The main objective of this project is to track global peak in partial shading condition (PSC) with different PV array arrangements with high efficiency.
This study has proposed asymmetrical Interval Type-2 Fuzzy Logic Control (IT-2 AFLC) based MPP algorithm for tracking global peak in Partial Shading Condition (PSC) with different PV array arrangements. Conventional Maximum Power Point Tracking (MPPT) algorithm shows best performance under uniform insolation but when photovoltaic array is partially irradiated, the Power vs Voltage (Pβ V) plot consists of multiple Local Maxima Power Point (LMPP) and one Global Maxima Power Point (GMPP). The conventional MPPT algorithm may track local peak and fluctuate around it, resulting in lower power tracking.
To eradicate this drawback of conventional algorithm, the solar PV system requires the synthesis of modified controller which is able to discriminate between local and global peak point. Along with implementing modified MPPT controller, to minimize the adverse effect of partial shading on PV system, different PV array arrangements like Series-Parallel (SP), Honey Comb (HC), Total Cross Tied (TCT) etc. may be used.
The presented algorithm has been compared with other approaches viz. Perturb & Observe (P&O) and type-1(T-1) FLC for GMPP tracking, fill factor, shading losses, mismatch loss and efficiency to establish its superiority. For evaluating the efficiency of different algorithms, MPPT efficiency test has been performed under dynamic condition. The proposed algorithm has been developed under MATLAB/Simulink.
Keywords: Maximum Power Point Tracking (MPPT), Adaptive Neuro Fuzzy Interference System (ANFIS), Photovoltaic, intelligent asymmetrical interval type-2 FLC.
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Software Configuration:
Operating System : Windows 7/8/10
Application Software : Matlab/Simulink
Hardware Configuration:
RAM : 8 GB / 4 GB (Min)
Processor : I3 / I5(Mostly prefer)