- Curse Code: #PSP4
- Course Name: Power System Protection & Automation
- Level: beginner, intermediate
- Delivery: Online (Google Meet)
- Day: 22- 26 December 2025 (5 days)
- Time Zone: Indian Standard Time (IST)
- Instructor: Dr. Saeed Roostaee
| Time (IST) / Day | Day 1 | Day 2 | Day 3 | Day 4 | Day 5 |
| 09:30 – 10:15 | Section 1 | Section 3 | Section 5 | Section 7 | Section 9 |
| 10:30 – 11:15 | Section 1 | Section 3 | Section 5 | Section 7 | Section 9 |
| 11:30 – 12:15 | Section 1 | Section 3 | Section 5 | Section 7 | Section 9 |
| 12:30 -13:00 | Q&A | Q&A | Q&A | Q&A | Q&A |
| 13:00 – 14:00 | Lunch Break | Lunch Break | Lunch Break | Lunch Break | Lunch Break |
| 14:00 – 14:45 | Section 2 | Section 4 | Section 6 | Section 8 | Section 10 |
| 15:00-15:45 | Section 2 | Section 4 | Section 6 | Section 8 | Section 10 |
| 16:00 – 16:45 | Section 2 | Section 4 | Section 6 | Section 8 | Section 10 |
| 17:00 – 17:30 | Q&A | Q&A | Q&A | Q&A | Q&A |
Section 1: HV
1. Introduction
- Instruction and assessment
- Why this training
- How to learn
- Learn with new methods
- References
2. Power Generation and Transmission
- Basic overview of Generation and transmission
- Power System components
- World electricity generation
- Single Line Diagram (SLD)
- Power Generation Technologies
- Hydro-Electric Power
- Hydro Power Plant in India
- Fossil fuel power
- Coal Power Station in India
- Nuclear power generation
- How does a Thermal power plant work?
- Wind energy
- Wind farm in India
- Solar power
- Solar Park in India
- Power Grid Infrastructure
- List of power stations in India
- Electrical grid
- India National Grid Map (N, NE, S, W, E)
- European-wide synchronous grid
- National Grid

3. Substation and Its Components
- HV substation in India
- Type Of Substations
- Elements of Substation
- Power Line
- Ground wire
- Wave trap
- Potential transformer
- Disconnect switch
- Earth switch
- Circuit breaker
- Current transformer
- Lightning arrester
- Main transformer
- Substation Layout
- 400/63/20 kV substation layout
- General Single Line Diagram (SLD)
- Protection Single Line Diagram (PSLD)

4. Type of Busbar Configurations
- Single Bus-Bar Arrangement
- Single Bus-Bar Arrangement with Bus Sectionalized
- Main and Transfer Bus Arrangement
- Double Bus Double Breaker Arrangement
- Double Bus Single Breaker Arrangement
- One and a Half Breaker Arrangement

5. GIS substation
- GIS history
- GIS Vs. AIS
- GIS installation
- Maintenance
- GIS elements

6. Instrument transformers
- Why are instrument transformers needed
- Voltage/Potential Transformers (VT/PT)
- Current Transformers (CTs)
- Basic working principle
- Bushing CT
- Free-standing CT
- Pass-through CT
- Window-type CT
- Bar-type CT
- Wound type CT
- High voltage CT
- Tank type CT
- Top-core CT
- CT Ratio
- CT Polarity
- Excitation
- CT circuits
- VT circuits
- Metering Core
- Protection Core
- CT classes
- CT shorting block

Q&A
- Summary of the section
- Q&A
- Assessment
Section 2: LV
1. Control & Protection Panel
- Introduction to Control Protection & Metering System
- Type of Panels & their usage
- Panel Construction & Components
- Control Panel
- Synch check
- Panel Accessories and Components
- Terminal Blocks
- Metering Components
- Wiring Components
- Control Switches
- Protection Relays
- Automation Components
- Protection Panel
- TCS Relay
- Trip Relay
- Lockout Relay
- Annunciator
- Electromechanical Relays
- Static Relay
- Numeric Relays
- BI/BO, AI/AO, CT/PT, NO/NC, Communication Ports

2. Schematic Diagram
- Introduction to Electrical Drawing
- Typical Electrical Drawing Symbols
- One-Line Diagrams (Single-Line Diagrams)
- Overview of CRP Schematics
- Connected line or wires
- Wattmeter
- Varmeter
- Opened contact
- Closed contact
- Current transformer
- Current transformer with marked polarity
- Ammeter
- Voltmeter
- Thermal relay
- Three-winding three-phase transformer
- Overlap Line or wire
- NO contact
- NC contact
- Coil
- Emergency switch
- Contactor
- Changeover
- Selector Switch
- Push button
- Power factor meter
- Frequency meter
- Therma OL relay
- Timer
- Terminal
- Auxiliary contactor
- Panel and Equipment Layout

