Optimal Dispatch of Power System with P2G-Wind-Thermal-Nuclear-Carbon Capture Units

In power systems consisted of wind power generation (WPG), thermal, nuclear, carbon capture units, the peak shaving depth could be inaccurately selected when nuclear power units participate in peak regulation. In addition, the excessive wind power curtailment could also be an issue. In this paper, a...

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Main Authors: Wenhao CHAO, Zhi YUAN, Ji LI
Format: Article
Language:zho
Published: State Grid Energy Research Institute 2024-01-01
Series:Zhongguo dianli
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Online Access:https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.202306048
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author Wenhao CHAO
Zhi YUAN
Ji LI
author_facet Wenhao CHAO
Zhi YUAN
Ji LI
author_sort Wenhao CHAO
collection DOAJ
description In power systems consisted of wind power generation (WPG), thermal, nuclear, carbon capture units, the peak shaving depth could be inaccurately selected when nuclear power units participate in peak regulation. In addition, the excessive wind power curtailment could also be an issue. In this paper, a linearized peaking depth model for nuclear units is proposed considering their co-operation with power-to-gas (P2G), WPG, thermal, and carbon capture units. First, based on the load tracking mode of nuclear power units, the accuracy of peak shaving depth selection could be improved by adding continuous variables. Secondly, the joint operation mode of the carbon capture power plant-P2G and demand response resources could facilitate the accommodation of WPG. Finally, the minimization of system comprehensive operation costs is selected as the overall objective function. At the same time, the carbon trading mechanism is considered to build the simulation model on the Matlab platform to verify the effectiveness of the proposed model. The results show that compared with the multi -source combination system of fixed peak-module gears, the proposed multi-source combined system operation mode can ensure the safe and stable operation of the nuclear power unit while achieving WPG utilization. The carbon emissions and comprehensive operating costs have decreased by 13.74% and 6.27%, respectively, which improves the low-carbon and economics of system operation.
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spelling doaj-art-36be6a0e121c4c1dabfc82422b15d7832025-08-20T02:58:50ZzhoState Grid Energy Research InstituteZhongguo dianli1004-96492024-01-0157118319410.11930/j.issn.1004-9649.202306048zgdl-56-11-wenhaoOptimal Dispatch of Power System with P2G-Wind-Thermal-Nuclear-Carbon Capture UnitsWenhao CHAO0Zhi YUAN1Ji LI2Engineering Research Center of Renewable Energy Power Generation and Grid-Connected Control, Ministry of Education, Xinjiang University, Urumqi 830017, ChinaEngineering Research Center of Renewable Energy Power Generation and Grid-Connected Control, Ministry of Education, Xinjiang University, Urumqi 830017, ChinaElectric Power Research Institute of State Grid Xinjiang Electric Power Co., Ltd., Urumqi 830011, ChinaIn power systems consisted of wind power generation (WPG), thermal, nuclear, carbon capture units, the peak shaving depth could be inaccurately selected when nuclear power units participate in peak regulation. In addition, the excessive wind power curtailment could also be an issue. In this paper, a linearized peaking depth model for nuclear units is proposed considering their co-operation with power-to-gas (P2G), WPG, thermal, and carbon capture units. First, based on the load tracking mode of nuclear power units, the accuracy of peak shaving depth selection could be improved by adding continuous variables. Secondly, the joint operation mode of the carbon capture power plant-P2G and demand response resources could facilitate the accommodation of WPG. Finally, the minimization of system comprehensive operation costs is selected as the overall objective function. At the same time, the carbon trading mechanism is considered to build the simulation model on the Matlab platform to verify the effectiveness of the proposed model. The results show that compared with the multi -source combination system of fixed peak-module gears, the proposed multi-source combined system operation mode can ensure the safe and stable operation of the nuclear power unit while achieving WPG utilization. The carbon emissions and comprehensive operating costs have decreased by 13.74% and 6.27%, respectively, which improves the low-carbon and economics of system operation.https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.202306048nuclear power unitwind power accommodationcarbon capturepower to gasoptimal dispatch
spellingShingle Wenhao CHAO
Zhi YUAN
Ji LI
Optimal Dispatch of Power System with P2G-Wind-Thermal-Nuclear-Carbon Capture Units
Zhongguo dianli
nuclear power unit
wind power accommodation
carbon capture
power to gas
optimal dispatch
title Optimal Dispatch of Power System with P2G-Wind-Thermal-Nuclear-Carbon Capture Units
title_full Optimal Dispatch of Power System with P2G-Wind-Thermal-Nuclear-Carbon Capture Units
title_fullStr Optimal Dispatch of Power System with P2G-Wind-Thermal-Nuclear-Carbon Capture Units
title_full_unstemmed Optimal Dispatch of Power System with P2G-Wind-Thermal-Nuclear-Carbon Capture Units
title_short Optimal Dispatch of Power System with P2G-Wind-Thermal-Nuclear-Carbon Capture Units
title_sort optimal dispatch of power system with p2g wind thermal nuclear carbon capture units
topic nuclear power unit
wind power accommodation
carbon capture
power to gas
optimal dispatch
url https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.202306048
work_keys_str_mv AT wenhaochao optimaldispatchofpowersystemwithp2gwindthermalnuclearcarboncaptureunits
AT zhiyuan optimaldispatchofpowersystemwithp2gwindthermalnuclearcarboncaptureunits
AT jili optimaldispatchofpowersystemwithp2gwindthermalnuclearcarboncaptureunits