Testing Performance of 10 kW BLDC Motor and LiFePO4 Battery on ITB-1 Electric Car Prototype 姓名 : 賴弘偉 指導老師 : 許毅然 作者 : Agus Purwadi, Jimmy Dozeno, Nana Heryana.

Slides:



Advertisements
Similar presentations
Synchronous Machines (AC Generators)
Advertisements

Supercapacitor Energy Storage System for PV Power Generation
Motors & Motor Starters
Hybrid Terminal Sliding-Mode Observer Design Method for a Permanent-Magnet Synchronous Motor Control System 教授 : 王明賢 學生 : 胡育嘉 IEEE TRANSACTIONS ON INDUSTRIAL.
2003 SMMA Meeting 1 The DynaMotor TM Electronic Brushless Repulsion Motor A Novel High Torque Brushless Repulsion Motor.
Electric Motors and Generators
Power System Fundamentals
DIGITAL CONTROL STRATEGY FOR FOUR QUADRANT OPERATION OF THREE PHASE BLDC MOTOR WITH LOAD VARIATIONS C. Sheeba Joice, S. R. Paranjothi,and V.Jaeahar Seenthil.
Elec467 Power Machines & Transformers
Department of Electrical Engineering Southern Taiwan University of Science and Technology Robot and Servo Drive Lab. 2015/7/2 Digital Control Strategy.
BRUSHLESS D.C MOTORS Prepared by… FAKHRI KHALIFEH.
PARMENANT MAGNET SYNCHRONOUS GENERATOR BY JA’FAR R.A. AZIM Assem M.A. Al ighrair.
Prepared by: Luis Fernando Montoya Chun-Ju Huang Ashish K. Solanki
Synchronous Generator
Why Switched Reluctance Motors?. Let’s Focus on 3 Motor Types AC Induction Brushless DC Switched Reluctance.
Brushless DC electric motor J. Belwin Edward Assistant Professor Senior School of Electrical Engineering VIT University Vellore.
Synchronous Induction
Heliocentris Commercial Confidential 1 Integration of Industrial Fuel Cells in Technical Applications Using the NEXA ® Training System Dr. Claus Fischer.
0 Special-Purpose Electric Machines In addition to the types of machines we have studied so far, other types of special-purpose machines which operate.
Designed by Mr. H.K. Schrage - Swedish Engineer in 1911.
Student: Dueh-Ching Lin Adviser: Ming-Shyan Wang Date : 20th-Dec-2009
DC Machines.
Department of Electrical Engineering Southern Taiwan University
Batteries, Starting & Charging Systems Batteries Purpose: a storage of electrical current to operate starting motor and ignition systems when starting.
AC vs. DC The production of and use of electricity is an expensive business.Therefore the most efficient use of the resource is required. The most efficient.
1 An FPGA-Based Novel Digital PWM Control Scheme for BLDC Motor Drives 學生 : 林哲偉 學號 :M 指導教授 : 龔應時 IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, VOL.
MUEV Phase III By: Kevin Jaris & Nathan Golick. Introduction Petroleum is a finite resource. Demand for clean energy is driving the increase in the production.
Chapter 5. Electric Machines.
Dual Winding Method of a BLDC Motor for Large Starting Torque and High Speed IEEE TRANSACTIONS ON MAGNETICS, VOL. 41, NO. 10, OCTOBER 2005 G. H. Jang and.
Closed loop control.
Sensorless Control of the Permanent Magnet Synchronous Motor Using Neural Networks 1,2Department of Electrical and Electronic Engineering, Fırat University.
Department of Electrical Engineering Southern Taiwan University of Science and Technology Robot and Servo Drive Lab. 2015/11/20 Simple position sensorless.
Adviser : Cheng-Tsung Lin Student :Nan-hui Hsieh
Student: Hsin-Feng Tu Professor: Ming-Shyan Wang Date : Dec,29,2010
Motors and Generators.
DC Machines and Drives . Books
DC Machines.
Motors. Brushless AC Motors Converts electrical energy into a mechanical energy Out Runner Components of 3 Phase AC Brushless Motor Converts electrical.
Lecture 32Electro Mechanical System1 Assignment 10 Page 396 Problems 17-9, 17-14, and Due Date: Thursday 28 th April, 2011 Quiz No.5 Next Week Quiz.
BASIC ELECTRICAL TECHNOLOGY DET 211/3
EE SOLID STATE DRIVES UNIT-V SYNCHRONOUS MOTOR DRIVES Mr.R.Essaki Raj, Senior Lecturer EE SOLID STATE DRIVES UNIT-V SYNCHRONOUS MOTOR DRIVES.
Feedback Controlled Brushless DC Motor Background Lecture.
INTRODUCTION TO ROBOTICS Part 3: Propulsion System Robotics and Automation Copyright © Texas Education Agency, All rights reserved. 1.
Topics Introduction Review: Principle of Operation of Electric Machinery AC machines Single phase induction motors Other special purpose motors Exercise.
DC MOTOR. Magnetism Opposites Attract / Likes Repel.
Fundamentals of DC Electric Machinery
Professor Mukhtar ahmad Senior Member IEEE Aligarh Muslim University
CLOSED LOOP SPEED CONTROL OF DC MOTOR WITH PWM TECHNIQUE
AVTC Model Based Design Curriculum Development Project.
CNC FEED DRIVES Akhil Krishnan G M.Tech 1. CONTENTS 1.Introduction 2.Requirements of CNC feed drives 3.Servo motor 3.1 Servo drive control 3.2 Components.
CNC FEED DRIVES.
HEV Fundamentals Hybrid electric vehicles (HEVs) are vehicles that combine an internal combustion engine (ICE) with an electrical traction system. It usually.
MULTIPHASE BRUSHLESS DC MOTOR
Power Electronics and Control in Wind Energy Conversion Systems
Electric Motors and Generators
DC Generators.
Speed control of three phase induction motor
BRUSHLESS MOTOR COMMUTATION
An FPGA Implementation of a Brushless DC Motor Speed Controller
ELECTRONIC & TELECOMMUNICATION DEPARTMENT.
BRUSHLESS DIRECT CURRENT MOTOR
AC and DC motors.
ACTIVE LEARING ASSIGNMENT
Electric Machines In electrical engineering, electric machine is a general term for electric motors and electric generators and other electromagnetic machines.
Dr. Zainal salam; Power Electronics and Drives (Version 2),2002, UTMJB
Brushless DC (BLDC) Motors
Motor Drive Prof. Ali Keyhani. Modern Variable Speed System A modern variable speed system has four components: 1. Electric Motor 2. Power Converter -
Mathematical Model and Characteristics Analysis of the BLDC motor
Objective: The main aim of this project is to control the speed of the brush less direct current motor based on the single current sensor is proposed.
Electric Machine Design Course
Presentation transcript:

