GENERATION-LOAD-STORAGE COOPERATIVE OPTIMIZATION SCHEDULING OF COMBINED HEAT AND POWER SYSTEM CONSIDERING WIND POWER UNCERTAINTY AND DEMAND RESPONSE

The problem of wind power abandonment in the north areas of China is serious, which is mainly caused by the uncertainty of wind power and the "thermoelectric coupling" characteristics of cogeneration units. Aiming at this problem, this paper establishes the optimal scheduling model of gene...

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Main Authors: Ruiqing Lian, Yiran You, Yong Li, Shiwei Su
Format: Article
Language:English
Published: NAS of Ukraine, Institute of elecrodynamics 2021-10-01
Series:Технічна електродинаміка
Subjects:
Online Access:https://techned.org.ua/index.php/techned/article/view/222
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author Ruiqing Lian
Yiran You
Yong Li
Shiwei Su
author_facet Ruiqing Lian
Yiran You
Yong Li
Shiwei Su
author_sort Ruiqing Lian
collection DOAJ
description The problem of wind power abandonment in the north areas of China is serious, which is mainly caused by the uncertainty of wind power and the "thermoelectric coupling" characteristics of cogeneration units. Aiming at this problem, this paper establishes the optimal scheduling model of generation-load-storage coordination in the electrothermal joint system with the goal of minimizing the amount of wind power discarded and the total scheduling cost of the system. Firstly, the responsive electrical and thermal loads on the demand side are divided into three types according to their types, namely, translatable, transferrable and reducible, and the demand response models are constructed to improve the fineness of the optimization on the demand side. Then, the scenario method is used to solve the uncertainty problem of wind power. Meanwhile, the influence of the energy storage side on system scheduling is considered. Finally, the results based on examples verify the effectiveness of the proposed model in promoting the absorptive of wind power and improving the overall economic benefit of the system. References 23, figures 8, table 1.
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spelling doaj.art-6b3b9ce5dd9645579f114b1cbb8214842022-12-21T18:37:47ZengNAS of Ukraine, Institute of elecrodynamicsТехнічна електродинаміка1607-79702218-19032021-10-01604104110.15407/techned2021.06.041222GENERATION-LOAD-STORAGE COOPERATIVE OPTIMIZATION SCHEDULING OF COMBINED HEAT AND POWER SYSTEM CONSIDERING WIND POWER UNCERTAINTY AND DEMAND RESPONSERuiqing Lian0Yiran You1Yong Li2Shiwei Su3College of Electrical Engineering & New Energy, China Three Gorges University, Yichang 443002, ChinaQuanzhou Power Supply Company of State Grid Fujian Electric Power Co., Ltd., Quanzhou 362000, ChinaDawu Power Supply Company of State Grid Hubei Electric Power Co., Ltd., Dawu 432800, ChinaCollege of Electrical Engineering & New Energy, China Three Gorges University, Yichang 443002, ChinaThe problem of wind power abandonment in the north areas of China is serious, which is mainly caused by the uncertainty of wind power and the "thermoelectric coupling" characteristics of cogeneration units. Aiming at this problem, this paper establishes the optimal scheduling model of generation-load-storage coordination in the electrothermal joint system with the goal of minimizing the amount of wind power discarded and the total scheduling cost of the system. Firstly, the responsive electrical and thermal loads on the demand side are divided into three types according to their types, namely, translatable, transferrable and reducible, and the demand response models are constructed to improve the fineness of the optimization on the demand side. Then, the scenario method is used to solve the uncertainty problem of wind power. Meanwhile, the influence of the energy storage side on system scheduling is considered. Finally, the results based on examples verify the effectiveness of the proposed model in promoting the absorptive of wind power and improving the overall economic benefit of the system. References 23, figures 8, table 1.https://techned.org.ua/index.php/techned/article/view/222the uncertainty of wind powergeneration-load-storage coordination optimizationoptimized schedulingwind power consumptiondemand response
spellingShingle Ruiqing Lian
Yiran You
Yong Li
Shiwei Su
GENERATION-LOAD-STORAGE COOPERATIVE OPTIMIZATION SCHEDULING OF COMBINED HEAT AND POWER SYSTEM CONSIDERING WIND POWER UNCERTAINTY AND DEMAND RESPONSE
Технічна електродинаміка
the uncertainty of wind power
generation-load-storage coordination optimization
optimized scheduling
wind power consumption
demand response
title GENERATION-LOAD-STORAGE COOPERATIVE OPTIMIZATION SCHEDULING OF COMBINED HEAT AND POWER SYSTEM CONSIDERING WIND POWER UNCERTAINTY AND DEMAND RESPONSE
title_full GENERATION-LOAD-STORAGE COOPERATIVE OPTIMIZATION SCHEDULING OF COMBINED HEAT AND POWER SYSTEM CONSIDERING WIND POWER UNCERTAINTY AND DEMAND RESPONSE
title_fullStr GENERATION-LOAD-STORAGE COOPERATIVE OPTIMIZATION SCHEDULING OF COMBINED HEAT AND POWER SYSTEM CONSIDERING WIND POWER UNCERTAINTY AND DEMAND RESPONSE
title_full_unstemmed GENERATION-LOAD-STORAGE COOPERATIVE OPTIMIZATION SCHEDULING OF COMBINED HEAT AND POWER SYSTEM CONSIDERING WIND POWER UNCERTAINTY AND DEMAND RESPONSE
title_short GENERATION-LOAD-STORAGE COOPERATIVE OPTIMIZATION SCHEDULING OF COMBINED HEAT AND POWER SYSTEM CONSIDERING WIND POWER UNCERTAINTY AND DEMAND RESPONSE
title_sort generation load storage cooperative optimization scheduling of combined heat and power system considering wind power uncertainty and demand response
topic the uncertainty of wind power
generation-load-storage coordination optimization
optimized scheduling
wind power consumption
demand response
url https://techned.org.ua/index.php/techned/article/view/222
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AT yongli generationloadstoragecooperativeoptimizationschedulingofcombinedheatandpowersystemconsideringwindpoweruncertaintyanddemandresponse
AT shiweisu generationloadstoragecooperativeoptimizationschedulingofcombinedheatandpowersystemconsideringwindpoweruncertaintyanddemandresponse