Optimization of Distributed Solar Photovoltaic Power Generation in Day-ahead Electricity Market Incorporating Irradiance Uncertainty

This paper proposes a simple and practical approach to model the uncertainty of solar irradiance and determines the optimized day-ahead (DA) schedule of electricity market. The problem formulation incorporates the power output of distributed solar photovoltaic generator (DSPVG) and forecasted load d...

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Main Authors: Anu Singla, Kanwardeep Singh, Vinod Kumar Yadav
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:Journal of Modern Power Systems and Clean Energy
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9210428/
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spelling doaj-bd06868d492c409bba3f80f5822c2ec12021-05-23T18:22:41ZengIEEEJournal of Modern Power Systems and Clean Energy2196-54202021-01-019354556010.35833/MPCE.2019.0001649210428Optimization of Distributed Solar Photovoltaic Power Generation in Day-ahead Electricity Market Incorporating Irradiance UncertaintyAnu Singla0Kanwardeep Singh1Vinod Kumar Yadav2Chitkara University Institute of Engineering and Technology, Chitkara University,Department of Electrical Engineering,Punjab,IndiaGuru Nanak Dev Engineering College,Department of Electrical Engineering,Ludhiana,IndiaDelhi Technological University,Department of Electrical Engineering,Delhi,IndiaThis paper proposes a simple and practical approach to model the uncertainty of solar irradiance and determines the optimized day-ahead (DA) schedule of electricity market. The problem formulation incorporates the power output of distributed solar photovoltaic generator (DSPVG) and forecasted load demands with a specified level of certainty. The proposed approach determines the certainty levels of the random variables (solar irradiance and forecasted load demand) from their probability density function curves. In this process of optimization, the energy storage system (ESS) has also been modeled based on the fact that the energy stored during low locational marginal price (LMP) periods and dispatched during high LMP periods would strengthen the economy of DA schedule. The objective of the formulated non-linear optimization problem is to maximize the social welfare of market participants, which incorporates the assured generation outputs of DSPVG, subject to real and reactive power balance and transmission capability constraints of the system and charging/dis-charging and energy storage constraints of ESS. The simulation has been performed on the Indian utility 62-bus system. The results are presented with a large number of cases to demonstrate the effectiveness of the proposed approach for the efficient, economic and reliable operation of DA electricity markets.https://ieeexplore.ieee.org/document/9210428/Electricity marketenergy storagemarket dispatchingrenewable energysocial welfaresolar photovoltaic power generator
collection DOAJ
language English
format Article
sources DOAJ
author Anu Singla
Kanwardeep Singh
Vinod Kumar Yadav
spellingShingle Anu Singla
Kanwardeep Singh
Vinod Kumar Yadav
Optimization of Distributed Solar Photovoltaic Power Generation in Day-ahead Electricity Market Incorporating Irradiance Uncertainty
Journal of Modern Power Systems and Clean Energy
Electricity market
energy storage
market dispatching
renewable energy
social welfare
solar photovoltaic power generator
author_facet Anu Singla
Kanwardeep Singh
Vinod Kumar Yadav
author_sort Anu Singla
title Optimization of Distributed Solar Photovoltaic Power Generation in Day-ahead Electricity Market Incorporating Irradiance Uncertainty
title_short Optimization of Distributed Solar Photovoltaic Power Generation in Day-ahead Electricity Market Incorporating Irradiance Uncertainty
title_full Optimization of Distributed Solar Photovoltaic Power Generation in Day-ahead Electricity Market Incorporating Irradiance Uncertainty
title_fullStr Optimization of Distributed Solar Photovoltaic Power Generation in Day-ahead Electricity Market Incorporating Irradiance Uncertainty
title_full_unstemmed Optimization of Distributed Solar Photovoltaic Power Generation in Day-ahead Electricity Market Incorporating Irradiance Uncertainty
title_sort optimization of distributed solar photovoltaic power generation in day-ahead electricity market incorporating irradiance uncertainty
publisher IEEE
series Journal of Modern Power Systems and Clean Energy
issn 2196-5420
publishDate 2021-01-01
description This paper proposes a simple and practical approach to model the uncertainty of solar irradiance and determines the optimized day-ahead (DA) schedule of electricity market. The problem formulation incorporates the power output of distributed solar photovoltaic generator (DSPVG) and forecasted load demands with a specified level of certainty. The proposed approach determines the certainty levels of the random variables (solar irradiance and forecasted load demand) from their probability density function curves. In this process of optimization, the energy storage system (ESS) has also been modeled based on the fact that the energy stored during low locational marginal price (LMP) periods and dispatched during high LMP periods would strengthen the economy of DA schedule. The objective of the formulated non-linear optimization problem is to maximize the social welfare of market participants, which incorporates the assured generation outputs of DSPVG, subject to real and reactive power balance and transmission capability constraints of the system and charging/dis-charging and energy storage constraints of ESS. The simulation has been performed on the Indian utility 62-bus system. The results are presented with a large number of cases to demonstrate the effectiveness of the proposed approach for the efficient, economic and reliable operation of DA electricity markets.
topic Electricity market
energy storage
market dispatching
renewable energy
social welfare
solar photovoltaic power generator
url https://ieeexplore.ieee.org/document/9210428/
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AT vinodkumaryadav optimizationofdistributedsolarphotovoltaicpowergenerationindayaheadelectricitymarketincorporatingirradianceuncertainty
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