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SIMULATION OF DIRECT CURRENT MICROGRID AND STUDY OF POWER AND BATTERY CHARGE/DISCHARGE MANAGEMENT

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NOVEMBER 2017   -  Volume: 92 -  Pages: 673-679

DOI:

https://doi.org/10.6036/8475

Authors:

LUIS HERNANDEZ CALLEJO - JORGE MIREZ TARRILLO - MANFRED HORN - LUIS-MIGUEL BONILLA MORTE

Disciplines:

  • Electrical technology and engineering (OTRAS (ESPECIFICAR) )
  • Electrical technology and engineering (APLICACIONES ELECTRICAS )

Downloads:   460

Cites in Web of Science:  12

How to cite this paper:  
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Received Date :   7 June 2017

Reviewing Date :   8 June 2017

Accepted Date :   1 September 2017


Key words:
Battery, energy management, photovoltaic energy, wind energy, microgrid, Batería, gestión de energía, energía fotovoltaica, energía eólica, microred
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

This work presents a mathematical model of a DC microgrid supplied with photovoltaic and wind power generation, storage (battery bank) and a conventional power grid. The microgrid has electrical loads domestic and commercial profiles. This model is utilized to propose, implement and analyze a new voltage management in this theorical microgrid; for this, microgrid is simulated and some of its elements have no limits on some variables of work, which is used to determine the maximum values during simulations; therefore, it serves to assessments of the behavior of the system parameters: voltage, current, power and energy according to the values of temperature, solar radiation, wind speed, altitude and information on the behavior of the electric loads on the place where DC microgrid will be installed. Too, power management has been implemented. Three scenarios that represent the reality of this microgrid in normal operation are presented with all possible operating conditions and has been simulated and discussed with the purpose of defining working sub-voltages in DC microgrid nominal voltage. The importance of the present research is the possibility to evaluate the implementation of microgrids using the behavior of environmental variables, in order to determine the size the necessary equipment and to determine the management of power and voltage of the proposed microgrid. Too, is the possibility of evaluating the implementation of microgrids in places already existing or to be constructed, using patterns of consumption and behavior of environmental variables with the purpose of dimensioning the equipment and to evaluate the technique of power and voltage management proposal.

Keywords: Battery, energy management, photovoltaic energy, wind energy, microgrid.

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