Research on optimal scheduling of photovoltaic cluster based on game pricing

With the promotion of China’s ”peak carbon and carbon neutrality” target, PV power generation is gradually entering the era of price parity, and cost will no longer be the main obstacle to its scale development, but grid consumption will become the main factor to restrict its further development. In...

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Main Authors: Runkang Li, Weiguo Pan, Ting Yan, Kai Wang, Xin Tang
Format: Article
Language:English
Published: Elsevier 2022-07-01
Series:Energy Reports
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352484722002426
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author Runkang Li
Weiguo Pan
Ting Yan
Kai Wang
Xin Tang
author_facet Runkang Li
Weiguo Pan
Ting Yan
Kai Wang
Xin Tang
author_sort Runkang Li
collection DOAJ
description With the promotion of China’s ”peak carbon and carbon neutrality” target, PV power generation is gradually entering the era of price parity, and cost will no longer be the main obstacle to its scale development, but grid consumption will become the main factor to restrict its further development. In order to further promote the consumption of PV and realize the low-carbon transformation of microgrid, this paper establishes a game pricing model led by Photovoltaic Cluster (PVC) based on the response of power demand, carries out the research on the optimal scheduling of PV in microgrid by establishing the game relationship among grid, PVC and users. Firstly, a new IEEE 33-node arithmetic simulation model is built, and secondly, three PVCs are divided among the nodes, and the feasibility of the model is verified by solving the optimal tariff strategy through genetic algorithm. The final results show that the optimal scheduling method is effective in meeting the demand response of users in PVCs while reducing the cost of electricity consumption and promoting the local consumption of PV; in addition, after increasing the proportion of PV access, PV will become the main supplier of electricity and the operation mode of PVCs will be free from dependence on the grid.
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spelling doaj.art-7984ae44d04a4affa79e3540c933ddaf2022-12-22T02:35:00ZengElsevierEnergy Reports2352-48472022-07-018627638Research on optimal scheduling of photovoltaic cluster based on game pricingRunkang Li0Weiguo Pan1Ting Yan2Kai Wang3Xin Tang4College of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 200090, ChinaCollege of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 200090, ChinaCorresponding author.; College of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 200090, ChinaCollege of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 200090, ChinaCollege of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai 200090, ChinaWith the promotion of China’s ”peak carbon and carbon neutrality” target, PV power generation is gradually entering the era of price parity, and cost will no longer be the main obstacle to its scale development, but grid consumption will become the main factor to restrict its further development. In order to further promote the consumption of PV and realize the low-carbon transformation of microgrid, this paper establishes a game pricing model led by Photovoltaic Cluster (PVC) based on the response of power demand, carries out the research on the optimal scheduling of PV in microgrid by establishing the game relationship among grid, PVC and users. Firstly, a new IEEE 33-node arithmetic simulation model is built, and secondly, three PVCs are divided among the nodes, and the feasibility of the model is verified by solving the optimal tariff strategy through genetic algorithm. The final results show that the optimal scheduling method is effective in meeting the demand response of users in PVCs while reducing the cost of electricity consumption and promoting the local consumption of PV; in addition, after increasing the proportion of PV access, PV will become the main supplier of electricity and the operation mode of PVCs will be free from dependence on the grid.http://www.sciencedirect.com/science/article/pii/S2352484722002426Photovoltaic clusterGame pricingOptimal schedulingDemand responseEnergy storage
spellingShingle Runkang Li
Weiguo Pan
Ting Yan
Kai Wang
Xin Tang
Research on optimal scheduling of photovoltaic cluster based on game pricing
Energy Reports
Photovoltaic cluster
Game pricing
Optimal scheduling
Demand response
Energy storage
title Research on optimal scheduling of photovoltaic cluster based on game pricing
title_full Research on optimal scheduling of photovoltaic cluster based on game pricing
title_fullStr Research on optimal scheduling of photovoltaic cluster based on game pricing
title_full_unstemmed Research on optimal scheduling of photovoltaic cluster based on game pricing
title_short Research on optimal scheduling of photovoltaic cluster based on game pricing
title_sort research on optimal scheduling of photovoltaic cluster based on game pricing
topic Photovoltaic cluster
Game pricing
Optimal scheduling
Demand response
Energy storage
url http://www.sciencedirect.com/science/article/pii/S2352484722002426
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