Author:
Meng Shuqian,Xu Xiaoning,Wang Di
Abstract
Abstract
Photovoltaic microgrid (PV) is a promising direction of new energy generation technology. However, due to the performance of low-voltage side interface affected by complex disturbance, PV microgrid has the problem of output voltage fluctuation, which will make the power quality not guaranteed. In order to stabilize the low-voltage side load supply, the active disturbance rejection control strategy with disturbance compensation and feed-forward correction (ADRC-DCFC) is proposed. By expanding the conventional state observer (ESO) dimension, a feed-forward correction link for disturbance tracking compensation is added. In contrast, the internal deviations extracted from the system model are actively added to the disturbance compensation link. In addition, a theoretical analysis of its disturbance observation performance and noise suppression performance is presented. Experimental results on a 300-watt test platform verified the accuracy and effectiveness of the ADRC-DCFC.
Subject
Computer Science Applications,History,Education
Reference15 articles.
1. Life Cycle Assessment of Solar Photovoltaic Microgrid Systems in Off-Grid Communities;Bilich;Environmental Science & Technology,2017
2. Domain of Stability Characterization for Hybrid Microgrids Considering Different Power Sharing Conditions;Aderibole,2018
3. Smooth Neuroadaptive PI Tracking Control of Nonlinear Systems With Unknown and Nonsmooth Actuation Characteristics;Song,2017
4. Control of an LLC Resonant Converter Using Load Feedback Linearization;Fang,2017
5. Adaptive Neural Network Dynamic Surface Control for a Class of Time-Delay Nonlinear Systems With Hysteresis Inputs and Dynamic Uncertainties;Xiuyu,2015