Distributed adaptive optimal secondary control for AC islanded microgrid under multiple event-triggered mechanisms.

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Bibliographic Details
Title: Distributed adaptive optimal secondary control for AC islanded microgrid under multiple event-triggered mechanisms.
Authors: Duan, Qin-Shuo1 (AUTHOR) 6221913022@stu.jiangnan.edu.cn, Tang, Ze1 (AUTHOR) tangze0124@gmail.com, Ding, Dong2,3 (AUTHOR) dingd@sdju.edu.cn
Source: ISA Transactions. Aug2025, Vol. 163, p65-75. 11p.
Subjects: Stability theory, Lyapunov stability, Microgrids, Cost control, Voltage
Abstract: This paper mainly proposes a novel distributed secondary event-triggering control strategy for AC islanded microgrid, which not only achieves the consistency of frequency and voltage but also considers the proportional sharing of active power. Compared to the traditional fixed periodic communication, the proposed multiple event-triggered strategy only conducts a sparse communication among distributed generators (D G s). For accelerating the convergence speed and saving the control costs efficiently, a time-varying adaptive updating law for frequency and voltage is proposed. Furthermore, it is confirmed that there is no Zeno behavior. Combined with Lyapunov stability theory, the control strategy is proven to be capable for driving the stability and consistency of microgrid. Finally, three numerical simulations are presented to demonstrate the effectiveness of control mechanisms. • A novel secondary control algorithm is proposed to achieve the complete synchronization of frequency and voltage. • A novel event-triggering mechanism with different time scales is proposed. • The event-triggered condition of state error derivatives is introduced to enhance the fast response performance of event-triggering. • A novel adaptive updating time-varying law is proposed for the control strengths in frequency and voltage feedback controllers. [ABSTRACT FROM AUTHOR]
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Database: Engineering Source
Description
Abstract:This paper mainly proposes a novel distributed secondary event-triggering control strategy for AC islanded microgrid, which not only achieves the consistency of frequency and voltage but also considers the proportional sharing of active power. Compared to the traditional fixed periodic communication, the proposed multiple event-triggered strategy only conducts a sparse communication among distributed generators (D G s). For accelerating the convergence speed and saving the control costs efficiently, a time-varying adaptive updating law for frequency and voltage is proposed. Furthermore, it is confirmed that there is no Zeno behavior. Combined with Lyapunov stability theory, the control strategy is proven to be capable for driving the stability and consistency of microgrid. Finally, three numerical simulations are presented to demonstrate the effectiveness of control mechanisms. • A novel secondary control algorithm is proposed to achieve the complete synchronization of frequency and voltage. • A novel event-triggering mechanism with different time scales is proposed. • The event-triggered condition of state error derivatives is introduced to enhance the fast response performance of event-triggering. • A novel adaptive updating time-varying law is proposed for the control strengths in frequency and voltage feedback controllers. [ABSTRACT FROM AUTHOR]
ISSN:00190578
DOI:10.1016/j.isatra.2025.04.036