The main objective of the project is to provide a new control scheme for reactive power optimization at a given active power output.
In this project, the model of the reactive power is first derived, the control object is defined as the minimum reactive power, and then, a new control scheme for reactive power optimization based on function monotonicity is proposed. Compared to the traditional LC-type Dual Active Bridge (DAB) series resonant converter, the DAB series resonant converter with dual tanks has a larger power transmission range, wider voltage gain, and broader soft switching range. However, this new proposed converter has a larger reactive power than the traditional one, so its efficiency is affected. At the same time, all switches operate with the zero voltage switching, so the overall efficiency of the converter is improved. At last, a simulation model is built, and the simulation results verify the feasibility of the optimal control scheme.
Keywords: LC-type Dual Active Bridge (DAB), series resonant converter, Fuel Cells, Dual-Tank Resonant DC–DC Converters, Reactive Power Control.
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)