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Bus Voltage Control of Photovoltaic Grid Connected Inverter Based on Adaptive Linear Active Disturbance Rejection

Miao Zhang, Keyu Zhuang, Tong Zhao, Xianli Chen, Jingze Xue, Zheng Qiao, Shuai Cui, Yunlong Gao

2022Energies15 citationsDOIOpen Access PDF

Abstract

According to the traditional voltage and current double closed-loop control mode, the inverter management strategy for photovoltaic grid connection has insufficient anti-interference ability and slow response. This paper proposes a control strategy that applies adaptive-linear active disturbance rejection control (A–LADRC) to the outer loop control to achieve the purpose of anti-interference. The control strategy uses the linear extended state observer (LESO) to evaluate external interference caused by the change of external conditions and the internal disturbance caused by parameter uncertainty. PD controller compensates the disturbances and adds adaptive control to simplify parameter adjustment. Finally, this paper takes advantage of Lyapunov theory to conduct stability analysis. Compared with the traditional linear active disturbance rejection control (LADRC), the superiority of this control strategy is verified. The experimental results show that the system has better control performance and anti-interference ability in the face of various disturbances.

Topics & Concepts

Control theory (sociology)Active disturbance rejection controlController (irrigation)Photovoltaic systemState observerAdaptive controlGridDisturbance (geology)InverterLyapunov functionInterference (communication)Computer scienceEngineeringControl engineeringVoltageControl (management)MathematicsNonlinear systemTelecommunicationsPhysicsElectrical engineeringChannel (broadcasting)PaleontologyAgronomyArtificial intelligenceGeometryQuantum mechanicsBiologyMicrogrid Control and OptimizationIslanding Detection in Power SystemsPower Systems and Renewable Energy
Bus Voltage Control of Photovoltaic Grid Connected Inverter Based on Adaptive Linear Active Disturbance Rejection | Litcius