TY - JOUR
T1 - Improved ADRC With a Disturbance-Separation CESO Based on Complex Coefficient-Filter for Current Source Rectifier
AU - Ding, Hao
AU - Zhu, Zengzeng
AU - Guo, Xiaoqiang
AU - Li, Shouxiang
AU - Zhang, Zhenbin
AU - Ma, Kai
N1 - Publisher Copyright:
© 1982-2012 IEEE.
PY - 2026
Y1 - 2026
N2 - Under complicated operations, the tracking performance and interference rejection ability of the LC-filtered current source rectifiers (CSRs) are inevitably compromised by various disturbances, including aperiodic and periodic disturbances. Aiming at this problem, an improved active disturbance rejection controller (ADRC) with a disturbance-separation cascaded extended state observer (DSCESO) based on a complex-coefficient filter (CCF) is proposed to improve the disturbance rejection ability. First, by integrating a CCF into the second cascade level of CESO, the proposed CCF-CESO can not only overcome the trade-off between estimation performance and noise suppression, but also accurately estimate positive and negative sequence disturbances arising from converter nonlinearity and nonideal grid conditions. Second, the CCF-DSCESO is constructed to decouple different disturbances based on disturbance separation technology, thereby further strengthening the robustness and tracking accuracy. Finally, comparative experimental results verify the superiority of the proposed method.
AB - Under complicated operations, the tracking performance and interference rejection ability of the LC-filtered current source rectifiers (CSRs) are inevitably compromised by various disturbances, including aperiodic and periodic disturbances. Aiming at this problem, an improved active disturbance rejection controller (ADRC) with a disturbance-separation cascaded extended state observer (DSCESO) based on a complex-coefficient filter (CCF) is proposed to improve the disturbance rejection ability. First, by integrating a CCF into the second cascade level of CESO, the proposed CCF-CESO can not only overcome the trade-off between estimation performance and noise suppression, but also accurately estimate positive and negative sequence disturbances arising from converter nonlinearity and nonideal grid conditions. Second, the CCF-DSCESO is constructed to decouple different disturbances based on disturbance separation technology, thereby further strengthening the robustness and tracking accuracy. Finally, comparative experimental results verify the superiority of the proposed method.
KW - Active disturbance rejection control (ADRC)
KW - cascaded extended state observer (CESO)
KW - complex coefficient filter (CCF)
KW - current source rectifier (CSR)
UR - https://www.scopus.com/pages/publications/105016733718
U2 - 10.1109/TIE.2025.3595964
DO - 10.1109/TIE.2025.3595964
M3 - Article
AN - SCOPUS:105016733718
SN - 0278-0046
VL - 73
SP - 60
EP - 71
JO - IEEE Transactions on Industrial Electronics
JF - IEEE Transactions on Industrial Electronics
IS - 1
ER -