ELG3316: Electric Machines and Power Systems

   

 

Course Plan
 

Projects

Office Hours: Monday (13:00-14:30)

Instructors
Riadh Habash
rhabash@site.uottawa.ca   1
TA: Sha Wang

shawang@site.uottawa.ca

 

Course Progressing

Course Outline:  Textbook: Stephen J. Chapman, Electric Machinery Fundamentals, 4e, McGraw-Hill, 2005

Date
Activity
Sep 9
Introduction; Chapter 1
Sep 14

Chapter 1 (1.9):

Apparent power

Reactive power

Complex power

Power factor correction

Sep 16
2.1; 2.2; 2.3 (Example 2-1)
Sep 21
2.4; 2.5. (Example 2-2). Learn open-circuit test and short-circuit test.
Sep 22
2.6 (Example 2-3)   
Sep 23
DGD: 1.17; 1.18 (Chapter1) Chapter2
Sep 28
2.7 (Example 2-5)

DGD: Chapter2 P2.23         
Sep 30
2.8; 2.9; 2.10 (Example 2-9); 2.12
Oct 5 3.1; 3.2 (Lecture 4)(Chapter3)
Oct 6 Chapter 4: The AC Generator;
Oct 7 DGD: P2.23;   Chapter3
Oct 12 Thanksgiving Day
Oct 13 Chapter 5 (5.1; 5.2; 5.3; 5.4; 5.5; 5.6) 5.5; 5.6; 5.7; 5.8 (Example Problems)
Oct 14 DGD: Chapter 5   
Oct 19 Review and Quiz 2 (5.1-5.8)
Oct 20 Midterm: Chapter 2, Chapter 3 (3.1 and 3.2), and Chapter 5 (5.1-5.8)
Oct 21 Demonstration of a Wind System
Oct 26 5.9
Oct 27 Chapter 6: Synchronous motors;
Oct 28 Tutorial on Chapter  5: Chapter 5
Nov 2 Chapter 7: 7.1; 7.2; 7.3; Example 7-3 and Example 7-4
Nov 3 Chapter 7: 7.6, 7.4
Nov 4 DGD: P7-7; 7-14
Nov 8 Tutorial on Chapter 7
Nov 9 Tutorial on Chapter 7: Induction motor slip; Stator field; The wound rotor motor; Torque of induction motor;
Nov 10 Quiz 3: Chapter 7: 7-4; 7-5; 7-7; 7-14; 7-23
Nov 16 Chapter 8 (Introduction to DC Machines): Armature reaction; Basic DC motor construction; Fundamental DC motor; The DC motor; Series motor; Shunt motor;
Nov 17 Chapter 9: 9.1; 9.2; 9.3; 9.4; Example 9-1; Problems: 9-1 and 9-2
Nov 18 DGD: Chapter 9
Nov 23 Transmission of electrical energy (Lecture 10)(Lecture 12)
Nov 24

Chapter 10 (Lecture 13): Single phase motors

Nov 25 DGD: Q4: Chapter 9: 9.1; 9.2; 9.3; 9.4; 9.14; 9.15; 9.21
Nov 30 Revisiting Chapter 3: DIAC; SCR; TRIAC; Renewable Energies
Dec 1

Renewable Energies

Dec 7 Review

 

Additional Lecture Notes

Lecture 1: Based on Chapter 1

Lecture 2

Lecture 3

Lecture 4

Lecture 5: P2.23

Lecture 6

Lecture 7

Lecture 8

Lecture 9

Lecture 10

Lecture 11

Lecture 12

Lecture 13

Lecture 14







 

Tutorials

Chapter1
Chapter2
Chapter3
Chapter 5
 

Labs and Projects

Electrical Safety
MATLAB Tutorial

Lab 1
Lab 2
Lab 3
Lab4: Part 1  Part 2
Lab 5:  Example 7-5: pp. 414-416 (Textbook) Lab6: DC Generator 
Date Lab Activity
Sep 16
Introduction to MATLAB and SIMULINK (MATLAB)
Sep 23
Lab 1   (Computer labs 0130 and 0131): Individual work.
Sep 30
Lab 2   (Computer labs 0130 and 0131): Individual work
Oct 7 Power Measurements (CBY B402) Electrical Safety
Oct 14 Power Measurements (CBY B402) Electrical Safety
Oct 21 Demonstration of MATLAB simulation work in the computer lab.
Oct 28 Demonstration of MATLAB simulation work in the computer lab.
Nov 4 Demonstration of MATLAB simulation work in the computer lab/ Demonstration at CBY B402C.
Nov 10 Demonstration of MATLAB simulation work in the computer lab/ Demonstration at CBY B402C: Wind Energy Simulator.
Nov 17 Demonstration of MATLAB simulation work in the computer lab/ Demonstration at CBY B402C: Lab-Volt Trainer.
Nov 24 Project Presentations
Dec 2 Project Presentations
   
  Lab 3   (CBY B402): Group Work: Electrical SafetyGroups
  Lab 3   (CBY B402): Group Work: Electrical Safety   Groups
  Lab4: Part 1  Part 2  (Computer labs 0130 and 0131): Individual work
  Lab4: Part 1  Part 2  (Computer labs 0130 and 0131): Individual work
  Project: (Computer labs 0130 and 0131)
  Project: (Computer labs 0130 and 0131): Project Progress: 5%
  Lab6: DC Generator (CBY B402): Group Work

Lab6: DC Generator (CBY B402): Group Work

Project
 

Times and Locations

Section

Activity

Time

Location

ELG3316
Lecture 1
Monday, 16:00 - 17:30
CBY B202
ELG3316
DGD
Wednesday, 14:30-16:30
LMX 390
ELG3316
Lecture 2
Tuesday, 13:00-14:30
LMX 106
ELG3316
Lab Group 1
Wednesday (8:30-11:30)
STE 0130
ELG3316
Lab Group 2
Wednesday (8:30-11:30)
STE 0130
 

Course Assessment

Midterm: 20%

Final: 40%

Lab: 10%

Quizzes: 10%

Project: 20%