A Combined Clearing Model of Electric Energy, Inertia, and Primary Frequency Regulation Considering Emergency Interruptible Load Service
The ever-increasing proportion of new energy units has led to prominent frequency safety issues in the power system. In order to avoid serious accidents after the system encounters large disturbance, it is necessary to purchase inertia and primary frequency regulation auxiliary services and integrat...
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Editorial Office of Journal of Shanghai Jiao Tong University
2025-01-01
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Series: | Shanghai Jiaotong Daxue xuebao |
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Online Access: | https://xuebao.sjtu.edu.cn/article/2025/1006-2467/1006-2467-59-1-16.shtml |
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author | ZHU Lan, ZHANG Xuehan, TANG Longjun, QIU Nianhang, TIAN Yingjie |
author_facet | ZHU Lan, ZHANG Xuehan, TANG Longjun, QIU Nianhang, TIAN Yingjie |
author_sort | ZHU Lan, ZHANG Xuehan, TANG Longjun, QIU Nianhang, TIAN Yingjie |
collection | DOAJ |
description | The ever-increasing proportion of new energy units has led to prominent frequency safety issues in the power system. In order to avoid serious accidents after the system encounters large disturbance, it is necessary to purchase inertia and primary frequency regulation auxiliary services and integrate rapid response resources such as emergency interruptible load service into the system. Therefore, based on a review of the domestic and foreign inertia ancillary service market, the frequency safety constraints considering the emergency interruptible load service are derived, and a joint clearing model of electric energy, inertia, and primary frequency regulation auxiliary services is proposed, considering emergency interruptible load service. Then, the model is transformed into a mixed integer second-order cone programming model for optimization. Finally, the effectiveness of the model is verified based on a numerical example, and the influence of the frequency safety constraints on the system clearing results is discussed. |
format | Article |
id | doaj-art-c254a28435404b3a8ca6e401cc9e7203 |
institution | Kabale University |
issn | 1006-2467 |
language | zho |
publishDate | 2025-01-01 |
publisher | Editorial Office of Journal of Shanghai Jiao Tong University |
record_format | Article |
series | Shanghai Jiaotong Daxue xuebao |
spelling | doaj-art-c254a28435404b3a8ca6e401cc9e72032025-02-06T09:45:28ZzhoEditorial Office of Journal of Shanghai Jiao Tong UniversityShanghai Jiaotong Daxue xuebao1006-24672025-01-01591162710.16183/j.cnki.jsjtu.2023.177A Combined Clearing Model of Electric Energy, Inertia, and Primary Frequency Regulation Considering Emergency Interruptible Load ServiceZHU Lan, ZHANG Xuehan, TANG Longjun, QIU Nianhang, TIAN Yingjie01. College of Electrical Engineering, Shanghai University of Electric Power, Shanghai 200090, China;2. East China Branch, State Grid Corporation of China, Shanghai 200120, China;3. Electric Power Research Institute of State Grid Shanghai Electric Power Company, Shanghai 200437, ChinaThe ever-increasing proportion of new energy units has led to prominent frequency safety issues in the power system. In order to avoid serious accidents after the system encounters large disturbance, it is necessary to purchase inertia and primary frequency regulation auxiliary services and integrate rapid response resources such as emergency interruptible load service into the system. Therefore, based on a review of the domestic and foreign inertia ancillary service market, the frequency safety constraints considering the emergency interruptible load service are derived, and a joint clearing model of electric energy, inertia, and primary frequency regulation auxiliary services is proposed, considering emergency interruptible load service. Then, the model is transformed into a mixed integer second-order cone programming model for optimization. Finally, the effectiveness of the model is verified based on a numerical example, and the influence of the frequency safety constraints on the system clearing results is discussed.https://xuebao.sjtu.edu.cn/article/2025/1006-2467/1006-2467-59-1-16.shtmlinertiaprimary frequency regulation (pfr)emergency interruptible load serviceancillary service marketfrequency safety constraintsmixed integer second-order cone programming |
spellingShingle | ZHU Lan, ZHANG Xuehan, TANG Longjun, QIU Nianhang, TIAN Yingjie A Combined Clearing Model of Electric Energy, Inertia, and Primary Frequency Regulation Considering Emergency Interruptible Load Service Shanghai Jiaotong Daxue xuebao inertia primary frequency regulation (pfr) emergency interruptible load service ancillary service market frequency safety constraints mixed integer second-order cone programming |
title | A Combined Clearing Model of Electric Energy, Inertia, and Primary Frequency Regulation Considering Emergency Interruptible Load Service |
title_full | A Combined Clearing Model of Electric Energy, Inertia, and Primary Frequency Regulation Considering Emergency Interruptible Load Service |
title_fullStr | A Combined Clearing Model of Electric Energy, Inertia, and Primary Frequency Regulation Considering Emergency Interruptible Load Service |
title_full_unstemmed | A Combined Clearing Model of Electric Energy, Inertia, and Primary Frequency Regulation Considering Emergency Interruptible Load Service |
title_short | A Combined Clearing Model of Electric Energy, Inertia, and Primary Frequency Regulation Considering Emergency Interruptible Load Service |
title_sort | combined clearing model of electric energy inertia and primary frequency regulation considering emergency interruptible load service |
topic | inertia primary frequency regulation (pfr) emergency interruptible load service ancillary service market frequency safety constraints mixed integer second-order cone programming |
url | https://xuebao.sjtu.edu.cn/article/2025/1006-2467/1006-2467-59-1-16.shtml |
work_keys_str_mv | AT zhulanzhangxuehantanglongjunqiunianhangtianyingjie acombinedclearingmodelofelectricenergyinertiaandprimaryfrequencyregulationconsideringemergencyinterruptibleloadservice AT zhulanzhangxuehantanglongjunqiunianhangtianyingjie combinedclearingmodelofelectricenergyinertiaandprimaryfrequencyregulationconsideringemergencyinterruptibleloadservice |