ISSN 2394-5125
 

Research Article 


PERFORMANCE COMPARISON OF PV POWER PROCESSING ARCHITECTURE USING BOOST CONVERTER UNDER PARTIAL SHADING CONDITION WITH GREY WOLF OPTIMIZATION

Dr. J. Jayaudhaya, D. Rajasekaran, J. Sumithra, R. Suresh.

Abstract
Under zero shading condition, PV array produces a single power peak in Power-Voltage characteristics but under shading condition (SC) of PV array exhibits Local Power Peak (LPP) and Global Power Peak (GPP). Under this condition finding the global power peak and also maximum power extraction is very tedious process. This paper proposes Differential Power Processing (DPP) architecture using boost converter to enhance the maximum power extraction under partial shading condition (PSC). Differential Power Processing architecture is utilized in PV array along with Grey Wolf Optimization technique (GWO). The performance of DPP architecture has been evaluated with central and string architecture with various optimization algorithms like PSO, RDPSO and the simulation results are compared. The results were presented using MATLAB/SIMULINK. The hardware model is implemented using ARM processor.

Key words: Grey Wolf Optimization algorithm (GWO), Random Drift PSO(RDPSO)algorithm, Particle Swarm Optimization (PSO), Partial shading condition (PSC), Photovoltaic (PV).


 
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How to Cite this Article
Pubmed Style

Dr. J. Jayaudhaya, D. Rajasekaran, J. Sumithra, R. Suresh. PERFORMANCE COMPARISON OF PV POWER PROCESSING ARCHITECTURE USING BOOST CONVERTER UNDER PARTIAL SHADING CONDITION WITH GREY WOLF OPTIMIZATION. JCR. 2020; 7(19): 2936-2946. doi:10.31838/jcr.07.19.357


Web Style

Dr. J. Jayaudhaya, D. Rajasekaran, J. Sumithra, R. Suresh. PERFORMANCE COMPARISON OF PV POWER PROCESSING ARCHITECTURE USING BOOST CONVERTER UNDER PARTIAL SHADING CONDITION WITH GREY WOLF OPTIMIZATION. http://www.jcreview.com/?mno=121529 [Access: September 15, 2020]. doi:10.31838/jcr.07.19.357


AMA (American Medical Association) Style

Dr. J. Jayaudhaya, D. Rajasekaran, J. Sumithra, R. Suresh. PERFORMANCE COMPARISON OF PV POWER PROCESSING ARCHITECTURE USING BOOST CONVERTER UNDER PARTIAL SHADING CONDITION WITH GREY WOLF OPTIMIZATION. JCR. 2020; 7(19): 2936-2946. doi:10.31838/jcr.07.19.357



Vancouver/ICMJE Style

Dr. J. Jayaudhaya, D. Rajasekaran, J. Sumithra, R. Suresh. PERFORMANCE COMPARISON OF PV POWER PROCESSING ARCHITECTURE USING BOOST CONVERTER UNDER PARTIAL SHADING CONDITION WITH GREY WOLF OPTIMIZATION. JCR. (2020), [cited September 15, 2020]; 7(19): 2936-2946. doi:10.31838/jcr.07.19.357



Harvard Style

Dr. J. Jayaudhaya, D. Rajasekaran, J. Sumithra, R. Suresh (2020) PERFORMANCE COMPARISON OF PV POWER PROCESSING ARCHITECTURE USING BOOST CONVERTER UNDER PARTIAL SHADING CONDITION WITH GREY WOLF OPTIMIZATION. JCR, 7 (19), 2936-2946. doi:10.31838/jcr.07.19.357



Turabian Style

Dr. J. Jayaudhaya, D. Rajasekaran, J. Sumithra, R. Suresh. 2020. PERFORMANCE COMPARISON OF PV POWER PROCESSING ARCHITECTURE USING BOOST CONVERTER UNDER PARTIAL SHADING CONDITION WITH GREY WOLF OPTIMIZATION. Journal of Critical Reviews, 7 (19), 2936-2946. doi:10.31838/jcr.07.19.357



Chicago Style

Dr. J. Jayaudhaya, D. Rajasekaran, J. Sumithra, R. Suresh. "PERFORMANCE COMPARISON OF PV POWER PROCESSING ARCHITECTURE USING BOOST CONVERTER UNDER PARTIAL SHADING CONDITION WITH GREY WOLF OPTIMIZATION." Journal of Critical Reviews 7 (2020), 2936-2946. doi:10.31838/jcr.07.19.357



MLA (The Modern Language Association) Style

Dr. J. Jayaudhaya, D. Rajasekaran, J. Sumithra, R. Suresh. "PERFORMANCE COMPARISON OF PV POWER PROCESSING ARCHITECTURE USING BOOST CONVERTER UNDER PARTIAL SHADING CONDITION WITH GREY WOLF OPTIMIZATION." Journal of Critical Reviews 7.19 (2020), 2936-2946. Print. doi:10.31838/jcr.07.19.357



APA (American Psychological Association) Style

Dr. J. Jayaudhaya, D. Rajasekaran, J. Sumithra, R. Suresh (2020) PERFORMANCE COMPARISON OF PV POWER PROCESSING ARCHITECTURE USING BOOST CONVERTER UNDER PARTIAL SHADING CONDITION WITH GREY WOLF OPTIMIZATION. Journal of Critical Reviews, 7 (19), 2936-2946. doi:10.31838/jcr.07.19.357