The main objective of this project is to maintain the stability of the system, improve the power quality and Quick power restoration to MPP.
In this project, a novel Islanding Detection Method (IDM) for Grid-Connected Photo Voltaic Systems (GCPVSs) through a disturbance injection in the Maximum Power Point Tracking (MPPT) algorithm is proposed. When an absolute deviation of the output voltage exceeds a threshold, the applied disturbance shifts system operating point from its Maximum Power Point (MPP) condition. This leads to a sharp active power output reduction and consequently, a significant voltage drops in islanded mode beyond the standard voltage limit.
The proposed algorithm is defined in a way that the Distributed Generator (DG) can be restored to MPP after islanding classification. It is thereby effective in micro grid in where the power injection at maximum level to cater the critical loads and maintain the stability of the isolated area are pursued. An intentional time delay has also been considered to avoid nuisance tripping in short-circuit faults which do not require tripping.
The provided results under extensive islanding scenarios defined in islanding standards endorse timely and accurately detection with negligible Non-Detection Zone (NDZ) as well as no false tripping in non-islanding disturbances. The comparative analysis of the presented scheme with a few recent IDMs for GCPVS highlights its overall superiorities, including very small NDZ, fast detection, thresholds self-standing determination, no adverse effect on power quality, and simple and inexpensive integration.
Keywords: Grid-Connected Photo Voltaic Systems (GCPVSs), Islanding Detection Method (IDM), Maximum Power Point Tracking (MPPT), Distributed Generator (DG), Power Electronic Converters.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 / 4 GB (Min)
Processor : I3 / I5(Mostly prefer)