Testing Performance of 10 kW BLDC Motor and LiFePO4 Battery on ITB-1 Electric Car Prototype 姓名 : 賴弘偉 指導老師 : 許毅然 作者 : Agus Purwadi, Jimmy Dozeno, Nana Heryana Procedia Technology 11 ( 2013 ) 1074 – 1082 The 4th International Conference on Electrical Engineering and Informatics (ICEEI 2013) Electrical Power Engineerng, Institut Teknologi Bandung, Jl. Ganesha 10, Bandung, 40123, West Java, Indonesia

Outline Abstract Introduction Electric Vehicle Design Propulsion Motor Used Ionic Lithium LiFePO4Battery Battery Charging-Discharging Test Charging Test Results Discharging Test Results Conclusion References

Abstract The growing development of Electric vehicle industry due to more greener transportation needs, encouraging ITB as a research based educational institution to give their effort and participation in developing electric city car prototype, especially for Indonesia used. Two fundamental components in the electric car are the electric motor and its energy storage system. The motor used in this ITB-1electric car is brushless dc (BLDC) motor type. A controller will be used to convert the dc source into ac for BLDC motor power source. Voltage is one of the parameters that must be controlled by the battery management system, so that the battery can be protected effectively. In this paper, a 10 kW BLDC motor and its energy storage LiFePO4 battery types, will be evaluated based on their performance result from the tests.

Introduction Research and development of smart vehicle, such as an electric car, has been started since many years ago in developed countries and still continues now. Indonesia, through its Education and Culture Minsitry and Stated-Own Entreprise Ministry, aims to create its national electric vehicle that can be mass produced and slowly replaced the conventional one. ITB has become one of the several education institutes involved in the design and constructions of this vehicle. Before it is used in the car, the battery must has been tested first to check if it match the specification specified by the manufacturer. This paper will discuss about a study of the performance of BLDC motor and the battery used in ITB electric car prototype.

Electric Vehicle Design A schematic of an electric car is shown in Fig 1. Main components of an electric are motors as rotating machines, a drive system consists of an inverter and controllers used to convert dc power into ac power and also for adjust the speed and brake, and a battery system as a source of the power.

