2. 4 Days Workshop
8th-11th June 2015
Grand Hyatt,Bali
indonesia
This course will provide a unique opportunity for engineers in the power industry to undertake a compre-
hensive and rigorous study of a critical area, delivered by the world's foremost expert on the subject. The
course will cover the comprehensive overview of power system stability and control issues and problems.
The broad subject is concerned with the operation of the power system including generating plants under
normal and abnormal conditions.
Holds a Ph.D. In Electrical Engineering from the University of Toronto and has over 35 years of experience in the electric power industry.
Leading edge of development and application of technology that has made the operation of large-scale interconnected power systems more safe, secure
and reliable.
Impacted many areas, including modeling and measurement tools, analysis methods and control techniques that enhance power system stability.
Dr. Kundur's development and validation of comprehensive power plant models for dynamic analysis and control design have been incorporated in
software packages that address transient stability, small signal stability, voltage stability and dynamic reduction for large-scale power systems. Widely
recognized and applied by the power industry, these models are important tools in testing whether the power system can handle and recover from
disturbances without taking down a large portion of the grid.
Dr. Kundur's contributions to advanced excitation control designs have enhanced overall system dynamic performance. In addition to improving system
security, the designs also improved efficiency since the system is able to operate at higher limits.
Dr. Kundur is the author of the book “Power System Stability and Control,” which has been used by academics and practicing engineers worldwide
and is considered an industry classic.
Dr. Kundur is an IEEE Life Fellow and the recipient of several awards, including the 1997 IEEE Nikola Tesla Award, the 2005 IEEE PES Charles Concordia
Power System Engineering Award and the 2010 IEEE Medal in Power Engineering “For leadership in the development and application of analytical
methods, tools and techniques for modeling, simulation and control of large-scale interconnected power systems.”
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Job title:
General Managers
Heads
Senior Manager
Managers
Specialist
System Planners
Network Planners
Grid Operators
Power Engineers
Electrical Engineers
Division / Department
Electrical Engineering
Operations
Technical
Instrumentation & Control
Industry:
Public Electric Utility Companies
Independent Power Producers
Manufactures
Power Distribution Companies
Power Transmission Companies
Generation Industries
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About Power System Stability and Control
Why you should attend this practical course?
Your Facilitator
Who should attend?
Highlights
Facilitated by:
Dr. Prabha Kundur,
President,
Kundur Power System
Solutions Inc, Canada
Operate the power plant at an optimal and efficient state
Better prepare against disturbances and downtime
Meet forecast energy requirements at a minimum cost
Minimize outages due to unforeseen circumstances
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Definition and classification of power system stability
Comprehensive review of synchronous machines, excitation systems, governors and
transmission systems
Control of active power and frequency
Control of reactive power and voltage
Transient and small signal stability
Voltage and frequency stability
Defense plans and island operation
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Senior positions involving power system planning and design at Ontario Hydro, Canada
President and CEO of Powertech Labs Inc., Canada
President of Kundur Power System Solutions Inc.
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At the end of the workshop, you will be able to:
Dr. Prabha Kundur
Companies Dr. Kundur has worked with:
OPTIMIZINGPOWERSYSTEMSTOACHIEVEMAXIMUMRELIABILITY
POWER SYSTEM
STABILITY AND
CONTROL
azimah@blazeavenue.com.my GL: 03 227 22 088 blazeavenue.com.myFax: 03 226 03 187
3. Course Delivery
Course Outline
DAY ONE
DAY TWO
DAY THREE
Course schedule
Registration and coffee
Course commences
Morning refreshments and networking break
Course resumes
Luncheon
Course resumes
Afternoon refreshments and networking break
Course resumes
Course Ends
08:30
09:00
10:30
11:00
12:45
14:00
15:15
15:45
17:30
Day 1
Session One
Introduction to Power System Stability
• Definition and classification of power system stability
• Brief description of each category of system stability
• Conceptual relationship between power system stability, security and reliability
• Traditional approach power system security assessment
• Challenges to secure operation of present-day power systems
Review of Equipment Characteristics and Modelling
Session Two
• Synchronous machines: theory and modelling, machine parameters, saturation modelling, synchronous
machine representation in stability studies, reactive capability limits.
