Enhancement of Power Quality of PMSG Based DG Set Using Fuzzy Logic Controller

Authors

  • E. Sasi Kumar Naik  PG Scholar, Department of Electrical Engineering, JNTUA College of Engineering, Anantapur, Andhra Pradesh, India
  • Dr. K. Jithendra Gowd  Assistant Professor, Department of Electrical Engineering, JNTUA College of Engineering, Anantapur, Andhra Pradesh, India

Keywords:

PMSG, STATCOM, IGBT, VSC, PWM, Fuzzy Controller.

Abstract

Permanent Magnet Synchronous Generator (PMSG) is having potential application in isolated supply systems. This paper presents power quality improvement of PMSG based DG (Diesel Generator) set nourishing three-stage loads utilizing STATCOM (Static Compensator) with Fuzzy Controller. Here we are utilizing the Fuzzy controller contrasted with different controllers i.e. The Fuzzy Controller is the most reasonable basic component, giving the operation of an electronic framework with choices of specialists. A 3-leg VSC (Voltage Source Converter) with a capacitor on the DC interface is utilized as STATCOM. The reference source currents for the framework are evaluated utilizing an Adaline based control Algorithm. A PWM (Pulse Width Modulation) current controller is utilizing for era of gating pulses of IGBTs (Insulated Gate Bipolar Transistors) of three leg VSC of the STATCOM. The STATCOM is used for voltage control, harmonics elimination, power factor improvement, load balancing and load compensation. The performance of the system is experimentally tested on various types of loads under steady state and dynamic conditions. A 3-stage induction engine with variable frequency drive is utilized as a model of diesel motor with the speed control. Along with these, the DG set runs at constant speed with the goal that the frequency of supply is constant independent of loading condition.

