Zonotope approximation based flexible cluster division method for load‐side resource scheduling

Abstract In view of the insufficient flexibility and adjustment capabilities caused by the high proportion of renewable energy connected to the distribution network and the limitations of the source‐side adjustment method, a load‐side resource flexibility cluster partitioning method based on zonotop...

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Main Authors: Zongjun Yao, Tieyan Zhang, Jinfeng Huang
Format: Article
Language:English
Published: Wiley 2024-12-01
Series:IET Renewable Power Generation
Subjects:
Online Access:https://doi.org/10.1049/rpg2.12986
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author Zongjun Yao
Tieyan Zhang
Jinfeng Huang
author_facet Zongjun Yao
Tieyan Zhang
Jinfeng Huang
author_sort Zongjun Yao
collection DOAJ
description Abstract In view of the insufficient flexibility and adjustment capabilities caused by the high proportion of renewable energy connected to the distribution network and the limitations of the source‐side adjustment method, a load‐side resource flexibility cluster partitioning method based on zonotope approximation is proposed to cope with the flexibility adjustment requirements brought by uncertain resources. First, the constraint space of load‐side resources such as energy storage, multi‐source mobile energy storage, electric vehicles, and temperature‐controlled loads is described as a convex polyhedral form general model based on the virtual battery framework, and the zonotope approximation is used to integrate its constraint space with the Minkowski sum. Secondly, modularity and flexibility supply and demand balance index are proposed to perform flexibility clustering of load‐side resources. Then, the minimum comprehensive operating cost of the cluster aggregator is set as the optimization goal, the cluster constraint space is equivalent to the cost function, and the optimal charging and discharging power and flexibility adjustment capacity of the load‐side resources are obtained. Finally, the method proposed here is verified through numerical example simulation to effectively balance aggregation accuracy and calculation speed.
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institution Kabale University
issn 1752-1416
1752-1424
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publishDate 2024-12-01
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series IET Renewable Power Generation
spelling doaj-art-7d14059604ee42bf967684d19a9f4cce2025-01-30T12:15:53ZengWileyIET Renewable Power Generation1752-14161752-14242024-12-0118163593360210.1049/rpg2.12986Zonotope approximation based flexible cluster division method for load‐side resource schedulingZongjun Yao0Tieyan Zhang1Jinfeng Huang2School of Electrical Engineering Shenyang University of Technology Shenyang ChinaSchool of Electrical Engineering Shenyang University of Technology Shenyang ChinaState Grid Shenyang Electric Power Supply Company Shenyang ChinaAbstract In view of the insufficient flexibility and adjustment capabilities caused by the high proportion of renewable energy connected to the distribution network and the limitations of the source‐side adjustment method, a load‐side resource flexibility cluster partitioning method based on zonotope approximation is proposed to cope with the flexibility adjustment requirements brought by uncertain resources. First, the constraint space of load‐side resources such as energy storage, multi‐source mobile energy storage, electric vehicles, and temperature‐controlled loads is described as a convex polyhedral form general model based on the virtual battery framework, and the zonotope approximation is used to integrate its constraint space with the Minkowski sum. Secondly, modularity and flexibility supply and demand balance index are proposed to perform flexibility clustering of load‐side resources. Then, the minimum comprehensive operating cost of the cluster aggregator is set as the optimization goal, the cluster constraint space is equivalent to the cost function, and the optimal charging and discharging power and flexibility adjustment capacity of the load‐side resources are obtained. Finally, the method proposed here is verified through numerical example simulation to effectively balance aggregation accuracy and calculation speed.https://doi.org/10.1049/rpg2.12986energy management systemsenergy storageload dispatching
spellingShingle Zongjun Yao
Tieyan Zhang
Jinfeng Huang
Zonotope approximation based flexible cluster division method for load‐side resource scheduling
IET Renewable Power Generation
energy management systems
energy storage
load dispatching
title Zonotope approximation based flexible cluster division method for load‐side resource scheduling
title_full Zonotope approximation based flexible cluster division method for load‐side resource scheduling
title_fullStr Zonotope approximation based flexible cluster division method for load‐side resource scheduling
title_full_unstemmed Zonotope approximation based flexible cluster division method for load‐side resource scheduling
title_short Zonotope approximation based flexible cluster division method for load‐side resource scheduling
title_sort zonotope approximation based flexible cluster division method for load side resource scheduling
topic energy management systems
energy storage
load dispatching
url https://doi.org/10.1049/rpg2.12986
work_keys_str_mv AT zongjunyao zonotopeapproximationbasedflexibleclusterdivisionmethodforloadsideresourcescheduling
AT tieyanzhang zonotopeapproximationbasedflexibleclusterdivisionmethodforloadsideresourcescheduling
AT jinfenghuang zonotopeapproximationbasedflexibleclusterdivisionmethodforloadsideresourcescheduling