DocumentCode :
10730
Title :
Quasi-oppositional harmony search algorithm and fuzzy logic controller for load frequency stabilisation of an isolated hybrid power system
Author :
Tarkeshwar, Mahto ; Mukherjee, Vivekananda
Author_Institution :
Indian School of Mines, India
Volume :
9
Issue :
5
fYear :
2015
fDate :
4 2 2015
Firstpage :
427
Lastpage :
444
Abstract :
The studied isolated hybrid distributed generation (IHDG) model of this paper consists of a wind turbine generator and a diesel engine generator. This work presents a study for improving both frequency and power deviation profiles of the studied IHDG model with the help of capacitive energy storage (CES) unit. A novel derivative-free meta-heuristic method, termed as quasi-oppositional harmony search (QOHS) algorithm, is applied to determine the optimal frequency and power deviation responses by tuning the tunable parameters of the studied IHDG model. The two fuzzy logic controllers (FLCs) are used (one at diesel unit and the other at wind generator side) to generate the output levelling frequency and power command. Each fuzzy control has two inputs, either frequency or power deviation and their respective derivatives. The two proposed FLCs are designed with QOHS algorithm for the studied CES equipped IHDG model. Performance study of the model has been carried out under different perturbation conditions. The results presented in this study demonstrate that minimum frequency and power deviations have been achieved by using the two proposed FLCs for the CES equipped studied IHDG model.
Keywords :
capacitor storage; diesel-electric generators; distributed power generation; frequency response; frequency stability; fuzzy control; power generation control; power system stability; turbogenerators; wind turbines; CES unit; FLC; IHDG model; QOHS algorithm; capacitive energy storage unit; derivative-free meta-heuristic method; diesel engine generator; frequency deviation profile; fuzzy logic controller; isolated hybrid distributed generation model; isolated hybrid power system; load frequency stabilisation; optimal frequency response; output levelling frequency; perturbation condition; power command; power deviation profile; power deviation response; quasioppositional harmony search algorithm; wind turbine generator;
fLanguage :
English
Journal_Title :
Generation, Transmission & Distribution, IET
Publisher :
iet
ISSN :
1751-8687
Type :
jour
DOI :
10.1049/iet-gtd.2014.0502
Filename :
7076681
Link To Document :
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