3. Protection Classification, Types & ANSI Codes
- Common Acronyms
- ANSI Standard Device Numbers
- 21 Distance Relay
- 21G Ground Distance
- 21P Phase Distance
- 24 Volts-per-Hertz Relay / Overfluxing
- 25 Synchronizing or Synchronism-Check Device
- 27 Undervoltage Relay
- 27P Phase Undervoltage
- 32R Reverse Power
- 46 Reverse-Phase or Phase Balance Current Relay or Stator Current Unbalance
- 49 Machine or Transformer Thermal Relay
- Thermal Overload 50 Instantaneous Overcurrent Relay
- 50BF Breaker Failure 50N Neutral Instantaneous
- Overcurrent 51 Time Overcurrent Relay
- 51N Neutral Time Overcurrent
- 51V Voltage-Resistant Time Overcurrent
- 59 Overvoltage Relay
- 67 Directional Overcurrent Relay
- 67N Neutral Directional Overcurrent
- 79 Ac Reclosing Relay / Auto Reclose
- 81O Over Frequency
- 81U Under Frequency
- 86 Locking-Out Relay
- 87 Differential Protective Relay
- 87B Bus Differential
- 87G Generator Differential
- 87GT Generator/Transformer Differential
- 87L Line Current Differential
- 87RGF Restricted Ground Fault
4. PSLD (Protection Single Line Diagrams)
- Transformer protection single line diagram
- Line protection single line diagram
- Busbar protection single line diagram
- Feeder protection single line diagram
Q&A
- Summary of the section
- Q&A
- Assessment
Section 3: Faults and Fault calculation
Faults
- Normal Operation of Power System
- Abnormal Condition of Power System
- What is the fault
- Abnormalities
- Types of faults
- Faults in Windings
- Symmetrical fault
- Unsymmetrical faults
- Fault statistics
- Transmission Line Faults
- Earth Fault on H.V. External Connections
- Phase-to-Phase Fault on H.V. External Connections, Internal Earth Fault on H.V. Windings
- Internal Phase-to-Phase Fault on H.V. Windings Short Circuit Between Turns H.V. Windings
- Earth Fault on L.V. External Connections
- Phase-to-Phase Fault on L.V. External Connections, Internal Earth Fault on L.V. Windings
- Internal Phase-to-Phase Fault on L.V. Windings Short Circuit Between Turns L.V. Windings
- Faults in Generators
- Generator Stator Earth Fault
- Generator internal faults
- Faults due to the load
- Overload
- Unbalance Load
- Loss of field

Fault Simulation and Calculation
- Fault calculations
- Symmetrical Components
- ETAP
- DIgSILENT PowerFactory
- PSCAD
- Single-phase fault simulation
- Three-phase fault simulation
- Earth fault simulation
Criteria for fault detection
- Overcurrent I>
- Earth-current IE>
- Current unbalance (negative sequence current I2>)
- Undervoltage U<
- Overvoltage U>
- Over- and Under-frequency
- Leakage (Differential) current
- Underimpedance Z<
Q&A
- Summary of the section
- Q&A
- Assessment
Section 4: Protection
Protection Introduction
- Importance of the Protection System
- What do we want to protect?
- Function of protection systems
- Requirements for system protection
- Elements of a Protection System
- Primary Protection
- Backup Protection
- Zones of Protection
- Primary and Backup Protection
- Protection Relay History
- Electromechanical Relay
- Static Relays
- Numerical Relays
Numerical Relays
- Advantages of Numerical Relays
- Structure of Numerical Relays
- How do Numerical Relays work?
- Analog to Digital Conversion
- Digital Phasor Measurement
- Example Feeder protection
- Numerical Relay Manufacturers

