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Boise State University
Department of Electrical and Computer Engineering
ECE 473 / 573 –Power System Analysis I
Fall 2017
Goal: The goal of this course is to understand how power system components are modeled, and to apply these models in the analysis, design, and operation of modern power systems.
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Catalog Data: ECE 473 / 573 Power System Analysis I.
Three-phase AC systems, generators, transformers, transmission lines, one-line diagrams, per-unit system, network calculations, power-flow studies, power-flow control and regulation. PREREQ: ECE 212. COREQ: ECE 300.
Prerequisites by Topic:
- Single-Phase and Three-Phase AC Circuits (ECE 212)
- Elementary Matrix Algebra (MATH 333)
- Basic Electromagnetic Theory (ECE 300)
Textbook:
[1] J.D. Glover, M.S. Sarma, and T.J. Overbye. Power System Analysis and Design,
Sixth Edition. Toronto, Canada: CENGAGE Learning, 2016.
Course Instructor:
Dan Johnston, Ph.D., P.E.
Office: MEC 302H
Email: DanJohnston466@boisestate.edu
Office Hours: Thursday 4:00 p.m. – 6:00 p.m.
Classroom: ENGR 313 Tuesday, Thursday: 10:30 a.m. – 11:45 a.m.
URL:
Teaching Assistant:
TBD
Office: TBD
Email: TBD
Office Hours: TBD
Graduate Course (573):
Graduate students will be assigned additional course work, and will be graded on a different scale than the ECE 473 class.
Safety Document: Safety Document for Syllabi 1_19_2016
Computer Software:
SMATH Studio Open Source (PC/Mac/Linux)
PowerWorld Student Edition (PC Only)
Parallels Emulator (or Equivalent to Run Windows on Mac OSX or Linux)
MATLAB Student Edition or OCTAVE Open Source (PC/Mac/Linux)
Attachments: Three-phase AC
Course Topics
Chapter 1: Introduction to Power Systems. (2 Lectures)
1.1 History of Electric Power Systems
1.2 Present and Future Trends
1.3 Electric Utility Industry Structure
1.4 Computers in Power System Engineering
1.5 PowerWorld Simulator
Chapter 2: Fundamentals of AC Power (4 Lectures)
2.1 Phasors
2.2 Instantaneous Power in Single Phase AC Circuits
2.3 Complex Power
2.4 Network Equations
2.5 Balanced Three-Phase Circuits
2.6 Power in Balanced Three-Phase Circuits
2.7 Advantages of Balanced Three-Phase Versus Single-Phase Systems
Chapter 3: Power Transformers and Per Unit. (8 Lectures)
3.1 The Ideal Transformer
3.2 Equivalent Circuits for Practical Transformers.
(Exam #1)
3.3 The Per-Unit System
3.4 Three-Phase Transformer Connections
3.5 Two-Winding Transformers.
3.6 Three-Winding Transformers
3.7 Autotransformers
3.8 Transformers with Off-Nominal Turns Ratios
Chapter 7: Symmetrical Faults. (4 Lectures)
7.1 Series R-L Circuit Transients
7.2 Three Phase Short Circuit – Unloaded Synchronous Machine
7.3 Power System Three Phase Short Circuits
7.4 Bus Impedance Matrix
7.5 Circuit Breaker and Fuse Selection
(Exam #2)
Chapter 6: Power Flows. (9 Lectures)
6.1 Direct Solution to Linear Algebraic Equations: Gauss Elimination
6.2 Iterative Solution to Linear Algebraic Equations: Jacobi and Gauss-Seidel
6.3 Iterative Solution to Nonlinear Algebraic Equations: Newton-Raphson
6.4 The Power-Flow Problem
6.5 Power-Flow Solution by Gauss-Seidel
6.6 Power-Flow Solution by Newton-Raphson
6.7 Control of Power Flow
6.8 Sparsity Techniques
6.9 Fast Decoupled Power Flow
6.10 The “DC” Power Flow
6.11 Power Flow Modeling of Wind Generation
6.12 Economic Dispatch
6.13 Optimal Power Flow
(Final Exam #3)
Exam and Quiz Dates:
The course material will be divided into three sections of approximately 9 lectures each. There will be two quizzes and one exam for each section, and will only cover topics from their respective section.
