This seminar is specifically designed to provide an advanced understanding of the principles of power system protection design. Yet, via a progressive “building block” approach, this seminar has been specifically designed to meet the learning requirements of those who presently have only a fundamental knowledge of protection principles, while also considering advanced topics to provide a valuable insight for those more experienced in the discipline of power system protection design. Hence, this seminar will assist both those whose day to day work involves them in the application of protection design, coordination and relay setting, and also those in less directly associated areas of electricity system design
1. Topics Covered
Expert Course Faculty Leader
BARRIE MOOR
HV / LV POWER SYSTEM RELAY PROTECTION
LEARNING OUTCOMES
Fundamental Principles
of Power System
Protection
Fault Studies and
Sequence Components
Sequence Components
Over Current & Earth
Fault Protection
Instrument
Transformers to IEC
60044
Another Quality Training By
04 – 08 SEPTEMBER 2017, PAPUA NEW GUINEA
SGD 2,800 per
Participant for
2 Participant
or more
2. HV / LV POWER SYSTEM RELAY PROTECTION
04 – 08 SEPTEMBER 2017, PAPUA NEW GUINEA
www.poweredgeasia.com
About This Training Course
This seminar is specifically designed to provide an advanced understanding of the principles of power system
protection design. Yet, via a progressive “building block” approach, this seminar has been specifically designed to
meet the learning requirements of those who presently have only a fundamental knowledge of protection
principles, while also considering advanced topics to provide a valuable insight for those more experienced in the
discipline of power system protection design. Hence, this seminar will assist both those whose day to day work
involves them in the application of protection design, coordination and relay setting, and also those in less directly
associated areas of electricity system design
• The introductory material covers the basic principles of protection design, reliability, security and dependability
as well as the implementation of unit and non-unit protection schemes, and remote, local and dead zone back-
up schemes.
• With this grounding, delegates learn the principles of fault level calculation, including a comprehensive, but
easily comprehendible discussion of sequence components.
• The seminar proceeds to cover the application of over current and earth fault protection, including application
to transformers, parallel networks, and the need for directional facilities.
• The implementation of voltage and current transformers, to IEC60044, covers both the steady state and
transient requirements for these essential components, including the application of the (1+X/R) CT transient
requirement.
• Distance relay protection discussions cover fundamental design aspects, relay comparator characteristics and
load transfer implications. Protection signalling requirements, to meet regulatory requirements covers the
fundamental principles of distance relay permissive and blocking schemes as well as considering power line
carrier applications.
Unit protection scheme discussions cover both the application of high impedance differential schemes and
biased low impedance differential schemes. In considering the latter with the specific application to transformer
protection, the aspect of phase angle correction, zero sequence current correction, CT connection and the
application of microprocessor based relays is considered in detail. The special application of high and low
impedance schemes to busbars is discussed. The application of unit protection to feeders covers the
implementation of feeder current differential relays.
• Short circuit protection of induction motors is considered, but since most electrical failures are actually the
result of previous overheat, this latter topic is especially considered in detail.
• Finally, the specialized requirements for the protection of synchronous generators are comprehensively
considered. This discussion includes high speed protection for actual generator faults, and also coordinated
slower protection philosophies for generator and power system events.
Learning Outcomes
This seminar is specifically designed to provide a comprehensive and in-depth understanding of the principles of
power system protection design. This seminar has been carefully formulated to provide a valuable insight into
power system protection design and principles for those more experienced in the discipline of protection design
while yet meeting the learning requirements of those who presently have a more limited knowledge of power
system protection principles.
3. HV / LV POWER SYSTEM RELAY PROTECTION
04 – 08 SEPTEMBER 2017, PAPUA NEW GUINEA
www.poweredgeasia.com
Who Should Attend
This seminar will assist both those whose day to day work involves them in the application of protection
design, coordination and relay setting, and also those in other less directly associated areas of electrical power
system design. This seminar has been prepared specifically to meet the requirements of:
• Protection Design Engineers, to identify protection implications and to ensure design, coordination and
relay setting principles provide the necessary levels of speed, security, dependability and safety.
• Power System Network Operators, to ensure optimisation of network performance and operation
without compromising protection principles or risking inadvertent protection operators.
• Planning Engineers, to identify the difficulties in providing protection for various power system
configurations under review.
• Maintenance Engineers, to ensure that system protection is not compromised as plant is removed from
service during maintenance.
• Circuitry Design Engineers, to ensure that protective schemes are implemented in a manner to provide
optimum performance.
• Commissioning Engineers, to ensure the actual field installation of the protection scheme and associated
relay settings meets the design requirements.
• Field Technicians, to understand the importance of their role in installing, testing and maintaining
effective, reliable, dependable and secure protection systems.
