Abstract

In an isolated DC microgrid consisting of photovoltaic cells, an energy storage unit and load, reasonable control of grid-connected two-way AC/DC converter can effectively realize coordinated power distribution and bus voltage stabilization of the microgrid. A mathematical model of grid-connected converter was established first in this paper, followed by a simulation analysis of the grid-connected converter under direct voltage control. In consideration of the fact that the ideal dynamic voltage response could not be realized by conventional control of the grid-connected converter, a seamless switching control strategy of inhibiting voltage fluctuation was proposed based on the voltage fluctuation analysis of the AC/DC converter, which improved the robust stability of the DC microgrid. The effectiveness and feasibility of the proposed control strategy were verified through the simulation results.

Highlights

  • GURRS FRQWUROW FDQ EH NQRZQ IURP WKH DERYH DQDO\VLV WKDW WKH JULG FRQQHFWHG FXUUHQW FRQYHUWHU KDV WZR RSHUDWLRQ PRGHV QDPHO\ GLUHFW YROWDJH FRQWURO PRGH DQG ORFNLQJ PRGH :KHQ WKH IRUPHU LV DGRSWHG 3, FRQWUROOHU ZLOO EH XVHG IRU ERWK LQQHU FXUUHQW ORRS DQG RXWHU YROWDJH ORRS ,W FDQ

  • KiI sEORFN GLDJUDP RI WKH FXUUHQW ORRS FRQWURO DIWHU DGGLWLRQ RI VDPSOLQJ GHOD\ DQG 3:0 VPDOO LQHUWLD OLQN LV VKRZQ.

  • LQWHUPHGLDWH OLQN LV WKH UHVXOW RI MRLQW DFWLRQ RI VDPSOLQJ GHOD\ DQG 3:0 VPDOO LQHUWLD.

Read more

Summary

GURRS FRQWURO

W FDQ EH NQRZQ IURP WKH DERYH DQDO\VLV WKDW WKH JULG FRQQHFWHG FXUUHQW FRQYHUWHU KDV WZR RSHUDWLRQ PRGHV QDPHO\ GLUHFW YROWDJH FRQWURO PRGH DQG ORFNLQJ PRGH :KHQ WKH IRUPHU LV DGRSWHG 3, FRQWUROOHU ZLOO EH XVHG IRU ERWK LQQHU FXUUHQW ORRS DQG RXWHU YROWDJH ORRS ,W FDQ

KiI s
RXWSXW SRZHU RI WKH FRQYHUWHU VDWLVILHV WKH UHODWLRQDO

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call

Disclaimer: All third-party content on this website/platform is and will remain the property of their respective owners and is provided on "as is" basis without any warranties, express or implied. Use of third-party content does not indicate any affiliation, sponsorship with or endorsement by them. Any references to third-party content is to identify the corresponding services and shall be considered fair use under The CopyrightLaw.