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Decentralized Control for Parallel Operation of Distributed Generation Inverters Using Resistive Output Impedance

IEEE Transactions on Industrial Electronics · 2007 · Vol. 54(2) · pp. 994–1004
Josep M. GuerreroJ. MatasLuis García de VicuñaMiguel CastillaJaume Miret

Abstract

<para xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink"> In this paper, a novel wireless load-sharing controller for islanding parallel inverters in an ac-distributed system is proposed. This paper explores the resistive output impedance of the parallel-connected inverters in an island microgrid. The control loops are devised and analyzed, taking into account the special nature of a low-voltage microgrid, in which the line impedance is mainly resistive and the distance between the inverters makes the control intercommunication between them difficult. In contrast with the conventional droop-control method, the proposed controller uses resistive output impedance, and as a result, a different control law is obtained. The controller is implemented by using a digital signal processor board, which only uses local measurements of the unit, thus increasing the modularity, reliability, and flexibility of the distributed system. Experimental results are provided from two 6-kVA inverters connected in parallel, showing the features of the proposed wireless control. </para>

Microgrid Control and OptimizationIslanding Detection in Power SystemsHVDC Systems and Fault ProtectionMicrogridIslandingVoltage droopController (irrigation)Electrical impedanceOutput impedanceResistive touchscreenElectronic engineeringModularity (biology)Control theory (sociology)
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References
Output Impedance Design of Parallel-Connected UPS Inverters With Wireless Load-Sharing Control
IEEE Transactions on Industrial Electronics · 2005 · 1,204 citations
Control of parallel connected inverters in standalone AC supply systems
IEEE Transactions on Industry Applications · 1993 · 1,743 citations
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