TY - GEN
T1 - Resonant Point Analysis of Generalized CLLC-Type DC Transformer in the Hybrid AC/DC Microgrid
AU - Sun, Yuangang
AU - Huang, Jingjing
AU - Zhang, Xin
AU - Yang, Bo
AU - Tong, Xiangqian
N1 - Publisher Copyright:
© 2018 IEEE.
PY - 2018/12/26
Y1 - 2018/12/26
N2 - The CLLC-type resonant DC Transformer (simplified as DCT) has been proposed in the coexisting hybrid AC/DC microgrid to substitute the traditional bulky line-frequency AC transformer. It can ensure the bus voltage matching and galvanic isolation as the high-frequency operating condition, high power-density as well as the adjustable characteristics. However, it is worthy pointing out that the hybrid AC/DC microgrid is a special application, which often poses a series of specific challenges to the DCT design, such as the transmission power features, efficiency, etc., which largely depend on the deviation between the switching and resonant frequency. Therefore, the resonant point of the CLLC-type resonant DCT is analyzed to guide its future parameters design in the hybrid AC/DC microgrid. Based on the system description, the equivalent mathematic model of the CLLC-type DCT is established to derive the resonant point number under various load conditions by minimizing the reactive power. An example is given with the simulation results to verify the theoretical analysis. Lab-scale CLLC-type DCT prototype has been developed for experimental verifications.
AB - The CLLC-type resonant DC Transformer (simplified as DCT) has been proposed in the coexisting hybrid AC/DC microgrid to substitute the traditional bulky line-frequency AC transformer. It can ensure the bus voltage matching and galvanic isolation as the high-frequency operating condition, high power-density as well as the adjustable characteristics. However, it is worthy pointing out that the hybrid AC/DC microgrid is a special application, which often poses a series of specific challenges to the DCT design, such as the transmission power features, efficiency, etc., which largely depend on the deviation between the switching and resonant frequency. Therefore, the resonant point of the CLLC-type resonant DCT is analyzed to guide its future parameters design in the hybrid AC/DC microgrid. Based on the system description, the equivalent mathematic model of the CLLC-type DCT is established to derive the resonant point number under various load conditions by minimizing the reactive power. An example is given with the simulation results to verify the theoretical analysis. Lab-scale CLLC-type DCT prototype has been developed for experimental verifications.
KW - CLLC
KW - hybrid AC/DC microgrid
KW - resonant converter
KW - switching frequency
UR - https://www.scopus.com/pages/publications/85061004090
U2 - 10.1109/PEAC.2018.8590485
DO - 10.1109/PEAC.2018.8590485
M3 - 会议稿件
AN - SCOPUS:85061004090
T3 - Proceedings - 2018 IEEE International Power Electronics and Application Conference and Exposition, PEAC 2018
BT - Proceedings - 2018 IEEE International Power Electronics and Application Conference and Exposition, PEAC 2018
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2018 IEEE International Power Electronics and Application Conference and Exposition, PEAC 2018
Y2 - 4 November 2018 through 7 November 2018
ER -