• DocumentCode
    53806
  • Title

    A New {\\rm P} - {\\rm Q} - </h1></div></div>
        </li>
        <li class='list-group-item border-0 py-3 px-0'>
            <div class='row g-0 align-items-center mb-2'><div class='col-12 col-md-3 fullRecLabelEnglish fw-bold mb-2 mb-md-0'><span class='text-muted small'>Author</span></div><div class='col-12 col-md-9 leftDirection leftAlign'><h2 class='mb-0 fw-semibold'>Moawwad, Ahmed ; Khadkikar, Vinod ; Kirtley, James L.</h2></div></div>
        </li>
        <li class='list-group-item border-0 py-3 px-0'>
            <div class='row g-0 align-items-center mb-2'><div class='col-12 col-md-3 fullRecLabelEnglish fw-bold mb-2 mb-md-0'><span class='text-muted small'>Author_Institution</span></div><div class='col-12 col-md-9 leftDirection leftAlign'>Electric Power Engineering Program, Masdar Institute, Abu Dhabi, UAE</div></div>
        </li>
        <li class='list-group-item border-0 py-3 px-0'>
            <div class='row g-0 align-items-center mb-2'><div class='col-12 col-md-3 fullRecLabelEnglish fw-bold mb-2 mb-md-0'><span class='text-muted small'>Volume</span></div><div class='col-12 col-md-9 leftDirection leftAlign'>28</div></div>
        </li>
        <li class='list-group-item border-0 py-3 px-0'>
            <div class='row g-0 align-items-center mb-2'><div class='col-12 col-md-3 fullRecLabelEnglish fw-bold mb-2 mb-md-0'><span class='text-muted small'>Issue</span></div><div class='col-12 col-md-9 leftDirection leftAlign'>2</div></div>
        </li>
        <li class='list-group-item border-0 py-3 px-0'>
            <div class='row g-0 align-items-center mb-2'><div class='col-12 col-md-3 fullRecLabelEnglish fw-bold mb-2 mb-md-0'><span class='text-muted small'>fYear</span></div><div class='col-12 col-md-9 leftDirection leftAlign'>2013</div></div>
        </li>
        <li class='list-group-item border-0 py-3 px-0'>
            <div class='row g-0 align-items-center mb-2'><div class='col-12 col-md-3 fullRecLabelEnglish fw-bold mb-2 mb-md-0'><span class='text-muted small'>fDate</span></div><div class='col-12 col-md-9 leftDirection leftAlign'>Apr-13</div></div>
        </li>
        <li class='list-group-item border-0 py-3 px-0'>
            <div class='row g-0 align-items-center mb-2'><div class='col-12 col-md-3 fullRecLabelEnglish fw-bold mb-2 mb-md-0'><span class='text-muted small'>Firstpage</span></div><div class='col-12 col-md-9 leftDirection leftAlign'>658</div></div>
        </li>
        <li class='list-group-item border-0 py-3 px-0'>
            <div class='row g-0 align-items-center mb-2'><div class='col-12 col-md-3 fullRecLabelEnglish fw-bold mb-2 mb-md-0'><span class='text-muted small'>Lastpage</span></div><div class='col-12 col-md-9 leftDirection leftAlign'>668</div></div>
        </li>
        <li class='list-group-item border-0 py-3 px-0'>
            <div class='row g-0 align-items-center mb-2'><div class='col-12 col-md-3 fullRecLabelEnglish fw-bold mb-2 mb-md-0'><span class='text-muted small'>Abstract</span></div><div class='col-12 col-md-9 leftDirection leftAlign'>This paper proposes a new droop control method for an interline photovoltaic (I-PV) system. In an I-PV system, the inverters in a PV plant are reconfigured in such a way that two or more distribution networks/feeders are interconnected. The I-PV system is operated as a flexible ac transmission system (FACTS) device to regulate the point-of-common coupling voltage on either feeder. One of the key features of the I-PV system is that real power can be exchanged between two feeders via the PV plant inverters. A <formula formulatype= {\\rm P} - {\\rm Q} - {\\rm V} droop control method is thus proposed, especially for systems with low {\\rm X}/{\\rm R} ratio, to facilitate simultaneous active and reactive power control to regulate the point of common coupling voltage. A MATLAB/Simulink-based simulation model is developed to evaluate performance of the system with the proposed controller. A lookup table-based approach is implemented to determine the {\\rm P} and {\\rm Q} droop coefficients. A performance comparison between {\\rm P} - {\\rm V} , {\\rm Q} - {\\rm V} and the proposed {\\rm P} - {\\rm Q} - {\\rm V} droop control methods is disclosed.

  • Keywords
    Impedance; Inverters; Power generation; Reactive power; Vectors; Voltage control; Active and reactive power control; droop control; interline power system; photovoltaic power generation and control; voltage regulation;
  • fLanguage
    English
  • Journal_Title
    Power Delivery, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-8977
  • Type

    jour

  • DOI
    10.1109/TPWRD.2013.2242906
  • Filename
    6461117