Design of User Interface’s Prototype and Simulator of Asymmetric Bridge Converter for 12 Slots 8 Poles 5kW 3000 RPM Switched Reluctance Motor Drive

Three-wheeled low power vehicle is often used in micro, small, and small enterprise. To power up the vehicle, fossil fuels which can cause air pollution is still preferably used. To reduce the dependence of fossil fuels, a change of prime mover in this vehicle into electric-based vehicle utilizing S...

Full description

Saved in:
Bibliographic Details
Main Author: Hamdan Rivani, Naufal
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/39389
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:39389
spelling id-itb.:393892019-06-26T10:29:15ZDesign of User Interface’s Prototype and Simulator of Asymmetric Bridge Converter for 12 Slots 8 Poles 5kW 3000 RPM Switched Reluctance Motor Drive Hamdan Rivani, Naufal Indonesia Final Project user interface, sensors, signal conditioning circuit, simulator’s user interface. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/39389 Three-wheeled low power vehicle is often used in micro, small, and small enterprise. To power up the vehicle, fossil fuels which can cause air pollution is still preferably used. To reduce the dependence of fossil fuels, a change of prime mover in this vehicle into electric-based vehicle utilizing Switched Reluctance Motor is proposed. The Switched Reluctance Motor is used since it has simple construction, cheap, and reliable. The conversion of vehicle’s prime mover into Switched Reluctance Motor will affect the user interface of the vehicle, thus it also demands change in its user interface. In this final project, a prototype design and simulator of asymmetric bridge converter’s user interface driving SRM will be conducted. Sensors used in this user interface are Hall effect current sensor, Hall effect sensor for position and speed sensing, resistive voltage divider for voltage sensing, and thermistor for temperature sensing. After choosing those sensors, some signal conditioning circuits, such as dc level shifter, filter, and attenuation are designed to make the output of sensors compatible with DSP’s input specification. Next, power supply circuits, such as 1.8V, 3.3V, ±5V, and ±15V are chosen to meet the supply voltage’s specification of the sensors and signal conditioning circuit. Last, a design of simulator’s user interface for Asymmetric Bridge Converter which can accommodate user’s input as well as display the vehicle’s status had been implemented and simulated to run the simulation of electric vehicle powered by 12 Slots 8 Poles 5kW 3000 rpm Switched Reluctance Motor. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Three-wheeled low power vehicle is often used in micro, small, and small enterprise. To power up the vehicle, fossil fuels which can cause air pollution is still preferably used. To reduce the dependence of fossil fuels, a change of prime mover in this vehicle into electric-based vehicle utilizing Switched Reluctance Motor is proposed. The Switched Reluctance Motor is used since it has simple construction, cheap, and reliable. The conversion of vehicle’s prime mover into Switched Reluctance Motor will affect the user interface of the vehicle, thus it also demands change in its user interface. In this final project, a prototype design and simulator of asymmetric bridge converter’s user interface driving SRM will be conducted. Sensors used in this user interface are Hall effect current sensor, Hall effect sensor for position and speed sensing, resistive voltage divider for voltage sensing, and thermistor for temperature sensing. After choosing those sensors, some signal conditioning circuits, such as dc level shifter, filter, and attenuation are designed to make the output of sensors compatible with DSP’s input specification. Next, power supply circuits, such as 1.8V, 3.3V, ±5V, and ±15V are chosen to meet the supply voltage’s specification of the sensors and signal conditioning circuit. Last, a design of simulator’s user interface for Asymmetric Bridge Converter which can accommodate user’s input as well as display the vehicle’s status had been implemented and simulated to run the simulation of electric vehicle powered by 12 Slots 8 Poles 5kW 3000 rpm Switched Reluctance Motor.
format Final Project
author Hamdan Rivani, Naufal
spellingShingle Hamdan Rivani, Naufal
Design of User Interface’s Prototype and Simulator of Asymmetric Bridge Converter for 12 Slots 8 Poles 5kW 3000 RPM Switched Reluctance Motor Drive
author_facet Hamdan Rivani, Naufal
author_sort Hamdan Rivani, Naufal
title Design of User Interface’s Prototype and Simulator of Asymmetric Bridge Converter for 12 Slots 8 Poles 5kW 3000 RPM Switched Reluctance Motor Drive
title_short Design of User Interface’s Prototype and Simulator of Asymmetric Bridge Converter for 12 Slots 8 Poles 5kW 3000 RPM Switched Reluctance Motor Drive
title_full Design of User Interface’s Prototype and Simulator of Asymmetric Bridge Converter for 12 Slots 8 Poles 5kW 3000 RPM Switched Reluctance Motor Drive
title_fullStr Design of User Interface’s Prototype and Simulator of Asymmetric Bridge Converter for 12 Slots 8 Poles 5kW 3000 RPM Switched Reluctance Motor Drive
title_full_unstemmed Design of User Interface’s Prototype and Simulator of Asymmetric Bridge Converter for 12 Slots 8 Poles 5kW 3000 RPM Switched Reluctance Motor Drive
title_sort design of user interface’s prototype and simulator of asymmetric bridge converter for 12 slots 8 poles 5kw 3000 rpm switched reluctance motor drive
url https://digilib.itb.ac.id/gdl/view/39389
_version_ 1822269245317185536