A Multi-Resonant based reference feedforward adaptive voltage control for Grid-Forming inverter in island mode to compensate system uncertain and harmonic distortions
作者:Renzhi Huang, Zaijun Wu, Xueyong Xu, Xiangjun Quan, Mingfei Li, Zichen Wang, Mengnan Liu · 发表于:International Journal of Electrical Power & Energy Systems · 年份:2024 · DOI:10.1016/j.ijepes.2024.110438 · 被引用次数:6 · 研究领域:Microgrid Control and Optimization、Islanding Detection in Power Systems、Multilevel Inverters and Converters
• Adaptive controller integrates superior voltage regulation and minimal harmonic distortion with nonlinear loads. • The power control input enhances dynamic performance and resilience to disturbances. • The signal control input enables compensation for parameter uncertainties and ensures zero steady-state errors. • A multi-resonant controller can be incorporated to meet the steady-state requires because of the linearization achieved. This paper investigates a novel adaptive voltage control over a three-phase grid-forming (GFM) inverter. The proposed voltage controller includes two function parts: power control input and signal control input. The former improves dynamic performance by taking advantage of state feedback, load current feedforward, and reference feedforward, while the latter, a time-variant signal in reference feedforward, considers uncertainties of system parameters and load disturbances. In order to compensate for harmonic distortion on loads, a multi-resonant control is added to the signal control input. Then, a multi-resonant based reference feedforward adaptive control strategy is put forward. Thanks to its linearization, the stability of the strategy is ensured by the mature linear control theory instead of the Lyapunov stability theory. Then, the principles of parameter selection based on the root locus method are introduced to improve the dynamic performance of this technique. Compared with classical PI/PR methods or other adaptive ones, this newly propo...