scholarly journals Implement Using KY Converter for Hybrid Renewable Energy Applications: Design, Analysis, and Implementation

Author(s):  
Pushpavalli Murugan ◽  
Jothi Swaroopan Nesa Mony

In this paper, multi input multi output (MIMO) Zeta converter is proposed for hybrid renewable energy applications. The Traditional MIMO is modified with Zeta converter for its Continuous output current, high voltage Gain, Buck boost capability & performing higher switching frequencies. Here there are five ports among them three input ports and two output ports. The Inputs are PV, Battery & Super capacitor. The converter is controlled by sliding mode controller (SCM) and it has fast system response and it controls peak overshoot. This converter boosts the PV panel, battery and fuel dc voltage to regulated output dc voltage without any losses. This topology provides a positive output voltage. Modes of operation for multi port zeta converter are explained. To test the effectiveness of the proposed topology, simulation model is developed using MTALB and suitability of the proposed model is tested using experimentation.


2021 ◽  
Author(s):  
L. Hubert Tony Raj ◽  
R. Sivakumar ◽  
R. Akash ◽  
M. Anandha Chakravarthi

Renewable energy provisions must be extracted in a more resourceful way, with a power converter added to the mix. If the supply-demand curve rises with the seasons, it becomes clear that renewable energy sources are used to provide clean energy. This clean energy cannot be used on load directly due to fluctuating conditions, to solve this problem a modified DC to DC converter with a ripple-free output is introduced. The Vertical Axis Wind Turbine (VAWT) and Solar PV were combined to achieve a constant DC output in a hybrid renewable energy conversion system. For renewable energy applications, a redesigned converter with ripple-free output is used. The simulation is made under MATLAB/SIMULINK and experimental parameters were measured using a nominal prototype.


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