Optimal Power Dispatch of Small-Scale Standalone Microgrid Located in Colombian Territory

An optimal power dispatch of a small-scale standalone microgrid for remote area power supply in Colombian territory is proposed in this paper. The power dispatch is generated by an energy management system based on a mixed-integer linear programming, which minimizes the cost of operating the microgr...

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Main Authors: Andrés Henao-Muñoz, Andrés Saavedra-Montes, Carlos Ramos-Paja
Format: Article
Language:English
Published: MDPI AG 2018-07-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/11/7/1877
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spelling doaj-40899fc8e7ad44169330fa5b058105212020-11-24T22:18:08ZengMDPI AGEnergies1996-10732018-07-01117187710.3390/en11071877en11071877Optimal Power Dispatch of Small-Scale Standalone Microgrid Located in Colombian TerritoryAndrés Henao-Muñoz0Andrés Saavedra-Montes1Carlos Ramos-Paja2Departamento de Energía Eléctrica y Automática, Universidad Nacional de Colombia, Medellín 050041, ColombiaDepartamento de Energía Eléctrica y Automática, Universidad Nacional de Colombia, Medellín 050041, ColombiaDepartamento de Energía Eléctrica y Automática, Universidad Nacional de Colombia, Medellín 050041, ColombiaAn optimal power dispatch of a small-scale standalone microgrid for remote area power supply in Colombian territory is proposed in this paper. The power dispatch is generated by an energy management system based on a mixed-integer linear programming, which minimizes the cost of operating the microgrid while fulfilling the technical constraints of its elements. The energy management system solves an optimization problem using the algebraic representation of the generators and its constraints. Basic steady-state models of the generators are selected to solve the optimization problem. The small-scale microgrid is considered for a remote area power supply in Taroa, a small settlement in La Guajira, Colombia. The microgrid is composed of photovoltaic modules, a wind generator, a diesel generator, a battery bank, and residential loads. To validate the solution, the elements of the microgrids are parameterized with information from commercial equipment. Moreover, the power dispatch obtained with the proposed solution is compared with a power dispatch generated by a heuristic algorithm, which has been previously used to dispatch power in a small-scale standalone microgrid. Results show that the cost of operating the microgrid is minimized using the proposed optimization approach: a reduction of the operating cost equal to 25.5% of the cost imposed by the heuristic algorithm is obtained.http://www.mdpi.com/1996-1073/11/7/1877energy management systemsmall-scale standalone microgridnon-interconnected areasoptimizationremote area power supply
collection DOAJ
language English
format Article
sources DOAJ
author Andrés Henao-Muñoz
Andrés Saavedra-Montes
Carlos Ramos-Paja
spellingShingle Andrés Henao-Muñoz
Andrés Saavedra-Montes
Carlos Ramos-Paja
Optimal Power Dispatch of Small-Scale Standalone Microgrid Located in Colombian Territory
Energies
energy management system
small-scale standalone microgrid
non-interconnected areas
optimization
remote area power supply
author_facet Andrés Henao-Muñoz
Andrés Saavedra-Montes
Carlos Ramos-Paja
author_sort Andrés Henao-Muñoz
title Optimal Power Dispatch of Small-Scale Standalone Microgrid Located in Colombian Territory
title_short Optimal Power Dispatch of Small-Scale Standalone Microgrid Located in Colombian Territory
title_full Optimal Power Dispatch of Small-Scale Standalone Microgrid Located in Colombian Territory
title_fullStr Optimal Power Dispatch of Small-Scale Standalone Microgrid Located in Colombian Territory
title_full_unstemmed Optimal Power Dispatch of Small-Scale Standalone Microgrid Located in Colombian Territory
title_sort optimal power dispatch of small-scale standalone microgrid located in colombian territory
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2018-07-01
description An optimal power dispatch of a small-scale standalone microgrid for remote area power supply in Colombian territory is proposed in this paper. The power dispatch is generated by an energy management system based on a mixed-integer linear programming, which minimizes the cost of operating the microgrid while fulfilling the technical constraints of its elements. The energy management system solves an optimization problem using the algebraic representation of the generators and its constraints. Basic steady-state models of the generators are selected to solve the optimization problem. The small-scale microgrid is considered for a remote area power supply in Taroa, a small settlement in La Guajira, Colombia. The microgrid is composed of photovoltaic modules, a wind generator, a diesel generator, a battery bank, and residential loads. To validate the solution, the elements of the microgrids are parameterized with information from commercial equipment. Moreover, the power dispatch obtained with the proposed solution is compared with a power dispatch generated by a heuristic algorithm, which has been previously used to dispatch power in a small-scale standalone microgrid. Results show that the cost of operating the microgrid is minimized using the proposed optimization approach: a reduction of the operating cost equal to 25.5% of the cost imposed by the heuristic algorithm is obtained.
topic energy management system
small-scale standalone microgrid
non-interconnected areas
optimization
remote area power supply
url http://www.mdpi.com/1996-1073/11/7/1877
work_keys_str_mv AT andreshenaomunoz optimalpowerdispatchofsmallscalestandalonemicrogridlocatedincolombianterritory
AT andressaavedramontes optimalpowerdispatchofsmallscalestandalonemicrogridlocatedincolombianterritory
AT carlosramospaja optimalpowerdispatchofsmallscalestandalonemicrogridlocatedincolombianterritory
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