Nonlinear adaptive control design with average performance analysis for photovoltaic system based on half bridge shunt active power filter

Project Code :TEMACS34

Objective

Main objective of this project is compensates harmonics and Harmonic current produced by the nonlinear loads.

Abstract

This project investigates the problem of controlling a single phase Shunt Active Power Filter (SAPF) connected to two photovoltaic arrays through a half bridge inverter involving two DC link capacitors. The control aims are threefold: ensuring a satisfactory Power Factor Correction (PFC) at the grid-power filter connection point by compensating the harmonic and reactive currents produced by the nonlinear loads; extracting a maximum active power in the output photovoltaic arrays by applying the Maximum Power Point Tracking (MPPT) block and balancing the power exchange between the photovoltaic source and the AC power grid by regulating the DC link capacitors voltages. 

The problem is dealt with using a cascade nonlinear adaptive controller The inner loop is designed using sliding mode and Lyapunov stability techniques so that to ensure a unity power factor. It also includes an adaptive observer that performs online estimation of the grid state variables which are not accessible to measurements. 

The outer loop is mainly constituted of filtered Proportional-Integral (PI) regulator, that ensures a tight regulation of the photovoltaic voltage, and the Incremental Conductance (IC) algorithm to meet MPPT. The results are confirmed by numerical simulation within MATLAB/Sim Power Systems environment.

Keywords: Shunt Active Power Filter (SAPF), Power Factor Correction (PFC), Maximum Power Point Tracking (MPPT), Incremental Conductance (IC) algorithm.

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 Configuration:

Operating System :  Windows 7/8/10

Application Software :  Matlab/Simulink

Hardware Configuration:

RAM :  8 GB / 4 GB (Min)

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
  • Introduction to Power Distribution Systems
  • Introduction to Renewable Energy Sources
  • Introduction to Solar Power System
  • Introduction to MPPT.
  • Introduction to power electronic devices
  • Introduction to Pulse Width Modulation (PWM),
  • Design of Solar Panel.
  • Design of shunt active power filter.
  • Introduction to open loop and closed loop control system
  • Introduction to Voltage Source Converters (VSC)
  • We can learn about PI Controllers
  • We can learn about different types of loads.
  • We can learn about Mathematical model of Solar panel
  • Project Development Skills:
    • Problem analyzing skills
    • Problem solving skills
    • Creativity and imaginary skills
    • Programming skills
    • Deployment
    • Testing skills
    • Debugging skills
    • Project presentation skills
    • Thesis writing skills

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