Reliability enhancement through optimal placement of photovoltaic power plant and battery energy storage in distribution system

Authors

  • K.Džodić Department of Power Systems School of Electrical Engineering, University of Belgrade Belgrade, 11000 (Serbia) Author
  • J. Krstivojević Department of Power Systems School of Electrical Engineering, University of Belgrade Belgrade, 11000 (Serbia) Author
  • O. Abarrategi Department of Electrical Engineering University of the Basque Country (UPV/EHU) Plaza Ing. Torres Quevedo 1, 48013 Bilbao (Spain) Author
  • P. Eguia Department of Electrical Engineering University of the Basque Country (UPV/EHU) Plaza Ing. Torres Quevedo 1, 48013 Bilbao (Spain) Author

DOI:

https://doi.org/10.52152/3968

Keywords:

Distribution system, PV plant, battery energy storage, MILP, Monte Carlo simulation

Abstract

Integration of distributed generation (DG) units could reduce the duration of power outage for a certain number of consumers in distribution networks after a network failure. Prerequisites are that i) the DG unit has the technical characteristics that enable its islanded operation, the degree of automation of the distribution network allows it and ii) it is in accordance with the current technical regulations of the country. The extent to which integration of distributed sources can improve reliability depends on the DG size, type, and the point of common coupling. Besides, an energy storage system could be installed along with DG unit, so that energy supply availability during fault periods can be secured. This paper proposes an algorithm based on mixed-integer linear programming (MILP) approach for optimal placement of photovoltaic power plant (PVPP) and battery energy storage system (BESS). The optimal location is determined so that expected non supplied energy is minimized. The uncertainties in the estimation of production of PVPP, load and BESS state of charge (SoC) were taken into account by Monte Carlo simulations (MCS).

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Published

2024-08-02

Issue

Section

Articles