Development of three phase back to back converter with current flow control using raspberry Pi microcontroller

A High-Voltage Direct Current (HVDC) electric power transmission system uses direct current form the bulk transmission of electrical power, in contrast with the common Alternating Current (AC) systems. For a long-distance transmission, HVDC systems may be less expensive and suffer lower electrical l...

Full description

Saved in:
Bibliographic Details
Main Author: Mamat, Ibrahim
Format: Thesis
Language:English
English
English
Published: 2015
Subjects:
Online Access:http://eprints.uthm.edu.my/1320/2/IBRAHIM%20MAMAT%20COPYRIGHT%20DECLARATION.pdf
http://eprints.uthm.edu.my/1320/1/24p%20IBRAHIM%20MAMAT.pdf
http://eprints.uthm.edu.my/1320/3/IBRAHIM%20MAMAT%20WATERMARK.pdf
Tags: Add Tag
No Tags, Be the first to tag this record!
id my-uthm-ep.1320
record_format uketd_dc
spelling my-uthm-ep.13202021-10-03T06:23:15Z Development of three phase back to back converter with current flow control using raspberry Pi microcontroller 2015-02 Mamat, Ibrahim TK7800-8360 Electronics A High-Voltage Direct Current (HVDC) electric power transmission system uses direct current form the bulk transmission of electrical power, in contrast with the common Alternating Current (AC) systems. For a long-distance transmission, HVDC systems may be less expensive and suffer lower electrical losses. The overall HVDC system is call back-to-back converter. Therefore, this project is to design and to develop a back-to-back converter with Proportional-Integrative-derivative (PID) control current that could be applied for the resistive load. The basic structure of the PID controller makes it easy to regulate the process output. The control technique is called a current control technique by comparing the output current with the reference current. Thus, the PID controller will force the output current to follow the reference current by creating and changing the pulse width modulation (PWM) signals. The PID controller is developed and simulated by using MATLAB/Simulink software and then implemented to the hardware by using Raspberry Pi Microcontroller. The result from the simulation shows that, the load current follows the reference current from 0 amperes until 1 amperes and the results from the experiment shows that the output current at the load follows the reference current from 0 amperes until 0.4 amperes. The high sensitivity of current sensor and also due to very low resolution of analogue to digital converter effect the result in this project. The results explanation of the project can be divided into three categories; simulation, open loop control and closed loop control. 2015-02 Thesis http://eprints.uthm.edu.my/1320/ http://eprints.uthm.edu.my/1320/2/IBRAHIM%20MAMAT%20COPYRIGHT%20DECLARATION.pdf text en staffonly http://eprints.uthm.edu.my/1320/1/24p%20IBRAHIM%20MAMAT.pdf text en public http://eprints.uthm.edu.my/1320/3/IBRAHIM%20MAMAT%20WATERMARK.pdf text en validuser mphil masters Universiti Tun Hussein Onn Malaysia Faculty of Electrical and Electronic Engineering
institution Universiti Tun Hussein Onn Malaysia
collection UTHM Institutional Repository
language English
English
English
topic TK7800-8360 Electronics
spellingShingle TK7800-8360 Electronics
Mamat, Ibrahim
Development of three phase back to back converter with current flow control using raspberry Pi microcontroller
description A High-Voltage Direct Current (HVDC) electric power transmission system uses direct current form the bulk transmission of electrical power, in contrast with the common Alternating Current (AC) systems. For a long-distance transmission, HVDC systems may be less expensive and suffer lower electrical losses. The overall HVDC system is call back-to-back converter. Therefore, this project is to design and to develop a back-to-back converter with Proportional-Integrative-derivative (PID) control current that could be applied for the resistive load. The basic structure of the PID controller makes it easy to regulate the process output. The control technique is called a current control technique by comparing the output current with the reference current. Thus, the PID controller will force the output current to follow the reference current by creating and changing the pulse width modulation (PWM) signals. The PID controller is developed and simulated by using MATLAB/Simulink software and then implemented to the hardware by using Raspberry Pi Microcontroller. The result from the simulation shows that, the load current follows the reference current from 0 amperes until 1 amperes and the results from the experiment shows that the output current at the load follows the reference current from 0 amperes until 0.4 amperes. The high sensitivity of current sensor and also due to very low resolution of analogue to digital converter effect the result in this project. The results explanation of the project can be divided into three categories; simulation, open loop control and closed loop control.
format Thesis
qualification_name Master of Philosophy (M.Phil.)
qualification_level Master's degree
author Mamat, Ibrahim
author_facet Mamat, Ibrahim
author_sort Mamat, Ibrahim
title Development of three phase back to back converter with current flow control using raspberry Pi microcontroller
title_short Development of three phase back to back converter with current flow control using raspberry Pi microcontroller
title_full Development of three phase back to back converter with current flow control using raspberry Pi microcontroller
title_fullStr Development of three phase back to back converter with current flow control using raspberry Pi microcontroller
title_full_unstemmed Development of three phase back to back converter with current flow control using raspberry Pi microcontroller
title_sort development of three phase back to back converter with current flow control using raspberry pi microcontroller
granting_institution Universiti Tun Hussein Onn Malaysia
granting_department Faculty of Electrical and Electronic Engineering
publishDate 2015
url http://eprints.uthm.edu.my/1320/2/IBRAHIM%20MAMAT%20COPYRIGHT%20DECLARATION.pdf
http://eprints.uthm.edu.my/1320/1/24p%20IBRAHIM%20MAMAT.pdf
http://eprints.uthm.edu.my/1320/3/IBRAHIM%20MAMAT%20WATERMARK.pdf
_version_ 1747830769495048192