• Excitation systems: elements of an excitation system, types of excitation systems,
control and protective functions,modelling.
• Prime movers and governing systems: hydraulic turbines and governing systems, steam turbines and
governing systems, gas turbines and combined-cycle units.
• Generating unit testing and model validation: test procedures, current industry practices.
• AC Transmission: performance equations and parameters, surge impedance loading,
voltage-power characteristics, reactive power requirements, loadability characteristics, factors influencing transfer of active and reactive power.
• Power system loads: basic modelling concepts, static and dynamic models, acquisition of load model parameters.
Session Three
Control of Active Power and Frequency
• Fundamentals of frequency control
• Composite regulating characteristics of power systems
• Automatic generation control
• Under-frequency load shedding
4 Days Workshop
8th-11th June 2015
Grand Hyatt,Bali
indonesia
POWER SYSTEM
STABILITY AND
CONTROL
azimah@blazeavenue.com.my GL: 03 227 22 088
blazeavenue.com.myFax: 03 226 03 187
4. Day 2
Control of Reactive Power and Voltage
• Control objectives
• Production and absorption of reactive power
• Methods of voltage control
• Principles of reactive compensation in transmission systems
• Static and dynamic compensators
• Coordinated control of reactive power and voltage
Transient (angle) Stability
• An elementary view of the transient stability problem
• Simulation of power system dynamic response
• Numerical integration methods
• Performance of protective relaying
• Case Studies
• Transient stability enhancement
• Examples of major system blackouts due to transient instability
Session Four
Session Five
Day 3
Small-Signal (angle) Stability
• Nature and description of small-signal stability (SSS) problems
• Methods of analysis; modal analysis approach
• Characteristics of local-plant mode and inter-area mode oscillations
• Case studies
• SSS enhancement
• Examples of major system disturbances due to small-signal instability
Subsynchronous Oscillations
• Steam turbine generator torsional characteristics
• Torsional interaction with power system controls: PSS, HVDC converter controls
• Subsynchronous resonance
• Impact of network-switching disturbances
Session Six
Session Seven
Voltage Stability
• Description of the phenomenon
• Factors influencing voltage stability
• Methods of analysis
• Typical scenarios of short-term voltage instability and long-term voltage instability
• Prevention of voltage instability
• Case studies
• Examples of major system disturbances due to voltage instability
Day 4
Frequency Stability
• Nature and description of frequency stability problems
• Examples of system disturbances caused by frequency instability
• Analysis of frequency stability problems
• Case studies
• Mitigation of frequency stability problems.
Wind Turbine Generators
• Wind turbine characteristics
• Types of wind turbine generator technologies
• Protection systems
• Impact on power system dynamic performance
Major Power Grid Blackouts in 2003
• Description of events
• Causes of blackouts
• Lessons learned
Comprehensive Approach to Power System Security
• Application of robust power system controls
• Defense plan against extreme contingencies
• Restoration plans
• On-line security assessment
• Reliability management system
• Wide-area monitoring and control
• Widespread use of distributed generation
Session Eight
Session Nine
Session Ten
Session Eleven
Session Twelve
azimah@blazeavenue.com.my GL: 03 227 22 088 blazeavenue.com.myFax: 03 226 03 187
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Power System Stability & Control
8th-11th June 2015
Grand Hyatt,Bali
indonesia
USD 2,700 USD 2,899
Register before 15th AprilRegister before 27 February Register before 15th May
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4 Days Workshop
8th-11th June 2015
Grand Hyatt,Bali
indonesia
Power System Stability &
Control