Hybrid Three-Phase/Single-Phase Microgrid Architecture with Power Management Capabilities

Qiuye Sun, Jianguo Zhou, Josep M. Guerrero, Huaguang Zhang

Research output: Contribution to journalJournal articleResearchpeer-review

136 Citations (Scopus)
1334 Downloads (Pure)

Abstract

With the fast proliferation of single-phase distributed generation (DG) units and loads integrated into residential microgrids, independent power sharing per phase and full use of the energy generated by DGs have become crucial. To address these issues, this paper proposes a hybrid microgrid architecture and its power management strategy. In this microgrid structure, a power sharing unit (PSU), composed of three single-phase back-to-back (SPBTB) converters, is proposed to be installed at the point of common coupling (PCC). The aim of the PSU is mainly to realize the power exchange and coordinated control of load power sharing among phases, as well as to allow fully utilization of the energy generated by DGs. Meanwhile, the method combining the modified adaptive backstepping-sliding mode control approach and droop control is also proposed to design the SPBTB system controllers. With the application of the proposed PSU and its power management strategy, the loads among different phases can be properly supplied and the energy can be fully utilized as well as obtaining better load sharing. Simulation and experimental results are provided to demonstrate the validity of the proposed hybrid microgrid structure and control.
Original languageEnglish
JournalI E E E Transactions on Power Electronics
Volume30
Issue number10
Pages (from-to)5964 - 5977
Number of pages14
ISSN0885-8993
DOIs
Publication statusPublished - Oct 2015

Keywords

  • Microgrid
  • Droop control
  • Power sharing
  • Adaptive backstepping-sliding-mode control
  • Energy utilization

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