Section 1
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- Quiz #1 September 7th
- Quiz #2 September 14th
- Exam#1 September 21nd Chapters 1, 2 and 3
Section 2
- Quiz #3 October 12th
- Quiz #4 October 19th
- Exam #2 October 26th Chapters 3 and 7
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Section 3
- Quiz #5 November 16th
- Quiz #6 November 30st
- Exam #3 (Final) December 15th Chapter 6
Homework:
- SMATH Studio and MATLAB will be used to illustrate equation based calculations and algorithms for power system analysis.
- Homework will be assigned weekly on Tuesday, and will be due in class on the Thursday one week and two days after it is assigned. No credit will be given to homework received after the due date.
- PowerWorld will be used to illustrate the operation and control of modern power systems.
- Flexibility for turning in homework and taking tests will be given if you let me know in advance.
Grading Policy:
- Homework 10%
- Three Exams 60%
- Six Quizzes 24%
- One Project 6% Design Project #3, Assignment: 1 & 2 from Chapter 6
- Extra Credit Project 5% Design Project #3, Assignment: 3 from Chapter 7
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Announcements:
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Lecture | Date | Notes | Files |
---|---|---|---|
1 | Tue-Aug-22 | HW#1 Assigned | HW-1 |
2 | Thu-Aug-24 | ||
3 | Tue-Aug-29 | HW#2 Assigned | HW-2 |
4 | Thu-Aug-31 | HW#1 Due (Proof of PowerWorld Install) | L1.4-Overhead Single-Phase_AC |
5 | Tue-Sept-5 | HW #3 Assigned | L1.5-Overhead HW-3 3ph-example |
6 | Thu-Sept-7 | Quiz #1 (15 min) HW #2 Due | HW-2soln HW-2p1 Phase Example |
7 | Tue-Sept-12 | HW #4 Assigned | L07-Overhead L7 Capacitive Compensation 3ph Example HW-4 |
8 | Thu-Sept-14 | Quiz #2 (20 min) HW #3 Due | HW-3soln |
9 | Tue-Sept-19 | ||
Thu-Sept-21 | Exam #1 HW#4 Due | HW-4soln | |
1 | Tue-Sept-26 | HW #5 Assigned | HW-5 |
2 | Thu-Sept-28 | L2.1-Overhead | |
3 | Tue-Oct-3 | HW #6 Assigned | L-2.2-Overhead HW-6 |
4 | Thu-Oct-5 | HW #5 Due | HW-5soln |
5 | Tue-Oct-10 | HW #7 Assigned | Overhead-L2.5 HW-7 |
6 | Thu-Oct-12 | Quiz #3 (20 min) HW #6 Due | Overhead-L2.6 HW-6soln |
7 | Tue-Oct-17 | HW #8 Assigned | HW-8 |
8 | Thu-Oct-19 | Quiz #4 (20 min) HW #7 Due | HW-7-Solutions overhead-l2-8 |
9 | Tue-Oct-24 | ||
Thu-Oct-26 | Exam #2 HW #8 Due | HW-8-Solutions | |
1 | Tue-Oct-31 | Start Power Flow Chapter HW #9 Assigned | |
2 | Thu-Nov-2 | ||
3 | Tue-Nov-7 | HW #9 Assigned | HW-9 newtonraphsonapplications |
4 | Thu-Nov-9 | ||
5 | Tue-Nov-14 | ||
6 | Thu-Nov-16 | HW #9 Due | HW-9-Solutions Nov17-Overhead |
Tue-Nov-21 | Holiday | ||
Thu-Nov-23 | Holiday | ||
7 | Tue-Nov-28 | ECE 473-573 Project Quiz #6 Study Guide | |
8 | Thu-Nov-30 | Quiz #5 (20 min) Project Assignment #1 Due | |
9 | Tue-Dec-5 | Dead Week | Project Files extra-credit-project-using-design-project-3 |
Thu-Dec-7 | Dead Week Projects Due Quiz #6 | practice-exam-3-solutions | |
Thu-Dec-14 | Exam #3 (Final) 10am-12pm - Same Room Extra Credit Project Due | ||
Tue-Dec-19 | Grades Due to BSU Registrar |