Optimal scheduling modelling for wind power accommodation with compressed air energy storage and price-based demand response

C L Xu, L X Li, Y W Li, J Y Liu, S H Miao and Q Y Tu
Institute of Physics (IOP)
Published 2018
Publication Date:
2018-10-31
Publisher:
Institute of Physics (IOP)
Print ISSN:
1755-1307
Electronic ISSN:
1755-1315
Topics:
Geography
Geosciences
Physics
Published by:
_version_ 1839208215474077697
autor C L Xu, L X Li, Y W Li, J Y Liu, S H Miao and Q Y Tu
beschreibung Nowadays, price-based demand response (PDR) programs with compressed air energy storage (CAES) systems have been rapidly developed in China for wind power generation propagation. Based on this development trend, an optimal scheduling model considering thermal power units (TUs), wind power plants, PDR mechanisms and CAES plants is studied in this paper. Considering the factors of uncertainties in PDR, wind power output and electricity demand, a fuzzy power system optimal scheduling model for minimizing the sum of TUs operation cost, CAES plants cost and wind curtailment penalty is proposed. According to the fuzzy scheduling theory, the fuzzy chance constrains are converted into their clear equivalent forms. The simulation study is implemented with using the data from the Huntorf CAES plant, which can verify the feasibility and effectiveness of the optimal scheduling model. It is found that the use of CAES and PDR results in 11.1% reduction in thermal power units operation cost an...
citation_standardnr 6350404
datenlieferant ipn_articles
feed_id 108844
feed_publisher Institute of Physics (IOP)
feed_publisher_url http://www.iop.org/
insertion_date 2018-10-31
journaleissn 1755-1315
journalissn 1755-1307
publikationsjahr_anzeige 2018
publikationsjahr_facette 2018
publikationsjahr_intervall 7984:2015-2019
publikationsjahr_sort 2018
publisher Institute of Physics (IOP)
quelle IOP Conference Series: Earth and Environmental Science
relation http://iopscience.iop.org/1755-1315/188/1/012095
search_space articles
shingle_author_1 C L Xu, L X Li, Y W Li, J Y Liu, S H Miao and Q Y Tu
shingle_author_2 C L Xu, L X Li, Y W Li, J Y Liu, S H Miao and Q Y Tu
shingle_author_3 C L Xu, L X Li, Y W Li, J Y Liu, S H Miao and Q Y Tu
shingle_author_4 C L Xu, L X Li, Y W Li, J Y Liu, S H Miao and Q Y Tu
shingle_catch_all_1 Optimal scheduling modelling for wind power accommodation with compressed air energy storage and price-based demand response
Nowadays, price-based demand response (PDR) programs with compressed air energy storage (CAES) systems have been rapidly developed in China for wind power generation propagation. Based on this development trend, an optimal scheduling model considering thermal power units (TUs), wind power plants, PDR mechanisms and CAES plants is studied in this paper. Considering the factors of uncertainties in PDR, wind power output and electricity demand, a fuzzy power system optimal scheduling model for minimizing the sum of TUs operation cost, CAES plants cost and wind curtailment penalty is proposed. According to the fuzzy scheduling theory, the fuzzy chance constrains are converted into their clear equivalent forms. The simulation study is implemented with using the data from the Huntorf CAES plant, which can verify the feasibility and effectiveness of the optimal scheduling model. It is found that the use of CAES and PDR results in 11.1% reduction in thermal power units operation cost an...
C L Xu, L X Li, Y W Li, J Y Liu, S H Miao and Q Y Tu
Institute of Physics (IOP)
1755-1307
17551307
1755-1315
17551315
shingle_catch_all_2 Optimal scheduling modelling for wind power accommodation with compressed air energy storage and price-based demand response
Nowadays, price-based demand response (PDR) programs with compressed air energy storage (CAES) systems have been rapidly developed in China for wind power generation propagation. Based on this development trend, an optimal scheduling model considering thermal power units (TUs), wind power plants, PDR mechanisms and CAES plants is studied in this paper. Considering the factors of uncertainties in PDR, wind power output and electricity demand, a fuzzy power system optimal scheduling model for minimizing the sum of TUs operation cost, CAES plants cost and wind curtailment penalty is proposed. According to the fuzzy scheduling theory, the fuzzy chance constrains are converted into their clear equivalent forms. The simulation study is implemented with using the data from the Huntorf CAES plant, which can verify the feasibility and effectiveness of the optimal scheduling model. It is found that the use of CAES and PDR results in 11.1% reduction in thermal power units operation cost an...
C L Xu, L X Li, Y W Li, J Y Liu, S H Miao and Q Y Tu
Institute of Physics (IOP)
1755-1307
17551307
1755-1315
17551315
shingle_catch_all_3 Optimal scheduling modelling for wind power accommodation with compressed air energy storage and price-based demand response
Nowadays, price-based demand response (PDR) programs with compressed air energy storage (CAES) systems have been rapidly developed in China for wind power generation propagation. Based on this development trend, an optimal scheduling model considering thermal power units (TUs), wind power plants, PDR mechanisms and CAES plants is studied in this paper. Considering the factors of uncertainties in PDR, wind power output and electricity demand, a fuzzy power system optimal scheduling model for minimizing the sum of TUs operation cost, CAES plants cost and wind curtailment penalty is proposed. According to the fuzzy scheduling theory, the fuzzy chance constrains are converted into their clear equivalent forms. The simulation study is implemented with using the data from the Huntorf CAES plant, which can verify the feasibility and effectiveness of the optimal scheduling model. It is found that the use of CAES and PDR results in 11.1% reduction in thermal power units operation cost an...
C L Xu, L X Li, Y W Li, J Y Liu, S H Miao and Q Y Tu
Institute of Physics (IOP)
1755-1307
17551307
1755-1315
17551315
shingle_catch_all_4 Optimal scheduling modelling for wind power accommodation with compressed air energy storage and price-based demand response
Nowadays, price-based demand response (PDR) programs with compressed air energy storage (CAES) systems have been rapidly developed in China for wind power generation propagation. Based on this development trend, an optimal scheduling model considering thermal power units (TUs), wind power plants, PDR mechanisms and CAES plants is studied in this paper. Considering the factors of uncertainties in PDR, wind power output and electricity demand, a fuzzy power system optimal scheduling model for minimizing the sum of TUs operation cost, CAES plants cost and wind curtailment penalty is proposed. According to the fuzzy scheduling theory, the fuzzy chance constrains are converted into their clear equivalent forms. The simulation study is implemented with using the data from the Huntorf CAES plant, which can verify the feasibility and effectiveness of the optimal scheduling model. It is found that the use of CAES and PDR results in 11.1% reduction in thermal power units operation cost an...
C L Xu, L X Li, Y W Li, J Y Liu, S H Miao and Q Y Tu
Institute of Physics (IOP)
1755-1307
17551307
1755-1315
17551315
shingle_title_1 Optimal scheduling modelling for wind power accommodation with compressed air energy storage and price-based demand response
shingle_title_2 Optimal scheduling modelling for wind power accommodation with compressed air energy storage and price-based demand response
shingle_title_3 Optimal scheduling modelling for wind power accommodation with compressed air energy storage and price-based demand response
shingle_title_4 Optimal scheduling modelling for wind power accommodation with compressed air energy storage and price-based demand response
timestamp 2025-07-31T23:47:17.356Z
titel Optimal scheduling modelling for wind power accommodation with compressed air energy storage and price-based demand response
titel_suche Optimal scheduling modelling for wind power accommodation with compressed air energy storage and price-based demand response
topic R
TE-TZ
U
uid ipn_articles_6350404