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Stable operation of distribution networks using D-STATCOM considering uncertainties in load compositions

Roy, N.K. and Pota, H.R. 2013, Stable operation of distribution networks using D-STATCOM considering uncertainties in load compositions, in SEGE 2013 : Proceedings of the the IEEE International Conference on Smart Energy Grid Engineering, IEEE, Piscataway, N.J., pp. 1-6, doi: 10.1109/SEGE.2013.6707920.

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Title Stable operation of distribution networks using D-STATCOM considering uncertainties in load compositions
Author(s) Roy, N.K.
Pota, H.R.
Conference name Smart Energy Grid Engineering. Conference (2013 : Oshawa, Ontario)
Conference location Oshawa, Ontario
Conference dates 28-30 Aug. 2013
Title of proceedings SEGE 2013 : Proceedings of the the IEEE International Conference on Smart Energy Grid Engineering
Editor(s) [Unknown]
Publication date 2013
Conference series Smart Energy Grid Engineering Conference
Start page 1
End page 6
Total pages 6
Publisher IEEE
Place of publication Piscataway, N.J.
Keyword(s) composite load
distributed generation
D-STATCOM
grid code
voltage stability
Summary This paper presents a novel control design for D-STATCOM to ensure grid code-compatible performance of distributed wind generators. The approach considered in this paper is to find the smallest upper bound on the H norm of the uncertain system and to design an optimal linear quadratic Gaussian (LQG) controller based on this bound. The change in the model due to variations of induction motor (IM) load compositions in the composite load is considered as an uncertain term in the design algorithm. The performance of the designed controller is demonstrated on a distribution test system representative of the Kumamoto area in Japan. It is found that the proposed controller enhances voltage stability of the distribution system under varying operating conditions
Language eng
DOI 10.1109/SEGE.2013.6707920
Field of Research 099999 Engineering not elsewhere classified
Socio Economic Objective 970109 Expanding Knowledge in Engineering
HERDC Research category E1.1 Full written paper - refereed
Copyright notice ©2013, IEEE
Persistent URL http://hdl.handle.net/10536/DRO/DU:30064211

Document type: Conference Paper
Collection: School of Engineering
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