International Journal of Engineering Research in Electrical and Electronic Engineering(IJEREEE)

Monthly Journal for Electrical and Electronic Engineering

International Journal of Engineering Research in Electrical and Electronic Engineering

Volume3 ,April 2016.

Volume3,April 2016,

Topic : Design and Implementation of PRCC Based Solar Maximum Power Point Tracking System with Wind Energy Generation

Authors:Sangeet Gharai || J.Ajay Daniel, A. Nikhil

Abstract:Demand for more energy makes us seek more energy resources. Now a days, solar and wind are the primary sources of renewable energy. But when they are used individually achieving uninterrupted power supply is difficult. Thus, the recent trends are moving towards the use of hybrid sources of energy. But still, the hybrid wind and solar energy model fails to achieve the expected efficiency because of the presence of natural and conversional ripples in the output current. This paper deals with the passive ripple cancellation circuit (PRCC) to reduce the amount of ripples produced in the output power obtained from wind and solar hybrid converters. Some of the special characteristics of the proposed PRCC model comprises of cheap, compact and adaptive structure that doesn't need any extra control and feedback circuit. Thus the ripples in the input current are eliminated by incorporating the proposed model into the main power circuit. Consequently, reduction in filter size is achieved with faster response. In the interim, the instantaneous tracking response is acquired by incorporating the continuous MPPT control with the proposed module integrated converter (MIC)..

Keywords: uk- type Converter, Hybrid energy system, Maximum Power Point Tracking (MPPT), Module Integrated Converter (MIC), Passive Ripple Cancellation Circuit (PRCC), Photo voltaic module (PV), Wind energy system.

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DOI: 01.1617/vol2iss4pid081


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Editor-in-Chief

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Editor-in-Chief
Dr.Krzysztof Chwastek
Associate Professor,
Czestochowa University of Technology, Polland.


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IMPACT FACTOR: 3.784

ISSN(Online): 2395-2717

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Thomson Reuters ID : q-6288-2016.
ORCiD Research ID : 0000-0001-9540-6799

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ACCEPTANCE RATIO: 30%
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Journal Code : IJEREEE
Electronic ISSN : 2395-2717
Impact Factor : 3.784
Frequency : monthly
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