Adaptive Event-Triggered Secondary Frequency Control in Islanded Microgrids with Auxiliary Energy Storage Systems

Under the high penetration of new energy, the frequency stability of islanded microgrids is challenged by the uncertain output of new energy and the random fluctuation of load. The existing secondary frequency control schemes with auxiliary energy storage systems mainly adopt periodic trigger contro...

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التفاصيل البيبلوغرافية
الحاوية / القاعدة:Zhongguo dianli
المؤلفون الرئيسيون: Fei XUE, Hongqiang LI, Bei TIAN, Xin MA
التنسيق: مقال
اللغة:الصينية
منشور في: State Grid Energy Research Institute 2023-09-01
الموضوعات:
الوصول للمادة أونلاين:https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.202210130
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author Fei XUE
Hongqiang LI
Bei TIAN
Xin MA
author_facet Fei XUE
Hongqiang LI
Bei TIAN
Xin MA
author_sort Fei XUE
collection DOAJ
container_title Zhongguo dianli
description Under the high penetration of new energy, the frequency stability of islanded microgrids is challenged by the uncertain output of new energy and the random fluctuation of load. The existing secondary frequency control schemes with auxiliary energy storage systems mainly adopt periodic trigger control schemes, which have the disadvantage of high network bandwidth occupancy. Therefore, an adaptive event-triggered secondary frequency control strategy considering auxiliary energy storage systems and uncertain delays is proposed. First, an adaptive participation mechanism considering the state-of-charge (SoC) of energy storage devices is designed to avoid overcharge and overdischarge without affecting the control structure. Second, in order to reduce the network bandwidth occupation, an adaptive event-triggered control (ETC) strategy is designed. Only when the deviations of the secondary frequency control system exceed the trigger threshold, the statuses and control instructions can be transmitted. Finally, the design criteria of ETC parameters are derived based on Lyapunov stability theory. Simulation results show that compared with the periodic trigger control scheme, the proposed method reduces the network bandwidth occupancy by 95.3%, and the absolute value integral of frequency deviation is reduced by 8.98%.
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spelling doaj-art-630ebb42a4ae4fbf99e8ef8c8a5c689b2025-08-20T02:56:52ZzhoState Grid Energy Research InstituteZhongguo dianli1004-96492023-09-0156919620510.11930/j.issn.1004-9649.202210130zgdl-56-9-xuefeiAdaptive Event-Triggered Secondary Frequency Control in Islanded Microgrids with Auxiliary Energy Storage SystemsFei XUE0Hongqiang LI1Bei TIAN2Xin MA3State Grid Ningxia Electric Power Co., Ltd. Electric Power Research Institute, Yinchuan 750011, ChinaState Grid Ningxia Electric Power Co., Ltd. Electric Power Research Institute, Yinchuan 750011, ChinaState Grid Ningxia Electric Power Co., Ltd. Electric Power Research Institute, Yinchuan 750011, ChinaState Grid Ningxia Electric Power Co., Ltd. Electric Power Research Institute, Yinchuan 750011, ChinaUnder the high penetration of new energy, the frequency stability of islanded microgrids is challenged by the uncertain output of new energy and the random fluctuation of load. The existing secondary frequency control schemes with auxiliary energy storage systems mainly adopt periodic trigger control schemes, which have the disadvantage of high network bandwidth occupancy. Therefore, an adaptive event-triggered secondary frequency control strategy considering auxiliary energy storage systems and uncertain delays is proposed. First, an adaptive participation mechanism considering the state-of-charge (SoC) of energy storage devices is designed to avoid overcharge and overdischarge without affecting the control structure. Second, in order to reduce the network bandwidth occupation, an adaptive event-triggered control (ETC) strategy is designed. Only when the deviations of the secondary frequency control system exceed the trigger threshold, the statuses and control instructions can be transmitted. Finally, the design criteria of ETC parameters are derived based on Lyapunov stability theory. Simulation results show that compared with the periodic trigger control scheme, the proposed method reduces the network bandwidth occupancy by 95.3%, and the absolute value integral of frequency deviation is reduced by 8.98%.https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.202210130islanded microgirdsecondary frequency controlevent-triggered controlenergy storage systemadaptive control
spellingShingle Fei XUE
Hongqiang LI
Bei TIAN
Xin MA
Adaptive Event-Triggered Secondary Frequency Control in Islanded Microgrids with Auxiliary Energy Storage Systems
islanded microgird
secondary frequency control
event-triggered control
energy storage system
adaptive control
title Adaptive Event-Triggered Secondary Frequency Control in Islanded Microgrids with Auxiliary Energy Storage Systems
title_full Adaptive Event-Triggered Secondary Frequency Control in Islanded Microgrids with Auxiliary Energy Storage Systems
title_fullStr Adaptive Event-Triggered Secondary Frequency Control in Islanded Microgrids with Auxiliary Energy Storage Systems
title_full_unstemmed Adaptive Event-Triggered Secondary Frequency Control in Islanded Microgrids with Auxiliary Energy Storage Systems
title_short Adaptive Event-Triggered Secondary Frequency Control in Islanded Microgrids with Auxiliary Energy Storage Systems
title_sort adaptive event triggered secondary frequency control in islanded microgrids with auxiliary energy storage systems
topic islanded microgird
secondary frequency control
event-triggered control
energy storage system
adaptive control
url https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.202210130
work_keys_str_mv AT feixue adaptiveeventtriggeredsecondaryfrequencycontrolinislandedmicrogridswithauxiliaryenergystoragesystems
AT hongqiangli adaptiveeventtriggeredsecondaryfrequencycontrolinislandedmicrogridswithauxiliaryenergystoragesystems
AT beitian adaptiveeventtriggeredsecondaryfrequencycontrolinislandedmicrogridswithauxiliaryenergystoragesystems
AT xinma adaptiveeventtriggeredsecondaryfrequencycontrolinislandedmicrogridswithauxiliaryenergystoragesystems