Locational Marginal Pricing and Daily Operation Scheduling of a Hydro-Thermal-Wind-Photovoltaic Power System Using BESS to Reduce Wind Power Curtailment

The Daily Operation Scheduling (DOS) gets new challenges while a large-scale of renewable energy is inserted into the power system. In addition to the operation, the power variability of these sources also causes a problem in the hourly pricing, represented here by Locational Marginal Pricing (LMP)....

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Main Authors: Roberto Felipe Andrade Menezes, Guilherme Delgado Soriano, Ronaldo Ribeiro Barbosa de Aquino
Format: Article
Language:English
Published: MDPI AG 2021-03-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/14/5/1441
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spelling doaj-8a7d69c89dab4e6db6baee70632f68182021-03-07T00:01:09ZengMDPI AGEnergies1996-10732021-03-01141441144110.3390/en14051441Locational Marginal Pricing and Daily Operation Scheduling of a Hydro-Thermal-Wind-Photovoltaic Power System Using BESS to Reduce Wind Power CurtailmentRoberto Felipe Andrade Menezes0Guilherme Delgado Soriano1Ronaldo Ribeiro Barbosa de Aquino2Department of Electrical Engineering, Federal University of Pernambuco (UFPE), Recife 50740-533, BrazilDepartment of Electrical Engineering, Federal University of Pernambuco (UFPE), Recife 50740-533, BrazilDepartment of Electrical Engineering, Federal University of Pernambuco (UFPE), Recife 50740-533, BrazilThe Daily Operation Scheduling (DOS) gets new challenges while a large-scale of renewable energy is inserted into the power system. In addition to the operation, the power variability of these sources also causes a problem in the hourly pricing, represented here by Locational Marginal Pricing (LMP). Therefore, new applications, such as energy shifting, offer greater efficiency to the system, minimizing the negative effects caused by wind power curtailment (WPC). This paper shows the LMP formation in the DOS of the hydro-thermal-wind-photovoltaic power system with a battery energy storage system and the reduction of WPC. Here, the wind and photovoltaic power plants are designed to be dispatched, not mandatory, to be able to cut the generation, and the insertion of Distributed Generation is considered. Moreover, to solve the DOS problem, the interior-point method is used. Additionally, the DC optimal power flow, used to represent the DOS in addition to the representation of the electric grid, is modeled with an iterative approach. The analysis is made in an IEEE 24-bus system with data from Brazil. Lastly, the results of simulations are presented and discussed, demonstrating the effectiveness of the optimization to reduce the WPC, the total operation cost, and to provide the LMP curve.https://www.mdpi.com/1996-1073/14/5/1441battery energy storage systemshydro-thermal-wind-photovoltaic power systemlinear programmingLocational Marginal Pricingwind power curtailment
collection DOAJ
language English
format Article
sources DOAJ
author Roberto Felipe Andrade Menezes
Guilherme Delgado Soriano
Ronaldo Ribeiro Barbosa de Aquino
spellingShingle Roberto Felipe Andrade Menezes
Guilherme Delgado Soriano
Ronaldo Ribeiro Barbosa de Aquino
Locational Marginal Pricing and Daily Operation Scheduling of a Hydro-Thermal-Wind-Photovoltaic Power System Using BESS to Reduce Wind Power Curtailment
Energies
battery energy storage systems
hydro-thermal-wind-photovoltaic power system
linear programming
Locational Marginal Pricing
wind power curtailment
author_facet Roberto Felipe Andrade Menezes
Guilherme Delgado Soriano
Ronaldo Ribeiro Barbosa de Aquino
author_sort Roberto Felipe Andrade Menezes
title Locational Marginal Pricing and Daily Operation Scheduling of a Hydro-Thermal-Wind-Photovoltaic Power System Using BESS to Reduce Wind Power Curtailment
title_short Locational Marginal Pricing and Daily Operation Scheduling of a Hydro-Thermal-Wind-Photovoltaic Power System Using BESS to Reduce Wind Power Curtailment
title_full Locational Marginal Pricing and Daily Operation Scheduling of a Hydro-Thermal-Wind-Photovoltaic Power System Using BESS to Reduce Wind Power Curtailment
title_fullStr Locational Marginal Pricing and Daily Operation Scheduling of a Hydro-Thermal-Wind-Photovoltaic Power System Using BESS to Reduce Wind Power Curtailment
title_full_unstemmed Locational Marginal Pricing and Daily Operation Scheduling of a Hydro-Thermal-Wind-Photovoltaic Power System Using BESS to Reduce Wind Power Curtailment
title_sort locational marginal pricing and daily operation scheduling of a hydro-thermal-wind-photovoltaic power system using bess to reduce wind power curtailment
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2021-03-01
description The Daily Operation Scheduling (DOS) gets new challenges while a large-scale of renewable energy is inserted into the power system. In addition to the operation, the power variability of these sources also causes a problem in the hourly pricing, represented here by Locational Marginal Pricing (LMP). Therefore, new applications, such as energy shifting, offer greater efficiency to the system, minimizing the negative effects caused by wind power curtailment (WPC). This paper shows the LMP formation in the DOS of the hydro-thermal-wind-photovoltaic power system with a battery energy storage system and the reduction of WPC. Here, the wind and photovoltaic power plants are designed to be dispatched, not mandatory, to be able to cut the generation, and the insertion of Distributed Generation is considered. Moreover, to solve the DOS problem, the interior-point method is used. Additionally, the DC optimal power flow, used to represent the DOS in addition to the representation of the electric grid, is modeled with an iterative approach. The analysis is made in an IEEE 24-bus system with data from Brazil. Lastly, the results of simulations are presented and discussed, demonstrating the effectiveness of the optimization to reduce the WPC, the total operation cost, and to provide the LMP curve.
topic battery energy storage systems
hydro-thermal-wind-photovoltaic power system
linear programming
Locational Marginal Pricing
wind power curtailment
url https://www.mdpi.com/1996-1073/14/5/1441
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