Integrated Energy System Planning Optimization Considering Equipment Performance

At present, regional integrated energy system is considered as a novel form to improve the comprehensive energy efficiency and economy of the system by integrating multiple energy subsystems. The key link of integrated energy system planning and optimization is to determine the kind and installed ca...

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Main Authors: Li Haifeng, Chen Lufeng, Feng Gang, Wang Yongli, Ma Yang, Xue Lu, Ma Yuze, Qi Chengyuan
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/45/e3sconf_iceeb2020_01066.pdf
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author Li Haifeng
Chen Lufeng
Feng Gang
Wang Yongli
Ma Yang
Xue Lu
Ma Yuze
Qi Chengyuan
author_facet Li Haifeng
Chen Lufeng
Feng Gang
Wang Yongli
Ma Yang
Xue Lu
Ma Yuze
Qi Chengyuan
author_sort Li Haifeng
collection DOAJ
description At present, regional integrated energy system is considered as a novel form to improve the comprehensive energy efficiency and economy of the system by integrating multiple energy subsystems. The key link of integrated energy system planning and optimization is to determine the kind and installed capacity of source-side equipment, and how to make the equipment of the system cooperate and couple with each other. A model of equipment capacity allocation at the source side of integrated energy system is proposed, which can get the best equipment kind and installed capacity in the planning and optimization area. The objectives of the model are the optimal economy and the minimum carbon emission. In order to verify the effectiveness of the model proposed in this paper, three typical scenarios are set for comparative analysis. In the simulation, by comparing the economy and carbon emission of planning results in different scenarios, it can be found that there is a potential connection between the installed capacity of source-side equipment, and at the same time, the carbon emission will also affect the installed capacity of equipment. Renewable energy equipment has made great contribution to carbon emission, but its investment cost has greatly increased the system planning cost. Therefore, system economy and carbon emission are mutually exclusive to a certain extent.
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spelling doaj.art-238fc43b224042d1b10eb2d6eb5705c52022-12-21T20:26:39ZengEDP SciencesE3S Web of Conferences2267-12422020-01-011850106610.1051/e3sconf/202018501066e3sconf_iceeb2020_01066Integrated Energy System Planning Optimization Considering Equipment PerformanceLi Haifeng0Chen Lufeng1Feng Gang2Wang Yongli3Ma Yang4Xue Lu5Ma Yuze6Qi Chengyuan7Economic and Technological Research Institute of State Grid Xinjiang Electric Power Co., LtdEconomic and Technological Research Institute of State Grid Xinjiang Electric Power Co., LtdEconomic and Technological Research Institute of State Grid Xinjiang Electric Power Co., LtdDepartments of Economics and Management, North China Electric Power UniversityDepartments of Economics and Management, North China Electric Power UniversityDepartments of Economics and Management, North China Electric Power UniversityDepartments of Economics and Management, North China Electric Power UniversityDepartments of Economics and Management, North China Electric Power UniversityAt present, regional integrated energy system is considered as a novel form to improve the comprehensive energy efficiency and economy of the system by integrating multiple energy subsystems. The key link of integrated energy system planning and optimization is to determine the kind and installed capacity of source-side equipment, and how to make the equipment of the system cooperate and couple with each other. A model of equipment capacity allocation at the source side of integrated energy system is proposed, which can get the best equipment kind and installed capacity in the planning and optimization area. The objectives of the model are the optimal economy and the minimum carbon emission. In order to verify the effectiveness of the model proposed in this paper, three typical scenarios are set for comparative analysis. In the simulation, by comparing the economy and carbon emission of planning results in different scenarios, it can be found that there is a potential connection between the installed capacity of source-side equipment, and at the same time, the carbon emission will also affect the installed capacity of equipment. Renewable energy equipment has made great contribution to carbon emission, but its investment cost has greatly increased the system planning cost. Therefore, system economy and carbon emission are mutually exclusive to a certain extent.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/45/e3sconf_iceeb2020_01066.pdf
spellingShingle Li Haifeng
Chen Lufeng
Feng Gang
Wang Yongli
Ma Yang
Xue Lu
Ma Yuze
Qi Chengyuan
Integrated Energy System Planning Optimization Considering Equipment Performance
E3S Web of Conferences
title Integrated Energy System Planning Optimization Considering Equipment Performance
title_full Integrated Energy System Planning Optimization Considering Equipment Performance
title_fullStr Integrated Energy System Planning Optimization Considering Equipment Performance
title_full_unstemmed Integrated Energy System Planning Optimization Considering Equipment Performance
title_short Integrated Energy System Planning Optimization Considering Equipment Performance
title_sort integrated energy system planning optimization considering equipment performance
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/45/e3sconf_iceeb2020_01066.pdf
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