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Intelligent energy management based on SCADA system in a real Microgrid for smart building applications

机译:基于SCADA系统在智能建筑应用中的SCADA系统的智能能源管理

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Energy management is one of the main challenges in Microgrids (MGs) applied to Smart Buildings (SBs). Hence, more studies are indispensable to consider both modeling and operating aspects to utilize the upcoming results of the system for the different applications. This paper presents a novel energy management architecture model based on complete Supervisory Control and Data Acquisition (SCADA) system duties in an educational building with an MG Laboratory (Lab) testbed, which is named LAMBDA at the Electrical and Energy Engineering Department of the Sapienza University of Rome. The LAMBDA MG Lab simulates in a small scale a SB and is connected with the DIAEE electrical network. LAMBDA MG is composed of a Photovoltaic generator (PV), a Battery Energy Storage System (BESS), a smart switch -board (SW), and different classified loads (critical, essential, and normal) some of which are manageable and controllable (lighting, air conditioning, smart plugs operating into the LAB). The aim of the LAMBDA implementation is making the DIAEE smart for energy saving purposes. In the LAMBDA Lab, the communication architecture consists in a complex of master/slave units and actuators carried out by two main international standards, Modbus (industrial serial standard for electrical and technical monitoring systems) and Konnex (an open standard for commercial and domestic building automation). Making the electrical department smart causes to reduce the required power from the main grid. Hence, to achieve the aims, results have been investigated in two modes. Initially, the real-time mode based on the SCADA system, which reveals real daily power consumption and production of different sources and loads. Next, the simulation part is assigned to shows the behavior of the main grid, loads and BESS charging and discharging based on energy management system. Finally, the proposed model has been examined in different scenarios and evaluated from the economic aspect.(c) 2021 The Author(s). Published by Elsevier Ltd. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
机译:能源管理是应用于智能建筑物(SBS)的微电网(MGS)中的主要挑战之一。因此,更多的研究是不可或缺的,以考虑建模和操作方面,以利用系统的即将到来的不同应用程序的结果。本文提出了一种新的能源管理架构模型,基于完整的监督控制和数据采集(SCADA)系统职责,在一个带MG实验室(实验室)试验台的教育建筑中,该职业职责(实验室)试验台被称为Lambda,在Sapienza大学的电气和能源工程系中被命名为Lambda罗马。 Lambda Mg Lab以小规模模拟SB,并与迭绪电路连接。 Lambda Mg由光伏发电机(PV),电池储能系统(BESS),智能开关 - 板(SW)和不同的分类负载(批判性,必要和正常)组成,其中一些可管理和可控(照明,空调,智能插头运行到实验室中)。 Lambda实施的目的正在使迭绪态度智能,以便节省节能目的。在Lambda实验室中,通信架构包括由两种主要国际标准,Modbus(电气和技术监控系统的工业系列标准)和Konnex(商业和国内建筑的开放标准)进行的大师/奴隶单元和执行器组成了一系列复合体自动化)。使电气部门智能原因降低主电网的所需电量。因此,为了实现目标,已经在两种模式下调查了结果。最初,基于SCADA系统的实时模式,揭示了实际的日常功耗和不同来源和负载的生产。接下来,分配模拟部分以显示基于能量管理系统的主电网,负载和BESS充电和放电的行为。最后,已经在不同的情景中进行了拟议的模型,并从经济方面进行了评估。(c)2021提交人。由elsevier有限公司发布这是CC下的开放式访问文章(http://creativecommomons.org/licenses/by/4.0/)。

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