scholarly journals New Double Closed Loop Linear Active Disturbance Rejection Control of Energy Storage Grid-Connected Inverter Based on Lead-Lag Correction Link

IEEE Access ◽  
2020 ◽  
Vol 8 ◽  
pp. 105411-105425
Author(s):  
Youjie Ma ◽  
Luyong Yang ◽  
Xuesong Zhou ◽  
Xia Yang
Author(s):  
Yuchang Ling ◽  
Junyi Dong ◽  
Hongbo Yang ◽  
Yali Xue ◽  
Jiang Zeng ◽  
...  

This paper proposes a linear active disturbance rejection control (LADRC) for gird-connected inverter with LCL filter to deal with parameters variation, internal coupling and external disturbance. Relative degree of plant is used to design LADRC and on the basis of relationship between LADRCs parameters and bandwidth, the parameters tuning are sum up in several guidable points. It is demonstrated that LADRC presents a good dynamic performances, high disturbance rejection and extremely robust to parameters variation in Matlab/Simulink.


Energies ◽  
2020 ◽  
Vol 13 (5) ◽  
pp. 1207
Author(s):  
Youjie Ma ◽  
Luyong Yang ◽  
Xuesong Zhou ◽  
Xia Yang ◽  
Yongliang Zhou ◽  
...  

The energy storage inverter system has the characteristics of nonlinearity, strong coupling, variable parameters, and flexible mode switching between parallel and off grid. In order to improve the control performance of the grid-side inverter of the energy storage system, an improved Linear Active Disturbance Rejection Control (LADRC) based on proportional differentiation is proposed to replace the traditional LADRC in the voltage outer loop control. In this paper, the observation gain coefficient of the sum of the disturbances of the traditional Linear Extended State Observer (LESO) is improved to a proportional differentiation link, which effectively reduces the degree of the disturbance observation amplitude drop and the phase lag, and increases the observation bandwidth of LESO. Compared with traditional LADRC, it not only improves the observation accuracy of LESO for disturbance, but also improves the anti-interference performance of LADRC. Finally, the control effects of improved LADRC and traditional LADRC on low-voltage ride-through at different degrees are analyzed and compared through simulation, which proves the rationality of the controller designed in this paper.


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