• DocumentCode
    894381
  • Title

    Steady-State Model and Power Flow Analysis of Electronically-Coupled Distributed Resource Units

  • Author

    Nikkhajoei, Hassan ; Iravani, Reza

  • Author_Institution
    Wisconsin Power Electron. Res. Center, Wisconsin Univ., Madison, WI
  • Volume
    22
  • Issue
    1
  • fYear
    2007
  • Firstpage
    721
  • Lastpage
    728
  • Abstract
    This paper presents closed-form steady-state, fundamental-frequency models of power electronic converter systems for coupling distributed resource (DR) units to the utility power grid. Based on the developed models, the paper introduces a two-step power flow analysis approach that accurately and efficiently represents electronically-coupled DR units. A feature of the proposed approach is that it solves for the internal variables of each DR unit in a non-iterative fashion based on the presented closed-form DR models, and thus, enhances efficiency and accuracy of the solution. This papers provides the details for steady-state closed-form formulation of matrix converter and voltage-sourced ac-dc-ac converter for coupling DR units. However, the presented methodology is conceptually applicable to other types of converter systems. An application of the proposed power flow approach to a micro-grid that includes two electronically-coupled DR units is also presented
  • Keywords
    AC-DC power convertors; DC-AC power convertors; distributed power generation; load flow; matrix convertors; AC-DC-AC converter; closed-form steady state model; coupling distributed resource units; electronically-coupled distributed resource units; fundamental-frequency models; matrix converter; microgrid approach; power electronic converter systems; power flow analysis; two-step power flow analysis approach; utility power grids; Load flow; Load flow analysis; Matrix converters; Performance analysis; Power electronics; Power system modeling; Power system protection; Software tools; Steady-state; Voltage; Back-to-back voltage-source converter (VSC); distributed generation; matrix converter; microgrid; modelling; power-flow analysis; steady-state;
  • fLanguage
    English
  • Journal_Title
    Power Delivery, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-8977
  • Type

    jour

  • DOI
    10.1109/TPWRD.2006.881604
  • Filename
    4039459