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Optimal Distributed Generation Placement in Power Distribution Networks: Models, Methods, and Future Research

IEEE Transactions on Power Systems · 2013 · Vol. 28(3) · pp. 3420–3428
Pavlos S. GeorgilakisNikos Hatziargyriou

Abstract

The integration of distributed generation (DG) units in power distribution networks has become increasingly important in recent years. The aim of the optimal DG placement (ODGP) is to provide the best locations and sizes of DGs to optimize electrical distribution network operation and planning taking into account DG capacity constraints. Several models and methods have been suggested for the solution of the ODGP problem. This paper presents an overview of the state of the art models and methods applied to the ODGP problem, analyzing and classifying current and future research trends in this field.

Optimal Power Flow DistributionElectric Power System OptimizationMicrogrid Control and OptimizationDistributed generationComputer scienceElectric power systemDistributed power generationField (mathematics)Power (physics)Mathematical optimizationDistributed computingEngineeringRenewable energy
Citations
867
FWCI
51.94
field-weighted impact
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90
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100%
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References
Multiple Distributed Generator Placement in Primary Distribution Networks for Loss Reduction
IEEE Transactions on Industrial Electronics · 2011 · 793 citations
Optimal Renewable Resources Mix for Distribution System Energy Loss Minimization
IEEE Transactions on Power Systems · 2009 · 1,374 citations
A Method for Placement of DG Units in Distribution Networks
IEEE Transactions on Power Delivery · 2008 · 409 citations
Summary of Distributed Resources Impact on Power Delivery Systems
IEEE Transactions on Power Delivery · 2008 · 1,017 citations
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