TY - JOUR
T1 - Review of Topologies, Application Areas, Modeling, and Control Methods for Switched Capacitor Circuits
AU - Yang, Ting
AU - Yang, Lei
AU - Wu, Bin
AU - He, Liangzong
AU - Zhang, Yuanqi
AU - Chen, Xinze
AU - Feng, Baoxiang
AU - Li, Xiaojie
AU - Wen, Haibing
AU - Tian, Jiaqiang
AU - Zhao, Yaopeng
AU - Hu, Mengying
AU - Huang, Jingjing
AU - Zhu, Darui
AU - Zhang, Aimin
AU - Tong, Xiangqian
N1 - Publisher Copyright:
© 1986-2012 IEEE.
PY - 2024/4/1
Y1 - 2024/4/1
N2 - Switched capacitor (SC) circuits have been widely used for low-power and high-power areas, such as the integration circuit power supply, energy conversion for wearable devices, and power supply for data centers and electrical vehicles. The dc-dc conversion, dc-ac inversion, ac-dc rectification, and ac-ac conversion of SC topologies have been explored and discussed. This article provides a review of different topologies, application areas, mathematical models, and control methods for SC circuits. Compared with other review papers on SC converters, this article deeply and comprehensively surveys the topological structure classification and the equivalent circuits. It explores the application fields and the operation performance of SC circuits. The modeling method is presented as the steady-state modeling method and the transient modeling method. It will help to achieve accurate simulation and prediction and lay the foundation for theory analysis. The different mathematical models' construction algorithms and the suitable application range are analyzed in this article. The control methods determine the quality of the output voltage and the output power for SC circuits. They are classified as the linear control methods and the nonlinear control methods. The nonlinear control methods will help to achieve high-quality output voltage or current regulation with low ripples and fast dynamical response speed. The comparison of different topologies, application areas, modeling methods, and control methods is provided and discussed. What is more, the simulation accuracy of different modeling strategies and static and dynamical regulation performance of different control algorithms are presented in this article, respectively. The challenges and opportunities for SC circuits are prospected.
AB - Switched capacitor (SC) circuits have been widely used for low-power and high-power areas, such as the integration circuit power supply, energy conversion for wearable devices, and power supply for data centers and electrical vehicles. The dc-dc conversion, dc-ac inversion, ac-dc rectification, and ac-ac conversion of SC topologies have been explored and discussed. This article provides a review of different topologies, application areas, mathematical models, and control methods for SC circuits. Compared with other review papers on SC converters, this article deeply and comprehensively surveys the topological structure classification and the equivalent circuits. It explores the application fields and the operation performance of SC circuits. The modeling method is presented as the steady-state modeling method and the transient modeling method. It will help to achieve accurate simulation and prediction and lay the foundation for theory analysis. The different mathematical models' construction algorithms and the suitable application range are analyzed in this article. The control methods determine the quality of the output voltage and the output power for SC circuits. They are classified as the linear control methods and the nonlinear control methods. The nonlinear control methods will help to achieve high-quality output voltage or current regulation with low ripples and fast dynamical response speed. The comparison of different topologies, application areas, modeling methods, and control methods is provided and discussed. What is more, the simulation accuracy of different modeling strategies and static and dynamical regulation performance of different control algorithms are presented in this article, respectively. The challenges and opportunities for SC circuits are prospected.
KW - Control method
KW - modeling method
KW - steady-state model
KW - switched capacitor (SC) circuits
KW - transient model
UR - https://www.scopus.com/pages/publications/85182357749
U2 - 10.1109/TPEL.2024.3350158
DO - 10.1109/TPEL.2024.3350158
M3 - 文章
AN - SCOPUS:85182357749
SN - 0885-8993
VL - 39
SP - 4091
EP - 4116
JO - IEEE Transactions on Power Electronics
JF - IEEE Transactions on Power Electronics
IS - 4
ER -