DocumentCode
2006858
Title
Self-tuned approximated simplest fuzzy logic controller based shunt active power filter
Author
Singh, Rambir ; Singh, Asheesh K. ; Kumar, Pradeep
Author_Institution
Electr. & Electron. Eng. Dept., Inderprastha Eng. Coll., Ghaziabad, India
fYear
2015
fDate
27-28 March 2015
Firstpage
1
Lastpage
6
Abstract
This paper proposes a self-tuned approximated simplest fuzzy logic controller (ST-ASFLC) for shunt active power filter (APF). The approximated simplest fuzzy logic controller (ASFLC) is a 4-rule fuzzy logic controller (FLC), which successfully approximates the control actions of a 49-rule FLC using some compensating factors. The input scaling factors (SFs) of ASFLC are tuned online by a single nonlinear parameter using bipolar sigmoid activation function. The online tuning of SFs of ASFLC results in better dynamic response of shunt APF. The scheme is tested under randomly varying nonlinear loads. The simulation results presented under transient and steady-state operating conditions demonstrate that dynamic performance of proposed ST-ASFLC is better than 49-rule FLC, ASFLC with fixed SFs, and ST-ASFLC using the log sigmoid (unipolar) activation function. The proposed ST-ASFLC shows a remarkable improved performance in terms of peak overshoot, settling time, harmonic mitigation and reactive power compensation over other FLCs with fixed as well as self-tuned SFs using log sigmoid activation function.
Keywords
active filters; adaptive control; fuzzy control; power harmonic filters; APF; ST-ASFLC; bipolar sigmoid activation function; log sigmoid activation function; randomly varying nonlinear loads; self-tuned approximated simplest fuzzy logic controller; shunt active power filter; single nonlinear parameter; Active filters; Approximation methods; Fuzzy logic; Harmonic analysis; Reactive power; Tuning; Voltage control; Compensating Factors; Dynamic Response; Harmonic Compensation; Scaling Factors; Self-tuned Approximated Simplest Fuzzy Logic Controller; Shunt Active Power Filter;
fLanguage
English
Publisher
ieee
Conference_Titel
Energy Economics and Environment (ICEEE), 2015 International Conference on
Conference_Location
Noida
Print_ISBN
978-1-4673-7491-0
Type
conf
DOI
10.1109/EnergyEconomics.2015.7235073
Filename
7235073
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