Predictive Control of PMSG-Based Hydro-Electric System With Battery Supported UPQC

Also Available Domains |AC-DC Converters

Project Code :TEPGPS834

Objective

the main objective of this project is predictive control is to achieve efficient, stable, and high-quality power generation and distribution from the PMSG-based hydro-electric system, supplemented by the battery-supported UPQC

Abstract

This paper proposes an integration of renewable power sources, power electronic devices, nonlinear and unbalanced loads cause power quality (PQ) problems. Mitigating PQ issues in distribution system is critical for both customers and suppliers because it enhances system efficiency, lowers electricity prices, ensures continuous supply, and decreases the need for frequent maintenance. A unified power quality conditioner (UPQC) is used with the standalone hydro-electric system to enhance the voltage and current qualities simultaneously. A hydro driven permanent magnet synchronous machine is working as a generator (PMSG) and is feeding a local sensitive load. A predictive based control technique is used for proper control of UPQC by generating desired switching pulses. By injecting the appropriate voltages through a series injection transformer, this UPQC-based system enhances the power quality (PQ) of load voltages by keeping their waveforms sinusoidal and their magnitudes constant at desired value despite variations in generated voltages caused by changes in loads. The shunt compensator not only maintains a sinusoidal and harmonic-free PMSG stator currents, but it also provides the system’s required reactive power and forces the generator to operate at unity power factor lowering the losses. Presented PMSG-based hydro-electric power generation with a battery support is simulated in matlab/Simulink by using 2018a software

Keywords: Battery storage, hydroelectric system, model predictive control, PMSG, power quality, shunt compensator, series compensator, unified power quality conditioner

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 & Hardware Requirements:

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

·         We can learn about hybrid turbine

·         We can learn about shunt VSI and series VSI

·         We can learn about UPQC

·         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