VOLTAGE QUALITY ENHANCEMENT IN DISTRIBUTION SYSTEMS USING DYNAMIC VOLTAGE RESTORER WITH ADAPTIVE FUZZY PI CONTROLLER
Keywords:
Adaptive Fuzzy PI Controller, Dynamic Voltage Restorer (DVR), Synchronous Reference Frame Theory, Voltage qualityAbstract
Distribution of quality power to the consumers is one of the greatest challenges in power industry. In practice, the presence of various nonlinear/sensitive loads disturbs the quality of power supplies in distribution system. Dynamic voltage restorer (DVR) is a custom power device which helps to improve voltage quality in distribution system. In this paper three single phase H-Bridge PWM inverters are used for each phase so as to reduce the voltage rating of the series converters. Synchronous Reference Frame (SRF) theory along with In-phase compensation and Adaptive Fuzzy PI is used as control strategy for DVR. The poor performance by conventional PI controller with fixed gains when the system parameters and operating condition changes is improvised using Adaptive Fuzzy PI controller. The proposed DVR with control strategy is able to improve voltage quality by mitigating voltage sag, voltage swell, phase shift and harmonic problems.
References
Lekshmi R Chandran and Dr.S. Balamurugan., “Dynamic Voltage Restorer for Voltage Quality Improvement in Distribution System” , Proceedings of National Conference on Technological Advancements in Power and Energy, June 2013.
M. P.V. and Nair, M. G., “Performance analysis of different custom power devices in power park”, in 2016 - Biennial International Conference on Power and Energy Systems: Towards Sustainable Energy, PESTSE 2016.
M. P.V., Raji, S., and Nair, M. G., “Performance Analysis of Different Control Algorithms for Series active Filter”, in Electrical, Computer and Communication Technologies (ICECCT), 2015 IEEE International Conference on, 2015.
F. Pilo, , G. Pisano and G. G. Soma, “Considering Voltage Dips Mitigation in Distribution Network Planning, ” PowerTech 2007, IEEE, pp.1528-1533.
T. Jimichi, H. Fujita, and H. Akagi, “A Dynamic Voltage Restorer Equipped with High-Frequency Isolated DC-DC Converter, ” IEEE Transactions on Indus-trial Applications, Vol. 47, NO. 1, pp.169- 175,January/February 2011.
T. Jimichi, H. Fujita, and H. Akagi, “Design And Experimentation Of A Dynamic Voltage Restorer Capable of Significantly Reducing an Energy Storage Element,” IEEE Transaction on Industrial Application, Vol. 44, NO. 3, pp. 817-825,May/June 2008.
Nielsen JG, Blaabjerg F. “A detailed comparison of system topologies for dynamic voltage restorers”. IEEE Trans Ind Appl 2005;41(5):1272–80.K.
Srisailam, A Sreenivas, “Mitigation of Voltage Sags/Swells By Dynamic Voltage Restorer Using PI And Fuzzy Logic Controller”, International Journal of Engineering Research and Applications, Vol. 2, Issue 4, July-August 2012, pp.1733-1737.
Sandesh Jain, Prof.Shivendra Singh Thakur, Prof. S.P.Phulambrikar, “Fuzzy Controller based DVR to mitigate Power Quality and reduce the Harmonics distortion of sensitive load”, International Journal of Advanced Research in Electri-cal, Electronics and Instrumentation Engineering,Vol. 1, Issue 5, November 2012.
Ramasamy M, Thangavel S. “Experimental verification of PV based dynamic voltage restorer (PV-DVR) with significant energy conservation” International Journal Electric Power Energy Syst 2013, pp.296–307.
Dr. Manjula G. Nair and Nambiar, T. N. P., “Fuzzy logic based facts controller for damping oscillations”, in Proceedings of the IEEE Power Engineering So-ciety Transmission and Distribution Conference, Yokahama, 2002, vol. 3, pp. 2019-2022.
D. R, K. Ilango, S, D., and G.Nair, D. Manjula, “Tariff Based Fuzzy Logic Controller for Active Power Sharing between Micro-grid to Grid with Improved Power Quality”, IEEE International Conference on Energy Efficient Technologies for Sustainability (ICEETS), Nagarcovil. Nagarcovil, pp. 406-409, 2016.
R Rajeswari, N. Karpagam, S. Dhanalakshmi "Analysis of dq0 based fuzzy logic controller in DVR for voltage sag and harmonic mitigation", 2014 International Conference on Green Computing Communication and Electrical Engineering (ICGCCEE), 2014.
Akanksha V. Ital, Sumit A. Borakhade "Compensation of voltage sags and swells by using Dynamic Voltage Restorer (DVR)", 2016
International Conference on Electrical, Electronics, and Optimization Techniques (ICEEOT), 2016.
P. S. Babu, N. Kamaraj. "Performance investigation of dynamic voltage restorer using PI and fuzzy controller", 2013 International
Conference on Power, Energy and Control (ICPEC), 2013.
Ibrahim, R, A M A Haidar, M Zahim, and H Iu."The effect of DVR location for enhancing voltage sag", 2010 International Conference on Intelligent and Advanced Systems, 2010.
Akanksha V. Ital, Sumit A. Borakhade "Compensation of voltage sags and swells by using Dynamic Voltage Restorer (DVR)", 2016
International Conference on Electrical, Electronics, and Optimization Techniques (ICEEOT), 2016.
Kasuni Perera, Daniel Salomonsson, Arulampalam Atputharajah, Sanath Alahakoon. "Automated Control Technique for a Single Phase Dynamic Voltage Restorer", 2006 International Conference on Information and Automation, 2006.
P. Ajay-D-Vimal Raj. "Particle Swarm Optimization Based Energy Optimized Dynamic Voltage Restorer", 2008 Joint International
Conference on Power System Technology and IEEE Power India Conference,10/2008.
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