References

  1. Xibo Yuan; Fei Wang; Boroyevich, D.; Yongdong Li; Burgos, R., "DC-link Voltage Control of a Full Power Converter for Wind Generator Operating in Weak-Grid Systems," IEEE Transactions on Power Electronics, vol.24, no.9, pp.2178-2192, Sept. 2009.
  2. Li Shuhui, T.A. Haskew, R. P. Swatloski and W. Gathings, "Optimal and Direct-Current Vector Control of Direct-Driven PMSG Wind Turbines," IEEE Trans. Power Electronics, vol.27, no.5, pp.2325-2337, May 2012.
  3. M. Singh and A. Chandra, "Application of Adaptive Network-Based Fuzzy Inference System for Sensorless Control of PMSG-Based Wind Turbine With Nonlinear-Load-Compensation Capabilities," IEEE Trans. Power Electronics, vol.26, no.1, pp.165-175, Jan. 2011.
  4. A. Rajaei, M. Mohamadian and A. Yazdian Varjani, "Vienna-Rectifier-Based Direct Torque Control of PMSG for Wind Energy Application," IEEE Trans. Industrial Elect., vol.60, no.7, pp.2919-2929, July 2013.
  5. Mihai Comanescu, A. Keyhani and Dai Min, "Design and analysis of 42-V permanent-magnet generator for automotive applications," IEEE Trans. Energy Conversion, vol.18, no.1, pp.107-112, Mar 2003.
  6. S. Javadi and M. Mirsalim, "Design and Analysis of 42-V Coreless Axial-Flux Permanent-Magnet Generators for Automotive Applications," IEEE Trans. Magnetics, vol.46, no.4, pp.1015-1023, April 2010
  7. F. Crescimbini, A. Lidozzi and L. Solero , "High-Speed Generator and Multilevel Converter for Energy Recovery in Automotive Systems," IEEE Trans. Industrial Elect., vol.59, no.6, pp.2678-2688, June 2012
  8. W.U.N. Fernando, M. Barnes, and O. Marjanovic, "Direct drive permanent magnet generator fed AC-DC active rectification and control for more-electric aircraft engines," IET Electric Power Applications, vol.5, no.1, pp.14-27, January 2011.
  9. A. D. Hansen and G. Michalke, "Multi-pole permanent magnet synchronous generator wind turbines' grid support capability in uninterrupted operation during grid faults," IET Renewable Power Generation, vol.3, no.3, pp.333-348, Sept. 2009.
  10. A. Uehara, A. Pratap, T. Goya, T. Senjyu, A. Yona, N. Urasaki and T. Funabashi, "A Coordinated Control Method to Smooth Wind Power Fluctuations of a PMSG-Based WECS," IEEE Trans. Energy Conversion, vol.26, no.2, pp.550-558, June 2011.
  11. T. F. Chan, LL. Lai and Yan Lie-Tong, "Performance of a three-phase AC generator with inset Nd-Fe-B permanent-magnet rotor," IEEE Trans. Energy Conversion, vol.19, no.1, pp.88-94, March 2004.
  12. Z. Chen, E. Spooner, W. T. Norris and A. C. Williamson, "Capacitor-assisted excitation of permanent-magnet generators," IEE Proc. Electric Power Applications, vol.145, no.6, pp.497-508, Nov 1998.
  13. M.A. Rahman, A. M. Osheiba, T.S. Radwan and E.S. Abdin, "Modelling and controller design of an isolated diesel engine permanent magnet synchronous generator," IEEE Trans. Energy Conversion, vol.11, no.2, pp.324-330, Jun 1996.
  14. Y. Errami, M. Maaroufi and M. Ouassaid, “Variable Structure Direct Torque Control and grid connected for wind energy conversion system based on the PMSG,” International Conference on Complex Systems (ICCS), 2012, pp.1-6, 5-6 Nov. 2012.
  15. B. Singh and J. Solanki, "Load Compensation for Diesel Generator-Based Isolated Generation System Employing DSTATCOM," IEEE Trans. Industry Applications, vol.47, no.1, pp.238-244, Jan.-Feb. 2011.
  16. P. Mitra and G.K. Venayagamoorthy, "An Adaptive Control Strategy for DSTATCOM Applications in an Electric Ship Power System," IEEE Trans. Power Electronics, vol.25, no.1, pp.95-104, Jan. 2010.
  17. A. Ghosh and G. Ledwich, "Load compensating DSTATCOM in weak AC systems," IEEE Trans. Power Delivery, vol.18, no.4, pp.1302-1309, Oct. 2003
  18. B. Singh and S.R. Arya, "Adaptive Theory-Based Improved Linear Sinusoidal Tracer Control Algorithm for DSTATCOM," IEEE Trans. Power Electronics, vol.28, no.8, pp.3768-3778, Aug. 2013.
  19. B. Singh and S. Sharma, “Stand-Alone Single-Phase Power Generation Employing a Three-Phase Isolated Asynchronous Generator,” IEEE Trans. Industry Applns., vol.48, no.6, pp.2414-2423, Nov.-Dec. 2012.
  20. B. Singh, V. Sheeja, R. Uma and P. Jayaprakash, “Voltage- frequency controller for standalone WECS employing permanent magnet synchronous generator,” International Conference on Power Systems, 2009. ICPS '09, pp.1-6, 27-29 Dec. 2009.
  21. B. Singh, S.R. Arya, A. Chandra and K. Al-Haddad, “Implementation of adaptive filter based control algorithm for Distribution Static Compensator,” Annual Meeting Industry Applications Society (IAS), 2012 IEEE, pp.1-8, 7-11 Oct. 2012.
  22. B. Singh and J. Solanki, “A comparison of control algorithms for DSTATCOM,"IEEE Trans. Ind. Elect., vol.56, no.7, pp.2738-2745, July 2009.
  23. Bhim Singh, Ram Nivas, IEEE Transactions on??Industry Applications,Volume: 52, Issue: 1, Jan.-Feb. 2016.

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Published

2017-10-31

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Section

Research Articles

How to Cite

[1]
E. Sasi Kumar Naik, Dr. K. Jithendra Gowd, " Enhancement of Power Quality of PMSG Based DG Set Using Fuzzy Logic Controller, International Journal of Scientific Research in Science and Technology(IJSRST), Online ISSN : 2395-602X, Print ISSN : 2395-6011, Volume 3, Issue 7, pp.495-503, September-October-2017.