• Project Managers, to ensure that the project implementation provides a safe and efficient
implementation of electrical design.
Seminar Outline
• Fundamental Principles of Power System Protection
• Fault Studies and Sequence Components
• Over Current & Earth Fault Protection
• Instrument Transformers to IEC 60044
• Introduction to Distance Protection
• Protection Signalling
• Advanced Applications of Distance Protection
• High Impedance Differential Protection
• Transformer Protection
• Low Impedance Busbar Differential Protection
• Feeder Digital Current Differential Protection
• Induction Motor Protection
• Generator Protection
4. HV / LV POWER SYSTEM RELAY PROTECTION
04 – 08 SEPTEMBER 2017, PAPUA NEW GUINEA
www.poweredgeasia.com
Your Expert Course Trainer: Barrie Moor
Mr. Barrie Moor
Principal Engineer at Power System Protection Training,
Australia
Experience:
• 39 years in the Queensland Electricity
• Transmission and Generation Supply Industries
• 30 years in the discipline of Protection Design
• 20 years in Post Graduate Electricity Supply System
Training
With over 39 years experience in the Queensland electricity supply industry, our principal engineer, the seminar
author and presenter, Barrie Moor, has been involved in the design, coordination and implementation of protection
schemes associated with Queensland’s HV and EHV transmission systems since 1981. Barrie also has extensive
experience with the protection of large generating plants having had responsibility for the protection of generators
at many of Queensland’s major power stations. From 2000 to 2007, Barrie filled the role of Senior Engineer
Protection Design, with statewide responsibility, leading Powerlink’s Protection Design Team. From 2007 to 2012, in
the role of Principal Consultant Substation Protection, and then Principal Engineer Investigations, Barrie provided
specialist Protection Design and Fault Analysis services to support the Asset Management and Operational Groups
within Powerlink. Barrie has 20 years experience within Australia and internationally (New Zealand, Singapore,
Malaysia, Thailand, Pakistan, UAE, Ghana) in the provision of university post graduate training on the design and
implementation of HV and EHV Transmission Protection Systems and also and Power Station Generator Protection
Systems. Barrie has presented a number of papers on various specialised aspects of protection design at conferences
both within Australia and internationally. Barrie represented Powerlink on CIGRE committee APB5, Power System
Protection and Automation, and served as a corresponding member on Cigre and IEE working groups on Protection
Systems.
With recent seminar feedback:
• “Of the 5 training courses that I have been on, this one has been the best”
• “Barrie Moor kept it interesting, excellent presentation skills”
• “Great presentation, learnt a lot!!”
• “Barrie was very knowledgeable. He made the difference”
• Attended seminar conducted in UAE. It was an amazing experience
LinkedIn Testimonials
• I have now completed a couple of seminars / courses (Fundamentals of Power System Protection and Distance
Protection training at QUT) with Barrie and once again could not ask for more. Barrie is an expert in Power
Systems Protection and spares no effort to pass on his knowledge, striving to share his extensive knowledge in
the topics at hand, Barrie impresses all. I will not hesitate to take another training course lectured by Barrie. I
look forward to the next opportunity in power systems protection run by Barrie Moor.
• Barrie is the best protection engineer I have had the pleasure to work with... They do not make protection
experts like Barrie anymore...
• Having worked with Barrie on numerous projects and whilst standardising Control Systems interface designs to
protection schemes and plant, as well as experiencing Barrie's protection systems and schemes training, I can
readily attest that Barrie is an authority in the field of protection. His knowledge across all levels of protection
(systems, design, theory) and ability to communicate (design, training) are astounding. Credit well deserved.
