Research on optimal dispatch model of power grid considering the uncertainty of flexible resource demand response on the residential side

Abstract Residential side flexible load participation in demand response (DR) has been widely used in recent years. However, there are uncertainties in the response willingness and response volume of residential customers, which have a non‐negligible impact on the security and economic dispatch of t...

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Main Authors: Guili Ding, Zhan Shu, Jianbo Xin, Zhenzhi Lin, Zhiqiang Zhong, Shiyang Zhou, Qingzhao Ji, Hui Xiao, Xin Han
Format: Article
Language:English
Published: Wiley 2024-12-01
Series:IET Renewable Power Generation
Subjects:
Online Access:https://doi.org/10.1049/rpg2.12913
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author Guili Ding
Zhan Shu
Jianbo Xin
Zhenzhi Lin
Zhiqiang Zhong
Shiyang Zhou
Qingzhao Ji
Hui Xiao
Xin Han
author_facet Guili Ding
Zhan Shu
Jianbo Xin
Zhenzhi Lin
Zhiqiang Zhong
Shiyang Zhou
Qingzhao Ji
Hui Xiao
Xin Han
author_sort Guili Ding
collection DOAJ
description Abstract Residential side flexible load participation in demand response (DR) has been widely used in recent years. However, there are uncertainties in the response willingness and response volume of residential customers, which have a non‐negligible impact on the security and economic dispatch of the power sector. This paper analyzes the uncertainty factors in the demand response process of residential users from the equipment load layer–user layer, establishes for the first time a refined model of residential users' participation in DR from the perspectives of participation uncertainty and response uncertainty, and further constructs a grid optimal dispatch model considering DR uncertainty. The experimental simulation results show that the model established in this paper is able to adjust the operation strategy according to the requirements of user comfort, enhance the enthusiasm of users to participate in DR, and at the same time reduce the dispatch security risk and economic loss caused by the uncertainty of residents' DR on the power grid.
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institution Kabale University
issn 1752-1416
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language English
publishDate 2024-12-01
publisher Wiley
record_format Article
series IET Renewable Power Generation
spelling doaj-art-e4c0c2edeb424cfe9978515a68f9efce2025-01-30T12:15:53ZengWileyIET Renewable Power Generation1752-14161752-14242024-12-0118163691370310.1049/rpg2.12913Research on optimal dispatch model of power grid considering the uncertainty of flexible resource demand response on the residential sideGuili Ding0Zhan Shu1Jianbo Xin2Zhenzhi Lin3Zhiqiang Zhong4Shiyang Zhou5Qingzhao Ji6Hui Xiao7Xin Han8Jiangxi Provincial Key Laboratory of Operation Control of New Energy Power System State Grid Jiangxi Electric Power Research Institute Nanchang ChinaJiangxi Provincial Key Laboratory of Operation Control of New Energy Power System State Grid Jiangxi Electric Power Research Institute Nanchang ChinaJiangxi Provincial Key Laboratory of Operation Control of New Energy Power System State Grid Jiangxi Electric Power Research Institute Nanchang ChinaSchool of Electrical Engineering Nanchang Institute of Technology, Zhejiang University Hangzhou ChinaJiangxi Provincial Key Laboratory of Operation Control of New Energy Power System State Grid Jiangxi Electric Power Research Institute Nanchang ChinaJiangxi Provincial Key Laboratory of Operation Control of New Energy Power System State Grid Jiangxi Electric Power Research Institute Nanchang ChinaJiangxi Provincial Key Laboratory of Operation Control of New Energy Power System State Grid Jiangxi Electric Power Research Institute Nanchang ChinaSchool of Electrical Engineering Nanchang Institute of Technology Nanchang ChinaSchool of Electrical Engineering Nanchang Institute of Technology Nanchang ChinaAbstract Residential side flexible load participation in demand response (DR) has been widely used in recent years. However, there are uncertainties in the response willingness and response volume of residential customers, which have a non‐negligible impact on the security and economic dispatch of the power sector. This paper analyzes the uncertainty factors in the demand response process of residential users from the equipment load layer–user layer, establishes for the first time a refined model of residential users' participation in DR from the perspectives of participation uncertainty and response uncertainty, and further constructs a grid optimal dispatch model considering DR uncertainty. The experimental simulation results show that the model established in this paper is able to adjust the operation strategy according to the requirements of user comfort, enhance the enthusiasm of users to participate in DR, and at the same time reduce the dispatch security risk and economic loss caused by the uncertainty of residents' DR on the power grid.https://doi.org/10.1049/rpg2.12913electric vehicle chargingenergy management systemsload dispatchingoptimal controlpower distribution economics
spellingShingle Guili Ding
Zhan Shu
Jianbo Xin
Zhenzhi Lin
Zhiqiang Zhong
Shiyang Zhou
Qingzhao Ji
Hui Xiao
Xin Han
Research on optimal dispatch model of power grid considering the uncertainty of flexible resource demand response on the residential side
IET Renewable Power Generation
electric vehicle charging
energy management systems
load dispatching
optimal control
power distribution economics
title Research on optimal dispatch model of power grid considering the uncertainty of flexible resource demand response on the residential side
title_full Research on optimal dispatch model of power grid considering the uncertainty of flexible resource demand response on the residential side
title_fullStr Research on optimal dispatch model of power grid considering the uncertainty of flexible resource demand response on the residential side
title_full_unstemmed Research on optimal dispatch model of power grid considering the uncertainty of flexible resource demand response on the residential side
title_short Research on optimal dispatch model of power grid considering the uncertainty of flexible resource demand response on the residential side
title_sort research on optimal dispatch model of power grid considering the uncertainty of flexible resource demand response on the residential side
topic electric vehicle charging
energy management systems
load dispatching
optimal control
power distribution economics
url https://doi.org/10.1049/rpg2.12913
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