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Model of Smart Electricity Meter

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
PL
Model inteligentnego licznika energii elektrycznej
Języki publikacji
EN
Abstrakty
EN
This paper presents the concepts of smart electricity grids with particular emphasis on aspects of the metering of customers through the implementation of smart meters. On the basis of the literature study, an analysis of the scope of the functionality of smart meters was performed. The paper presents a model of the smart electricity meter developed by the authors, which has the possibility of working with the energy management system.
PL
W artykule przedstawiono koncepcje inteligentnych sieci elektroenergetycznych ze szczególnym uwzględnieniem aspektu opomiarowania odbiorców poprzez wdrożenie inteligentnych liczników. Na bazie studium literatury przeprowadzono analizę obszaru funkcjonalności inteligentnych liczników. W artykule zaprezentowano opracowany przez autorów model inteligentnego licznika energii elektrycznej posiadającego możliwość współpracy z systemem zarządzania energią.
Rocznik
Strony
239--242
Opis fizyczny
Biblioghr. 23 poz., rys.
Twórcy
  • Lodz University of Technology, Department of Electrical Apparatus, Stefanowskiego 18/22 Str, 90-924 Łódź, Poland
autor
  • Lodz University of Technology, Department of Electrical Apparatus, Stefanowskiego 18/22 Str, 90-924 Łódź, Poland
autor
  • Lodz University of Technology, Department of Electrical Apparatus, Stefanowskiego 18/22 Str, 90-924 Łódź, Poland
Bibliografia
  • [1] The European Technology Platform SmartGrids, http://www.smartgrids.eu/.
  • [2] Gungor, V.C. ; Sahin, D. ; Kocak, T. ; Ergut, S. ; Buccella, C. ; Cecati, C. ; Hancke, G.P. Smart Grid Technologies: Communication Technologies and Standards, Industrial Informatics, IEEE Transactions on, 10.1109/TII.2011.2166794
  • [3] Wasiak I .: The Concept of Intelligent Power Microsystems, Przegląd Elektrotechniczny, (2011), nr 6, 35-41.
  • [4] Bilewicz K., Smart Metering. Intelligent Metering System, Polish Scientific Publishers PWN, Warsaw 2012
  • [5] IBM Global Energy & Utilities, Global Trends in Smart Metering, 2010 IBM Corporation
  • [6] Borowik L., Kurkowski M., Energy Control Systems in Lighting Installations, Rynek Energii 2/2013
  • [7] Kubiak Z., Urbaniak A., Intelligent Metering System – Development of the Standard, Exemplary Solutions., Rynek Energii 1/2013
  • [8] Bilewicz K., Digital Security of Advanced Metering Infrastructure, Rynek Energii nr 3/2012
  • [9] The position of the President of the ERO on the necessary requirements to be implemented by the Distribution Network Operators (DNO) smart metering and billing systems, including the objective function and the proposed mechanisms of support for the postulated market model from 31 May 2011.
  • [10] The concept of metering market model in Poland, with particular emphasis on requirements for the Operator of Measurement Information from 9 May 2012.
  • [11] The position of the President of the ERO on detailed regulatory rules concerning stimulation and monitoring of the implementation of the AMI from 11 Jan. 2013.
  • [12] The position of the President of the ERO on the necessary requirements concerning the quality of services using the AMI infrastructure as well as interchangeability and interoperability frameworks of Smart Grid components cooperating with each other and home network elements cooperating with the Smart Grid from 10 July 2013.
  • [13] Borkowski P., Pawłowski M.: The Potential of Energy Savings in Municipal Recipient. Rynek Energii 1/2012, 101-106.
  • [14] Centolella P., The integration of Price Responsive Demand into Regional Transmission Organization (RTO) wholesale power markets and system operations, Energy 35, 2010, 1568–1574.
  • [15] Darby, S., Smart metering: what potential for householder engagement?, Building Research & Information 38 (5), 2010, 442–457.
  • [16] Szkutnik J., Woytowicz J., The Efficiency System In The Distribution Of Electrical Energy in Proc. 18th Intern. Conf. on Electricity Distribution Turin, 2005..
  • [17] Shekara S., Reddy Depuru S., Wang L., Devabhaktuni V., Smart meters for power grid: Challenges, issues, advantages and status, Renewable and Sustainable Energy Reviews 15, 2010, 2736– 2742.
  • [18] Vassileva, I. , Wallin, F., Dahlquist E., Understanding energy consumption behaviour for future demand response strategy development, Energy 46, 2012, 94–100.
  • [19] Laicane I., Blumberga A., Rosa M., Blumberga D., Bariss U., The Effect of the Flows of Information on Residential Electricity Consumption: Feasibility Study of Smart Metering Pilot in Latvia., in Proc. Smart SysTech., 2013, 1-9.
  • [20] Balsam B., Smart Meter of Electrical Energy with the Use of National Instruments Modules, BSc Thesis, Lodz University of Technology, Department of Electrical Apparatus, 2014.
  • [21] Pawłowski M., Borkowski P.: Electrical Energy Management System in Double Unpredictability Objects. Przegląd Elektrotechniczny (2014), nr 9, 191-196.
  • [22] Pawłowski M., Bor kowski P.: Electric Energy Management System in a Building with Energy Storage. Przegląd Elektrotechniczny (2012), nr 12b, 272-274.
  • [23] Badowski W., Model of Demand Side Management with the Use of CompactRIO Controller, , BSc Thesis, Lodz University of Technology, Department of Electrical Apparatus, 2014.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ae46d534-17ed-4b47-b710-755a9bef480b
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