Power quality issues current harmonics

Power Quality Issues: Current Harmonics provides solutions for the mitigation of power quality problems related to harmonics. Focusing on active power filters (APFs) due to their excellent harmonic and reactive power compensation in two-wire (single phase), three-wire (three-phase without neutral),...

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Bibliographic Details
Main Authors: Mikkili, Suresh (Author), Panda, Anup Kumar (Author)
Format: Book
Language:English
Published: Boca Raton, FL Taylor & Francis 2016
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020 |a 9781498729628 (hardcover : alk. paper) 
020 |a 1498729622 (hardcover : alk. paper) 
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100 1 |a Mikkili, Suresh  |e author 
245 1 0 |a Power quality issues  |b current harmonics  |c Suresh Mikkili, Anup Kumar Panda 
264 1 |a Boca Raton, FL  |b Taylor & Francis  |c 2016 
264 4 |c © 2016 
300 |a xix, 166 pages  |b illustrations  |c 24 cm 
336 |a text  |2 rdacontent 
337 |a unmediated  |2 rdamedia 
338 |a volume  |2 rdacarrier 
504 |a Includes bibliographical references and index 
505 0 |a Introduction -- Performance Analysis of SHAF Control Strategies Using a PI Controller -- Performance Analysis of SHAF Control Strategies Using Type 1 FLC with Different Fuzzy MFs -- Performance Analysis of SHAF Control Strategies Using Type 2 FLC with Different Fuzzy MFs -- Introduction to RT-LAB and Real-Time Implementation of Type 2 FLC-Based SHAF Control Strategies -- Conclusions and Future Scope 
520 |a Power Quality Issues: Current Harmonics provides solutions for the mitigation of power quality problems related to harmonics. Focusing on active power filters (APFs) due to their excellent harmonic and reactive power compensation in two-wire (single phase), three-wire (three-phase without neutral), and four-wire (three-phase with neutral) AC power networks with nonlinear loads, the text: Introduces the APF technology, describing various APF configurations and offering guidelines for the selection of APFs for specific application considerations; compares shunt active filter (SHAF) control strategies for extracting three-phase reference currents, evaluating their performance under a number of source voltage conditions using a proportional-integral (PI) controller; presents PI controller-based SHAF instantaneous active and reactive power (p-q) and instantaneous active and reactive current (Id-Iq) control strategies, supplying detailed MATLAB/Simulink simulation results; proposes SHAF control strategies using type 1 and type 2 fuzzy logic controllers (FLCs) with different fuzzy membership functions (MFs), analyzing their harmonic mitigation and DC link voltage regulation; verifies the proposed type 2 FLC-based SHAF control strategies with trapezoidal, triangular, and Gaussian fuzzy MFs using RT-LAB, a real-time digital simulation software from OPAL-RT Technologies 
592 |a IN/98505  |b 18/03/2016  |c RM 611.71  |h YUHA 
650 0 |a Electric power distribution  |x Alternating current  |x Quality control 
650 0 |a Harmonics (Electric waves) 
700 1 |a Panda, Anup Kumar  |e author 
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