit can also be seen as increasing reliability of energy backup units in various scenarios of power source disturbance. Finally, the requirement of sensor networks in acquiring technical data of BS deterioration states is mentioned.
机译:预计电信产业在工业区总能耗中具有重要作用。因此,运行成本的增加的能源成本要求有效的工具来识别能效指标(EEIS)并预测能效性能的演变(EEP)。通信网络中的任何段的能效(EE)改进(CNS)可以帮助降低能量成本和保护网络运营商环境。在整个领域的用户传播导致越来越多的基站(BSS),这是CN的主要组成部分。作为管理工具的支持功能,预测EEP是网络运营商能源管理系统(EMS)的要求功能。在这种情况下,本文提出了EMS对EEP劣化预测的需求。另外,提出了对具有许多指示器建模BS的能效功能块。通过预后方法(PA)和合适的聚合方法,网络运营商可以处理其情况。通过使用BS的PA和EE模型进行了EEP劣化演示。还可以看到额外的好处是在电源干扰各种场景中的能量备份单元的可靠性增加。最后,提到了在获取BS劣化状态的技术数据中的传感器网络的要求。

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