Voltage Feed-Forward Control of Photovoltaic Battery DC Microgrid Based on Improved Seeker Optimization Algorithm

Also Available Domains Microgrids|DC - DC Converters

Project Code :TEPGPS851

Objective

The main objective of this project is to develop a voltage feed-forward control system for a photovoltaic-battery DC microgrid, utilizing an Improved Seeker Optimization Algorithm (ISOA).

Abstract

This project presents a fast and efficient maximum power point tracking (MPPT) photovoltaic (PV) control method and a battery energy storage system (BESS) bus control method are proposed to improve the PV utilization and the bus voltage performance. Firstly, the principle of photovoltaic-battery and power balance is analyzed, and the mathematical model of each distributed generation in the DC microgrid is derived. Secondly, by introducing the voltage increment and time-varying smoothing factor, the exponential variable step perturbation and observation method for PV controller is proposed to accelerate the MPPT process. Considering the intermittent disturbance of PV energy absorption and large power fluctuation on the DC bus, parameters of BESS voltage controller are optimized by the improved seeker optimization algorithm (ISOA) which is improved by the variational Cauchy operator and chaotic initialization optimization strategy. Furthermore, to improve the voltage closed-loop response speed and reduce the hysteresis characteristics, a feed-forward compensation strategy is designed. Compared with the simulation results of traditional control method, the proposed method reduces the average voltage ripple percentage from 3% to 1% and improves the MPPT response speed from 70ms to 10ms. The simulation results verified the correctness and effectiveness of the proposed method. The simulation results can be evaluated by using Matlab/Simulink Software.

Keywords: DC microgrid, voltage stabilization control, PID control, seeker optimization algorithm, maximum power point tracking. 

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

Processor                     : I3 / I5 (Mostly prefer)

Learning Outcomes

 

Β·         Introduction to Matlab/Simulink

Β·         How to start with MATLAB

Β·         About Matlab language

Β·         About tools & libraries

Β·         Application of Matlab/Simulink

Β·         Basics on Matlab/Simulink

Β·         Introduction to converters

Β·         Introduction to switches

Β·         We can learn about Solar PV Systems

Β·         We can learn about Battery Systems

Β·         We can learn about Improved seeker optimization algorithm

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

Demo Video