Two-stage robust planning for wind power-photovoltaic-thermal power-pumped storage-battery hybrid system

With the rapid growth of wind power-photovoltaic grid-connected penetration, the uncertainty of the power system increases dramatically. Aiming at the impact of large-scale grid-connected wind power-photovoltaic on power grid planning, this paper constructs a two-stage robust planning model for the...

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Main Authors: LUO Yuanxiang, FAN Lidong, WANG Yuhang, LIU Cheng, JIAO Yinghe, WANG Yunlong
Format: Article
Language:zho
Published: Harbin Jinhe Electrical Measurement & Instrumentation Magazine Publishing Co., Ltd. 2025-05-01
Series:Diance yu yibiao
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Online Access:http://www.emijournal.net/dcyyben/ch/reader/create_pdf.aspx?file_no=20220707002&flag=1&journal_id=dcyyben&year_id=2025
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author LUO Yuanxiang
FAN Lidong
WANG Yuhang
LIU Cheng
JIAO Yinghe
WANG Yunlong
author_facet LUO Yuanxiang
FAN Lidong
WANG Yuhang
LIU Cheng
JIAO Yinghe
WANG Yunlong
author_sort LUO Yuanxiang
collection DOAJ
description With the rapid growth of wind power-photovoltaic grid-connected penetration, the uncertainty of the power system increases dramatically. Aiming at the impact of large-scale grid-connected wind power-photovoltaic on power grid planning, this paper constructs a two-stage robust planning model for the wind power-photovoltaic-thermal power-pumped storage-battery hybrid system, and introduces uncertain adjustment parameters to reduce the conservatism of the model. In the first stage, the capacity configuration of the hybrid system is aiming at minimizing the sum of investment cost and operation and maintenance cost. In the second stage, under a given capacity configuration, the optimal scheduling scheme is determined by constructing an uncertain set of wind power-photovoltaic output, aiming at minimizing the sum of environmental cost and cost of wind power-photovoltaic abandonment. According to the characteristics of the robust planning model, the column and constraint generation algorithm (C&CG) and strong pairwise theory are used to decompose the original problem into a major problem and sub-problem with mixed-integer linear characteristics to solve. The improved IEEE30-node system is followed to analyze the economics of the planning scheme under different conservative degrees, and the validity of the proposed model is verified.
format Article
id doaj-art-a6d381cbdbe742f7bd200750fe1236c0
institution Kabale University
issn 1001-1390
language zho
publishDate 2025-05-01
publisher Harbin Jinhe Electrical Measurement & Instrumentation Magazine Publishing Co., Ltd.
record_format Article
series Diance yu yibiao
spelling doaj-art-a6d381cbdbe742f7bd200750fe1236c02025-08-20T03:25:00ZzhoHarbin Jinhe Electrical Measurement & Instrumentation Magazine Publishing Co., Ltd.Diance yu yibiao1001-13902025-05-0162514915710.19753/j.issn1001-1390.2025.05.0181001-1390(2025)05-0149-09Two-stage robust planning for wind power-photovoltaic-thermal power-pumped storage-battery hybrid systemLUO Yuanxiang0FAN Lidong1WANG Yuhang2LIU Cheng3JIAO Yinghe4WANG Yunlong5School of Electrical Engineering, Northeast Electric Power University, Jilin 132012, Jilin, ChinaSchool of Electrical Engineering, Northeast Electric Power University, Jilin 132012, Jilin, ChinaSchool of Electrical Engineering, Northeast Electric Power University, Jilin 132012, Jilin, ChinaSchool of Electrical Engineering, Northeast Electric Power University, Jilin 132012, Jilin, ChinaSchool of Electrical Engineering, Northeast Electric Power University, Jilin 132012, Jilin, ChinaSchool of Electrical Engineering, Northeast Electric Power University, Jilin 132012, Jilin, ChinaWith the rapid growth of wind power-photovoltaic grid-connected penetration, the uncertainty of the power system increases dramatically. Aiming at the impact of large-scale grid-connected wind power-photovoltaic on power grid planning, this paper constructs a two-stage robust planning model for the wind power-photovoltaic-thermal power-pumped storage-battery hybrid system, and introduces uncertain adjustment parameters to reduce the conservatism of the model. In the first stage, the capacity configuration of the hybrid system is aiming at minimizing the sum of investment cost and operation and maintenance cost. In the second stage, under a given capacity configuration, the optimal scheduling scheme is determined by constructing an uncertain set of wind power-photovoltaic output, aiming at minimizing the sum of environmental cost and cost of wind power-photovoltaic abandonment. According to the characteristics of the robust planning model, the column and constraint generation algorithm (C&CG) and strong pairwise theory are used to decompose the original problem into a major problem and sub-problem with mixed-integer linear characteristics to solve. The improved IEEE30-node system is followed to analyze the economics of the planning scheme under different conservative degrees, and the validity of the proposed model is verified.http://www.emijournal.net/dcyyben/ch/reader/create_pdf.aspx?file_no=20220707002&flag=1&journal_id=dcyyben&year_id=2025two-stage robust optimizationuncertain adjustment parameterswind and photovoltaic power consumptionenvironmental costcolumn and constraint generation algorithm
spellingShingle LUO Yuanxiang
FAN Lidong
WANG Yuhang
LIU Cheng
JIAO Yinghe
WANG Yunlong
Two-stage robust planning for wind power-photovoltaic-thermal power-pumped storage-battery hybrid system
Diance yu yibiao
two-stage robust optimization
uncertain adjustment parameters
wind and photovoltaic power consumption
environmental cost
column and constraint generation algorithm
title Two-stage robust planning for wind power-photovoltaic-thermal power-pumped storage-battery hybrid system
title_full Two-stage robust planning for wind power-photovoltaic-thermal power-pumped storage-battery hybrid system
title_fullStr Two-stage robust planning for wind power-photovoltaic-thermal power-pumped storage-battery hybrid system
title_full_unstemmed Two-stage robust planning for wind power-photovoltaic-thermal power-pumped storage-battery hybrid system
title_short Two-stage robust planning for wind power-photovoltaic-thermal power-pumped storage-battery hybrid system
title_sort two stage robust planning for wind power photovoltaic thermal power pumped storage battery hybrid system
topic two-stage robust optimization
uncertain adjustment parameters
wind and photovoltaic power consumption
environmental cost
column and constraint generation algorithm
url http://www.emijournal.net/dcyyben/ch/reader/create_pdf.aspx?file_no=20220707002&flag=1&journal_id=dcyyben&year_id=2025
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AT wangyuhang twostagerobustplanningforwindpowerphotovoltaicthermalpowerpumpedstoragebatteryhybridsystem
AT liucheng twostagerobustplanningforwindpowerphotovoltaicthermalpowerpumpedstoragebatteryhybridsystem
AT jiaoyinghe twostagerobustplanningforwindpowerphotovoltaicthermalpowerpumpedstoragebatteryhybridsystem
AT wangyunlong twostagerobustplanningforwindpowerphotovoltaicthermalpowerpumpedstoragebatteryhybridsystem