Also Available Domains Electrical Vehicles
The main objective of this project is to propose a system for charging electric vehicles (EVs) using a common DC bus charging infrastructure powered by hybrid renewable energy sources, such as solar photovoltaic (PV) and fuel cells.
Abstract: In this project, the charging of electric vehicles (EVs) via common DC bus charging infrastructure based on hybrid renewable energy sources such as solar photovoltaic (PV) and fuel cell is presented. The requisite to incorporate renewable energy based distributed energy resources (DERs) is attributed to the escalating concern for decarbonization with improved power quality requirements. Furthermore, the bidirectional flow of power enables the charging/discharging of EVs during the grid presence/absence modes of operation. In addition, the utilization of common DC bus charging mechanism for EVs, facilitates fast charging capability at higher voltage levels. The satisfactory operation during the grid availability/unavailability is attained through the current and voltage-based control mechanisms, along with the seamless transition capability via switching (STS-1/0) of the static transfer switches. Furthermore, in compliance with the IEEE standards, the power quality (PQ) improvement is obtained with the utilization of an adaptive comb-filter based current control during the grid-tied mode of operation. The need for improving PQ, stems from the fact that an uninterrupted supply is essential to the critical loads along with an improved power quality. Thus, for validation and corroboration of the system behavior, its performance is authenticated during weak grid conditions, in conjunction with grid connected/islanded modes of operation The simulation results can be evaluated by using Matlab/Simulink Software.
Keywords: Solar generation, Inverter, PI controllers, Power Quality, MPPT, Bi-directional Dc-Dc converter, Adaptive comb-filter, distribution network, EV charging, fuel cell stack, grid connected mode, islanded mode, power quality, seamless power transfer.
NOTE: Without the concern of our team, please don't submit to the college. This Abstract varies based on student requirements.
Software Configuration:
Operating System: Windows 7/8/10
Application Software: Matlab / Simulink
Hardware Configuration:
RAM : 8 GB
Processor : I3 / I5 (Mostly prefer)
· 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 Renewable Energy Sources
· Introduction to Pulse Width Modulation (PWM),
· Introduction to the Energy storage methods.
· Introduction to the Inverter and converters.
· Introduction to the MPPT
· About Bi-directional Dc-Dc converter
· About Load quality improvement.
· Introduction about Hybrid Micro Grid.
· Introduction to Power grids.
· Introduction to Solar Grids.
· Introduction to the Adaptive comb-filter.
· Introduction to the Distribution network.
· Introduction to the EV charging.
· Introduction to the fuel cell stack.
· We can learn about PI Controllers
· 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