An Innovative fuzzy logic controller for power quality Optimization using MLI-UPQC with solar PV-BESS

Authors

  • D. Tejakrishna  M.Tech Student, Department of Electrical and Electronics Engineering, Quba College of Engineering and Technology, Venkatachalam, Nellore, Andhra Pradesh, India
  • Mr. Ramu  Head of The Department , Department of Electrical and Electronics Engineering, Quba College of Engineering and Technology, Venkatachalam, Nellore, Andhra Pradesh, India

Keywords:

BESS, MLI, PV, UPQC, FLC, VSI.

Abstract

This research work presents a battery energy storage system (BESS) for a solar photovoltaic energy-powered multilevel inverter-unified power quality conditioner (UPQC) with fuzzy logic controller (FLC). Using this new structure helped to solve the difficulties with the distribution system's power quality (PQ). Shunt and series controllers aid in UPQC compensation, is connected to the point of common coupling (PCC) in the distribution system. Here, two level series and shunt voltage converters are replaced with a five level cascaded H-bridge MLI. The two level series and shunt voltage converters are replaced by five level cascaded H-bridge MLIs. The system stability and power quality improved more when compared to the conventional two level inverter and PI controller arrangement for UPQC. The complete proposed system is implemented and tested using MATLAB/SIMULINK software. Here, the simulation results for the FLC-MLI-PV-BESS-UPQC and PI-2LVSI-PV-BESS-UPQC are also contrasted.

References

  1. M S. K. Khadem, M. Basu, and M. Conlon, "Power quality in grid connected renewable energy systems: Role of custom power devices," 2010.
  2. Y. Zhao. (2016, November 11). Electrical Power Systems Quality. Available: http://best.eng.buffalo.edu/Research/Lecture%20Series%202013/Power%20Quality%20Intro.pdf
  3. M. Badoni, A. Singh, and B. Singh, “Variable forgetting factor recursive least square control algorithm for DSTATCOM,” IEEE Trans. Power Del., vol. 30, no. 5, pp. 2353–2361, Oct 2015.
  4. V. Khadkikar, “Enhancing electric power quality using UPQC: A comprehensive overview,” IEEE Trans. Power Electron., vol. 27, no. 5, pp. 2284–2297, May 2012.
  5. A. Teke, L. Saribulut, and M. Tumay, “A novel reference signal generation method for power-quality improvement of unified powerquality conditioner,” IEEE Trans. Power Deliv., vol. 26, no. 4, pp. 2205–2214, 2011.
  6. V. G. Kinhal, P. Agarwal, and H. O. Gupta, “Performance investigation of neural-network-based unified power-quality conditioner,” IEEE Trans. Power Deliv., vol. 26, no. 1, pp. 431–437, 2011.
  7. Libo, Z. Zhengming, and L. Jianzheng, “A single-stage three-phase grid-connected photovoltaic system with modified MPPT method and reactive power compensation,” IEEE Trans. Energy Convers., vol. 22, no. 4, pp. 881-886, Dec. 2007.
  8. [M. Davari, S. Ale-Emran, H. Yazdanpanahi, and G. Gharehpetian, “Modeling the combination of UPQC and photovoltaic arrays with multi-input single-output dc-dc converter,” in IEEE/PES Power Systems Conference and Exposition, 2009. PSCE ’09., March 2009, pp. 1–7.
  9. B. G. Campanhol, S. A. O. Da Silva, A. A. De Oliveira, and V. D. Bacon, “Power flow and stability analyses of a multifunctional distributed generation system integrating a photovoltaic system with unified power quality conditioner,” IEEE Trans. Power Electron., vol. 34, no. 7, pp. 6241–6256, 2019
  10. Czarnecki, “Constraints of instantaneous reactive power p-q theory,” IET Power Electronics, vol. 7, no. 9, pp. 2201–2208, September 2014
  11. S. B. Karanki, N. Geddada, M. K. Mishra, and B. K. Kumar, “A modified three-phase four-wire UPQC topology with reduced DClink voltage rating,” IEEE Trans. Ind. Electron., vol. 60, no. 9, pp. 3555–3566, 2013.
  12. A. Teke, L. Saribulut, and M. Tumay, “A novel reference signal generation method for power-quality improvement of unified powerquality conditioner,” IEEE Trans. Power Deliv., vol. 26, no. 4, pp. 2205–2214, 2011.
  13. V. G. Kinhal, P. Agarwal, and H. O. Gupta, “Performance investigation of neural-network-based unified power-quality conditioner,” IEEE Trans. Power Deliv., vol. 26, no. 1, pp. 431–437, 2011.
  14. K. K. Gupta, A. Ranjan, P. Bhatnagar, L. K. Sahu and S. Jain, "Multilevel Inverter Topologies With Reduced Device Count: A Review," in IEEE Transactions on Power Electronics, vol. 31, no. 1, pp. 135-151, Jan. 2016
  15. Elango R.Subramanian Venugopal Manikandan Krishnan Ramakrishnan. Department of Electrical and Electronics Engineering, Coimbatore Institute of Technology, Civil Aerodrome Post, Coimbatore 641-014, Tamil Nadu, India.

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Published

2022-08-30

Issue

Section

Research Articles

How to Cite

[1]
D. Tejakrishna, Mr. Ramu "An Innovative fuzzy logic controller for power quality Optimization using MLI-UPQC with solar PV-BESS" International Journal of Scientific Research in Science and Technology(IJSRST), Online ISSN : 2395-602X, Print ISSN : 2395-6011,Volume 9, Issue 4, pp.643-656, July-August-2022.