Table-Based Direct Power Control: A Critical Review for Microgrid Applications

Direct power control (DPC) has increasingly gained attention in the last years as a robust and simple control scheme. Yet, the implications of some of the assumptions made by the original table-based DPC are not well explained in the literature. Here, a new formulation of DPC is presented, that allo...

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Veröffentlicht in:IEEE transactions on power electronics 2010-12, Vol.25 (12), p.2949-2961
Hauptverfasser: Alonso-Martínez, Jaime, Carrasco, Joaquín Eloy-García, Arnaltes, Santiago
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container_issue 12
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container_title IEEE transactions on power electronics
container_volume 25
creator Alonso-Martínez, Jaime
Carrasco, Joaquín Eloy-García
Arnaltes, Santiago
description Direct power control (DPC) has increasingly gained attention in the last years as a robust and simple control scheme. Yet, the implications of some of the assumptions made by the original table-based DPC are not well explained in the literature. Here, a new formulation of DPC is presented, that allows to analyze the shortcomings of this kind of algorithms, mainly regarding the power limits in which table-based algorithms are valid. This is a key aspect for microgrid applications, as they require a wide range of possible active and reactive power setpoints in order to be able to control the system's voltage and frequency. A new table is then presented that allows to overcome those limitations. The proposed table is valid at any point of the inverter's power limits.
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subjects Control algorithms
Control systems
Direct power control (DPC)
Electric power
Electrical engineering
Equations
Inverters
Power control
power systems control
Reactive power
Smart grid technology
Switches
switching table
three-phase inverter
Voltage control
title Table-Based Direct Power Control: A Critical Review for Microgrid Applications
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