The main objective of this project is to propose a Single-Stage Isolated DC/AC Converter with Continuous Dynamic Model and Controller Design for photovoltaic grid connected applications.
This paper proposes an analysis and controller design of a bidirectional bridgeless single-stage dc/ac converter with high-frequency link and low part count. The dual-phase-shift control is proposed to control and modulate the ac power and to minimize the root mean square (rms) of the transformer current. Furthermore, the phase-shift angle is chosen to assure wide range of zero voltage switching (ZVS) turn-ON of all the switching devices. The proposed controller has a reduced total harmonic distortion (THD) at the output ac current without zero-crossing spikes. A continuous-time average model that well predicts both transient- and steady-state relations between the highfrequency ac link and the dc side is needed to simplify the controller design. Since complex discrete-time models were used in the previous pieces of literature, simple and powerful continuous-time tools were not used to design the closed-loop system. In this article, a novel continuous-time generalized average model is proposed. The derived model precisely predicts the high-frequency state variables of the converter, including a simple formula for the transformer current rms value. The formula is used to minimize the transformer current to reduce the losses. Moreover, the transient analysis and the closed-loop control design are presented. A prototype circuit is tested to verify the performance of the proposed control scheme with the proposed isolated single-stage dc/ac convert Matlab/Simulink software 2018a
Keywords: Generalized average model (GAM), isolated single-stage dc/ac converter, optimization technique, phase-shift control, transformer current root-mean-square (rms) value, ZVS soft-switching.
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)
Β· Introduction to Matlab/Simulink
Β· What is EISPACK & LINPACK
Β· How to start with MATLAB
Β· About Matlab language
Β· About tools & libraries
Β· Application of Matlab/Simulink
Β· About Matlab desktop
Β· Features of Matlab/Simulink
Β· Basics on Matlab/Simulink
Β· Introduction to zero voltage switching (ZVS)
Β· Study of. closed-loop control design
Β· 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