Research on capacity allocation optimization of a wind-photovoltaic-hybrid-battery power generation system with multi-energy complementary

The output of complementary energy is the core of power generation system planning, and researching its configuration is the basis for realizing safe, reliable, economical and stable operation of the system throughout total life cycle. This paper comprehensively considers the constraints of power su...

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Main Authors: Lei Yu, Xu Jianjun, Pan Lichao, Sun Dikang
Format: Article
Language:English
Published: EDP Sciences 2022-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/25/e3sconf_gesd2022_01039.pdf
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author Lei Yu
Xu Jianjun
Pan Lichao
Sun Dikang
author_facet Lei Yu
Xu Jianjun
Pan Lichao
Sun Dikang
author_sort Lei Yu
collection DOAJ
description The output of complementary energy is the core of power generation system planning, and researching its configuration is the basis for realizing safe, reliable, economical and stable operation of the system throughout total life cycle. This paper comprehensively considers the constraints of power supply reliability and battery energy storage operation, and proposes a capacity optimization method for wind-photovoltaic-hydro-storage system aiming at life cycle cost and unit cost of electricity. Take the Northwest Region as an example, the optimization problem was solved by HOMER software, the optimal capacity allocation result was obtained. Compared with other solutions, the life cycle cost was reduced by 12.1%, the unit cost of electricity was reduced by 11.9%, and the load power shortage rate probability was relatively reduced. The result prove that the complementary system helps to reduce power generation cost and improve power supply stability.
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spelling doaj.art-7f4efdca12404249a7bc76f0acbce4582022-12-22T04:18:43ZengEDP SciencesE3S Web of Conferences2267-12422022-01-013580103910.1051/e3sconf/202235801039e3sconf_gesd2022_01039Research on capacity allocation optimization of a wind-photovoltaic-hybrid-battery power generation system with multi-energy complementaryLei Yu0Xu Jianjun1Pan Lichao2Sun Dikang3School of Electrical Engineering and Information, Northeast Petroleum UniversitySchool of Electrical Engineering and Information, Northeast Petroleum UniversitySchool of Electrical Engineering and Information, Northeast Petroleum UniversitySchool of Electrical Engineering and Information, Northeast Petroleum UniversityThe output of complementary energy is the core of power generation system planning, and researching its configuration is the basis for realizing safe, reliable, economical and stable operation of the system throughout total life cycle. This paper comprehensively considers the constraints of power supply reliability and battery energy storage operation, and proposes a capacity optimization method for wind-photovoltaic-hydro-storage system aiming at life cycle cost and unit cost of electricity. Take the Northwest Region as an example, the optimization problem was solved by HOMER software, the optimal capacity allocation result was obtained. Compared with other solutions, the life cycle cost was reduced by 12.1%, the unit cost of electricity was reduced by 11.9%, and the load power shortage rate probability was relatively reduced. The result prove that the complementary system helps to reduce power generation cost and improve power supply stability.https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/25/e3sconf_gesd2022_01039.pdfcomplementary energywind-photovoltaic-hydro-storagecapacity configurationhomer softwarelife cycle cost
spellingShingle Lei Yu
Xu Jianjun
Pan Lichao
Sun Dikang
Research on capacity allocation optimization of a wind-photovoltaic-hybrid-battery power generation system with multi-energy complementary
E3S Web of Conferences
complementary energy
wind-photovoltaic-hydro-storage
capacity configuration
homer software
life cycle cost
title Research on capacity allocation optimization of a wind-photovoltaic-hybrid-battery power generation system with multi-energy complementary
title_full Research on capacity allocation optimization of a wind-photovoltaic-hybrid-battery power generation system with multi-energy complementary
title_fullStr Research on capacity allocation optimization of a wind-photovoltaic-hybrid-battery power generation system with multi-energy complementary
title_full_unstemmed Research on capacity allocation optimization of a wind-photovoltaic-hybrid-battery power generation system with multi-energy complementary
title_short Research on capacity allocation optimization of a wind-photovoltaic-hybrid-battery power generation system with multi-energy complementary
title_sort research on capacity allocation optimization of a wind photovoltaic hybrid battery power generation system with multi energy complementary
topic complementary energy
wind-photovoltaic-hydro-storage
capacity configuration
homer software
life cycle cost
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/25/e3sconf_gesd2022_01039.pdf
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AT panlichao researchoncapacityallocationoptimizationofawindphotovoltaichybridbatterypowergenerationsystemwithmultienergycomplementary
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