Integrated Three-Port Converter for Solar-Charged Electric Vehicle Applications

Also Available Domains Solar Power Generation

Project Code :TEPGED218

Objective

The main objective of this project is to efficiently manage power flow from solar panels to both a high-voltage battery (HVB) and a low-voltage battery (LVB). Optimizing the use of solar energy even under partial shading conditions.

Abstract

This article proposes an adding on board solar generation to EVs is one way to help reduce their charging needs and/or increase their driving range. To maximize the potential benefit, differential power processing (DPP) converters can be implemented to maximize solar energy capture in partial shading conditions. Furthermore, an isolated high step-up converter is required to transfer solar energy to the high-voltage battery, and a buck converter is useful to create an efficient direct path from the solar cells to the low-voltage accessory bus. If implementing these power electronic requirements with separate converters, the component count is high and power density can suffer. Thus, this article proposes the first multiport converter with solar DPP, an isolated high-voltage output port, and a low-voltage port, which is uniquely suited for solar-charged EVs. The switch count is low, and a simple control strategy is proposed to allow separate control of the two output ports. Simulation were conducted through Matlab-Simulink to verify the feasibility of the proposed method.

Keywords: Multiport circuits, Resonant power conversion, solar energy

NOTE: Without the concern of our team, please don't submit to the college. This Abstract varies based on student requirements.

Block Diagram

Specifications

Software Configuration:

Operating System       : Windows 7/8/10

Application Software: MATLAB / Simulink

Hardware Configuration:

RAM                           : 8 GB

Processor                     : I3 / I5 (Mostly prefer)

Learning Outcomes

·         Introduction to Matlab/Simulink

·         What is EISPACK & LINPACK

·         How to start with MATLAB

·         About Matlab language

·         About tools & libraries

·         Application of Matlab/Simulink

·         About Matlab desktop

·         Features of Matlab/Simulink

·         Basics on MATLAB/Simulink

·         Introduction to Electric vehicle

·         Introduction to solar

·         Introduction to convertors

·         Introduction to the Battery

·         Introduction to the Rectifier

·         Introduction to Pulse Width Modulation (PWM),

·         Project Development Skills:

o   Problem analyzing skills

o   Problem solving skills

o   Creativity and imaginary skills

o   Programming skills

o   Deployment

o   Testing skills

o   Debugging skills

o   Project presentation skills

o   Thesis writing skills

 

Demo Video