Electric Car Design The car is designed for inside city use, hence the range of the car is sufficient for short distance. The car body consist of several main components as shown in fig.2

The car is designed in single platform but for multi-purpose use as shown in fig.3 It has many body design types which is useful in different application.

Here is the specification of the car (see Fig. 4) summarized in Table.1

Propulsion Motor Used In this prototype car, BLDC motors are used as the propulsion device. This type of motor is also known as electrically commutated motor. It is actually categorized as a synchronous motor supplied from a DC source through an inverter so that the motor will be seen as it is supplied by an AC power source. The inverter output controlled by sensors and electronic controller. BLDC motor has a rotating permanent magnet and static armature just as the synchronous machine. This construction solved the current connection into moving armature. As its name, BLDC motor does not use brush for commutation, instead it use electronic scheme with particular mechanism.

Propulsion Motor Used Compared to other type of motors, BLDC motor has many advantages. It can operate in high speed with more than rpm whether it is loaded or not. It also has high acceleration and fast response. The inner rotor type of the motor has a low inertia, hence can accelerate, and change direction fast. It also has high efficiency, between 85% - 90%. Additionally, it produces the highest torque and has high reliability. One fundamental thing that differs BLDC motor with common DC motor is the absence of brush in commutating process. Commutation is a process in which the phase current directed according to their sequence in order to get the output wave we wanted. Unlike in DC motor, the commutation process in BLDC motor is controlled electronically. The stator of the motor must be energized in certain sequences to make it rotate. This is important since the position of rotor depends on the sequence applied. A common sensor used to detect rotor position the Hall Effect sensor. Generally, there are three hall sensors in a BLDC motor.

Ionic Lithium LiFePO4Battery The battery used in the car is the lithium-ionic type (See Fig.5). This battery has very good voltage and current characteristic. It has higher energy density compared to other types of batteries. Furthermore, it also has a high charging response, doesn’t have memory effect, and can be charged either it is empty or not.

Battery Charging-Discharging Test In this test, the battery(see Fig.6) will be charged and discharged with constant current. This test is performed in order to obtain charging and discharging curve from lithium-ion LiFePO4.Battery management system on the battery will work when battery reaches state of charge 100% and depth of discharge 80% to keep the battery from overcharging and over-discharging. When battery management system works, we will obtain the upper and lower voltage limit of the battery LiFePO4.

Charging Test Results Initial voltage of the battery is 69.3 V. From charging characteristics curve above, it can be observed that upper voltage limit of the battery is 85 V. Charging system used is constant current/constant voltage. Battery is charged with constant current of 16 A. When the terminals reach its upper voltage limit, system will change into constant voltage and current will slowly reduce from 16 A to its lower limit. This happens to prevent the battery from overcharged state and it makes sure that the battery is full charged. Upper voltage obtained from Laboratorium testing is equal to upper voltage limit from factory datasheet. See Fig.7 for curve of the charging process.

Discharging Test Results

Conclusion In this paper, it has been shown that BLDC motor is one of a good choice for electric vehicle application. It has been proved that BLDC motor has a high efficiency, high torque, and good speed range. The size of this motor is also small that it can reduce the space and weight of the car. LiFePO4 battery has a capacity of Ah on discharge current of 15 A continously for 425 minutes and it has the amount of energy of 8205 Wh. Laboratorium results show that battery capacity is Ah while factory datasheet shows 100 Ah. This difference is caused by use of different discharge current that affect the battery capacity. This shows that the battery capacity is not changed when it leaves the factory, and the battery is still in a very good condition.

References [1] Yedale, Padmaraja. “Brushless DC Motor Fundamental”, AN885, Microchip Technology Inc [2] Linden, David. “Handbook of Batteries”, Mc Graw Hill, Third Ed [3] [4] Nguyen, John. “Safety Perfomance for Phospate Based Large Format Lithium-Ion Battery, Valence Technology [5] Shah, Varsh, Ritesh Chaudhari, Prasanta Kundu. Performance Analysis of Hybrid Energy Storage System Using Hybrid Control Algorithm with BLDC Motor Driving a Vehicle. IEEE.2010 [6] Tashakori.A, Ektesabi M, Hosseinzadeh N. Modeling of BLDC Motor with Ideal Back-EMF for Automotive Applications. Proceedings of the World Congress on Engineering 2011 Vol II. IEEE 2011.