5. HV / LV POWER SYSTEM RELAY PROTECTION
04 – 08 SEPTEMBER 2017, PAPUA NEW GUINEA
www.poweredgeasia.com
Day 1
Fundamental Principles of Power System
Protection
Dependability and Security
Speed of Protection
Protection Zones & Overlap
The “ART” of Protection
o Unit Protection Principles
o Non-Unit Protection Principles
Redundancy and Duplication of protection
o Duplicate Main Protection
o Main and Local Back-up Protection
o Main and Remote Back-up Protection
CB Fail Protection
Blind Spot Protection
Fault Studies and Sequence Components
Introduction to Fault Analysis
Per Unit Method
Classical Fault Study
Sequence Components
Three Phase faults
Phase – Phase Faults
Single Phase Faults
Resistive Earth Faults
Transformers and Sequence Networks
Over Current & Earth Fault Protection
Discrimination by Time
Discrimination by Current
Discrimination by Time & Current
Instantaneous Elements
Electro Mechanical Relays
Relay Curves to IEC 60255
Grading Curve Principles
o Current Pick-up Setting Principles
o Time Multiplier Setting Principles
Grading of Parallel Elements
Directional Over Current Principles
Earth Fault Protection
Directional Earth Fault Protection Principles
Sensitive Earth Fault Protection Principles
5 Day Course Outline
Day 2
Instrument Transformers to IEC 60044
Voltage Transformer Specification
o Magnetic VTs
o Capacitor VTs
o VT Transient Performance
P Class Current Transformer Specification
PX Class Current Transformer Specification
Transient Performance of CTs
o Fault Currents and DC Offset
o DC Offset, CT Flux and (1 + X/R) Principles
Introduction to Distance Protection
Distance Zones, Time and Reach Coordination
Primary and Secondary Impedances
Simple Amplitude Comparators
Impedance Circles
Simple Angle Comparators
Mho Circles
Polarising for Close-In Faults
Zones of Protection – Circles and Quadrilaterals
Three Phase Load Limit Performance
Comparator Configurations for :
o 3 Phase and Phase-Phase Faults
o Earth Faults with Ko compensation
Day 3
Protection Signalling
Permissive Under Reach Transfer Tripping (PUTT)
Permissive Over Reach Transfer Tripping (POTT)
Blocking Intertripping
DEF Intertripping
PLC systems
Advanced Applications of Distance
Protection
Mutual Coupling
Teed Feeders
o DIT, PUTT, POTT and Blocking Applications
Fault Resistance
VT Supervision
Polarising for Close-in Faults and SOTF Logic
Power Swing Blocking
6. HV / LV POWER SYSTEM RELAY PROTECTION
04 – 08 SEPTEMBER 2017, PAPUA NEW GUINEA
www.poweredgeasia.com
High Impedance Differential Protection
HZ Differential Protection Principles
Setting Principles
o Setting Voltage for Through Fault Stability
o CT Requirements for In-Zone Fault Detection
Current Operated Relays with Stabilising Resistors
Limiting Secondary System Voltages Safely
Primary Operating Current
o Application of Shunt Resistors
CT Supervision Requirements
High Impedance Differential Protection for other
Galvanically Connected Plant
Day 4
Transformer Protection
Buchholz and Pressure Relief Devices
Bias Differential Basic Principles
Stability under Magnetising Inrush Conditions
Stability under Over Excitation Conditions
Stability with Transformer Phase Shifts
Stability under through Earth Fault Conditions
Determination of Delta CT Connection
Delta / Star Transformer Example
Determination of CT Ratios
Micro Processor Relay Implications
Un-Restrained Instantaneous Elements
Winding Neutral End Faults
o Restricted Earth Fault Protection
Neutral Displacement Protection
Low Impedance Busbar Differential
Protection
Central and Bay Unit Designs
Features to Accommodate Poor Quality CTs
Multiple Zone Applications
Allowance for Dynamic Switching of Plant
Voltage and Check Zone Interlocking
CB Fail and CB Fail Bus Trip Facilities
Blind Spot Fault Facilities
Multi Functionality
Feeder Differential Protection
Digital Current Differential Protection
Data Synchronisation
Conventional Biased Differential Systems
Alpha Plane Systems
2, 3 and Multi Ended Systems
Intertripping Schemes
Back-Up Distance Relay Functionality
Day 5
Induction Motor Protection
Thermal Protection including:
o Negative Sequence Current Detection
o Extended Starting / Stalling Protection
o Winding RTD measurement
o Number of Starts Limitation
Loss of Load Protection
Under Voltage Protection
Short Circuit Protection
Earth Fault Protection
Generator Protection
Generator Faults
o Differential Protection for Stator multi-phase
faults
o Stator Earth Fault Protection
o Stator Interturn Fault Protection
o Rotor Earth Fault Protection
o GCB Failure Protection
Generator Events
o Stator Over Load Protection
o Negative Phase Sequence Protection
o Reverse Power Protection
o Over Voltage Protection
o Over and Under Excitation Protection
o Under and Over Frequency Protection
o Out of Step (Pole Slipping) Protection
7. HV / LV POWER SYSTEM RELAY PROTECTION
04 – 08 SEPTEMBER 2017, PAPUA NEW GUINEA
www.poweredgeasia.com
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PER PARTICIPANT 2 PARTICIPANTS OR MORE IN-HOUSE TRAINING
5 Day
Programme
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Per Participant
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Per Participant
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Normal Price
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Bank Address: 65 Chulia Street OCBC Centre, Singapore 049513
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used at another POWEREDGE PTE LTD training course for up to one year from the date of issuance. For cancellations received seven (7) days or less prior to an event (including day 7), no credits will be issued. In the event that
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