DocumentCode
1094047
Title
A wireless controller to enhance dynamic performance of parallel inverters in distributed generation systems
Author
Guerrero, Josep M. ; De Vicuña, Luis García ; Matas, José ; Castilla, Miguel ; Miret, Jaume
Author_Institution
Dept. d´´Enginyeria de Sistemes, Univ. Politecnica de Cataluna, Barcelona, Spain
Volume
19
Issue
5
fYear
2004
Firstpage
1205
Lastpage
1213
Abstract
This paper presents a novel control strategy for parallel inverters of distributed generation units in an AC distribution system. The proposed control technique, based on the droop control method, uses only locally measurable feedback signals. This method is usually applied to achieve good active and reactive power sharing when communication between the inverters is difficult due to its physical location. However, the conventional voltage and frequency droop methods of achieving load sharing have a slow and oscillating transient response. Moreover, there is no possibility to modify the transient response without the loss of power sharing precision or output-voltage and frequency accuracy. In this work, a great improvement in transient response is achieved by introducing power derivative-integral terms into a conventional droop scheme. Hence, better controllability of the system is obtained and, consequently, correct transient performance can be achieved. In addition, an instantaneous current control loop is also included in the novel controller to ensure correct sharing of harmonic components when supplying nonlinear loads. Simulation and experimental results are presented to prove the validity of this approach, which shows excellent performance as opposed to the conventional one.
Keywords
distributed power generation; electric current control; invertors; power distribution control; power generation control; transient response; current control loop; distributed generation systems; droop control method; feedback signal measurement; load sharing; nonlinear loads; oscillating transient response; parallel inverters control strategy; reactive power sharing; system controllability; wireless controller; Communication system control; Control systems; Controllability; Distributed control; Feedback; Frequency; Inverters; Reactive power; Transient response; Voltage; DG; Distributed generation; droop control method; nonlinear loads;
fLanguage
English
Journal_Title
Power Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0885-8993
Type
jour
DOI
10.1109/TPEL.2004.833451
Filename
1331481
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