A REVIEW ON PHOTOVOLTAIC SOLAR POWER GENERATION WITH MAXIMUM POWER POINT TRACKING

January 2020
Vol-6, Issue-1
Paper ID: 11331
ISSN: 2395-4396
Downloads: 0

Abstract & Details

Research Area
ELECTRICAL & ELECTRONICS ENGINEERING
Keywords
Maximum power point tracking (MPPT) MPPT algorithm MPPT controller
Abstract
Photovoltaic (PV) system is one of the promising renewable energy technologies. Although the energy conversion efficiency of the system is still low, but it has the advantage that the operating cost is free, very low maintenance and pollution-free. Maximum power point tracking (MPPT) is a significant part of PV systems. This paper presents a novel intelligent MPPT controller for PV systems. For the MPPT algorithm, an optimized fuzzy logic controller (FLC) using the Hopfield neural network is proposed. It utilizes an automatically tuned FLC membership function instead of the trial-and-error approach. The MPPT algorithm is implemented in a new variant of coupled inductor soft switching boost converter with high voltage gain to increase the converter output from the PV panel. The applied switching technique, which includes passive and active regenerative snubber circuits, reduces the insulated gate bipolar transistor switching losses. The proposed MPPT algorithm is implemented using the dSPACE DS1104 platform software on a DS1104 board controller. The prototype MPPT is tested using an Agilent solar array simulator together with a 3 kW real PV panel. Experimental test results show that the proposed boost converter produces higher output voltages and gives better efficiency (90%) than the conventional boost converter with an RCD snubber, which gives 81% efficiency. The prototype MPPT controller is also found to be capable of tracking power from the 3 kW PV array about 2.4 times more than that without using the MPPT controller. This paper deals with the optimization of maximum power point tracking when a Photovoltaic panel is modelled as two diodes. The adopted control is implemented using a sliding Mode control (SMC) and the optimization is implemented using an improved Pattern Search Method.

Author Information

# Name Institute / Affiliation
1 ABHILASHA BANDUNI ROORKEE COLLEGE OF ENGINEERING

How to Cite

Use the following formats to cite this article in your research.

APA Style
BANDUNI, ABHILASHA (2020). A REVIEW ON PHOTOVOLTAIC SOLAR POWER GENERATION WITH MAXIMUM POWER POINT TRACKING. International Journal of Advance Research and Innovative Ideas In Education, 6(1), 640-643.
MLA Style
BANDUNI, ABHILASHA. "A REVIEW ON PHOTOVOLTAIC SOLAR POWER GENERATION WITH MAXIMUM POWER POINT TRACKING." International Journal of Advance Research and Innovative Ideas In Education, vol. 6, no. 1, 2020, pp. 640-643.
IEEE Style
ABHILASHA BANDUNI, "A REVIEW ON PHOTOVOLTAIC SOLAR POWER GENERATION WITH MAXIMUM POWER POINT TRACKING," International Journal of Advance Research and Innovative Ideas In Education, vol. 6, no. 1, pp. 640-643, 2020.
Vancouver Style
BANDUNI ABHILASHA. A REVIEW ON PHOTOVOLTAIC SOLAR POWER GENERATION WITH MAXIMUM POWER POINT TRACKING. International Journal of Advance Research and Innovative Ideas In Education. 2020;6(1):640-643.
Harvard Style
BANDUNI, ABHILASHA (2020) 'A REVIEW ON PHOTOVOLTAIC SOLAR POWER GENERATION WITH MAXIMUM POWER POINT TRACKING', International Journal of Advance Research and Innovative Ideas In Education, 6(1), pp. 640-643.
Chicago Style
BANDUNI, ABHILASHA. "A REVIEW ON PHOTOVOLTAIC SOLAR POWER GENERATION WITH MAXIMUM POWER POINT TRACKING." International Journal of Advance Research and Innovative Ideas In Education 6, no. 1 (2020): 640-643.
Turabian Style
BANDUNI, ABHILASHA. "A REVIEW ON PHOTOVOLTAIC SOLAR POWER GENERATION WITH MAXIMUM POWER POINT TRACKING." International Journal of Advance Research and Innovative Ideas In Education 6, no. 1 (2020): 640-643.

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