SIPROTEC Relay Families
- Protection Technology from Siemens
- Siprotec Relay Families
- Hardware structure of the SIEMENS numerical multi-functional device
- SIPROTEC 4 relay block diagram
- SIPROTEC 5
- Properties of SIPROTEC 5
- SIPROTEC 5 expansion modules
- Sampling rate
- Draw out of the terminal blocks
- IEC61850 Certification
SIPROTEC 5 Relay Selection Guide
- Available Device Types in the SIPROTEC 5 System
- SIPROTEC 5 Devices and Fields of Application
- Medium-Voltage Application for all Network Types
- Protection and Control of Several Feeders with One Device
- Transformer Protection
- Generator Protection
- Line Protection
- Busbar Protection
Q&A
- Summary of the section
- Q&A
- Assessment
Section 5: SIPROTEC 5 Online Mode
Online Mode
- Relay Offline Vs. Online Mode
- Device Information
- Config Information
- Process Mode
- Commissioning Mode
- Simulation Mode
- Function Points
- Edit device time
- Copy the online device to the project
- Assign an online device to the project
- Change the assigned device
- Create a backup from a device
- Load the Configuration to the device
- Retrieve Device Data
SIPROTEC 5 Web UI
- Device Information
- Relay Hardware and order code
- Set the relay date and time in the web UI
- Monitor Relay Displays
- Monitor binary inputs
- Monitor Binary outputs
- Monitor LEDs
- Access to all LOGs and download LOGs
- Runtime Data
- Monitor the recorded fault in the web UI
- Manual Recording trigger
- Download relay fault records
- Measurements
- Check the relay setting values
- Change settings
- Apply settings
Relay measurements
- Operational measured values
- Fundamental Components
- Symmetrical Components
- Function-specific measured values
- Energy metered values
- Statistical values
- Primary values
- Secondary values
- Snapshot
- Inject the three-phase values into the relay and monitor the relay measurements
Logs and Indications
- Reading Indications from the PC
- Operational Log
- Fault Log
- Ground-Fault Log
- User-defined Logs
- Config Logs in the matrix
- Download Logs
- Time stamp
- Relative time
- Entry Number
- Function Structure
- Signal name
- Signal Value
- Signal Quality
Fault Recorder
- Fault Recorder Function
- Fault recording with Pickup
- Fault recording with Pickup & AR cycle
- Storage settings
- Pre-fault time parameter
- Post-fault time parameter
- Sampling Frequency
- Fault recorder config
- Download fault records
- Comtrade format
- COMTRADE Viewer
- Time signals
- Harmonic signals
- Binary signals
- RMS and Instantaneous values
Q&A
- Summary of the section
- Q&A
- Assessment
Sections 6: OC Protection Functions
Overcurrent 50/51
- SIPROTEC 5 Over current config
- Overcurrent DT element (ANSI 50)
- Overcurrent IT element (ANSI 51)
- Threshold parameter
- Operate the delay parameter
- Overcurrent curves
- Method of measurement
- Time dial parameter
- OC logic in SIPROTEC 5
- Block OC
Overcurrent Earth 50N/51N
- Introduction to the Earth fault protection function
- IE calculation
- IE measurements
- Config earth fault protection
- Logic Diagram
- Threshold
- Operate delay
Directional Overcurrent 67
- Why Directional overcurrent protection
- How to configure Directional overcurrent protection ANSI 67 in SIPROTEC 5
- Voltage Connection
- Forward direction
- Reverse direction
- Blk. by meas.-volt. failure
Directional Overcurrent Earth 67N
- How does 67N work?
- How to configure 67N?
- IN measured
- 3I0 calculated
- Forward direction
- Reverse direction
Q&A
- Summary of the section
- Q&A
- Assessment
Sections 7: 7UT8 Transformer Protection
- Why Transformer Protection
- Transformer Protection Scheme
- Overload protection function
- Protection for the External phase fault short-circuit
- Earth Fault protection
- Differential Protection element (87T)
- Buchholz relay (ANSI 63)
- Overfluxing protection ANSI 24
SIPROTEC 7UT8 Hardware and connection
- SIPROTEC 7UT82, 7UT85, 7UT86, 7UT87
- Highlights
- SIPROTEC 5 Connection of 3-Phase Transformer Without Grounded Neutral Point
- SIPROTEC 5 Connection 3-Phase Transformer with Grounded Neutral Point
- Connection Three-winding Transformer (3-Phase)
- Standard Variant 7UT82
- 7UT85 Standard Variant
- Standard Variants for 7UT86
- Standard Variants for 7UT87

Application templates
- What are Application Templates
- Two-winding transformer basic (87T)
- Two-winding transformer (87T, 50BF, 87N)
- Two-winding transformer 1.5CB (87T, 50BF, 87N)
- Two-winding transformer (87T, 50BF, 90V)
- Motor (87M, 50BF, 59, 27, 81, 46, 49)
Q&A
- Summary of the section
- Q&A
- Assessment
Sections 8: 7SA8 Line Protection
Transmission Line
- Transmission System
- Overhead
- Modeling
- Line parameters
- Transposition
- SIL
- Short line
- Medium line
- Long line
Line Protection
- Line protection functions
- Why Use Distance Protection?
- How Distance protection works
- Distance Protection
- Distance measurement (principle)
- phase- phase -loop
- phase- ground -loop
- Load and short-circuit impedances
- Distance characteristics
- Stepped Distance protection

SIPROTEC 7SA8 Configuration
- SIPROTEC 7SA8 Application templates
- Distance Protection in SIPROTEC 7SA8
- Pickup method
- Distance zones
- Quadrilateral characteristic
- Mho Characteristic
- Ground-fault detection
- Direction
Q&A
- Summary of the section
- Q&A
- Assessment
Sections 9:
Communication
- Communication Introduction
- History of communication
- Morse code
- Communication Process
- Communication Medium
- Selection of Medium
- Simplex
- Half Duplex
- Full Duplex
- Serial and Parallel Communication
- Parallel interface example
- Serial interface example
- RS 232
- RS 232 Pins
- RS 232 Example
- RS-232 limitation
- RS-485
- RS-232 Vs. RS-485
- USB 2
- USB 3
- RJ 45
- ASCII
- Point to point
- Bus Topology
- Ring Topology
- Start Topology
OSI Model
- Why OSI Model
- Bit
- Frame
- Packet
- Segment
- Data
- Physical Layer
- Data Link Layer
- Network Layer
- Application Layer
Protocols and standards
- Communication protocol
- Industry Market requirement
- Industrial Communication Protocols
- Power Automation Protocols
- Modubs
- DNP3
- IEC 60870
- IEC 61850
Q&A
- Summary of the section
- Q&A
- Assessment

Sections 10:
Substation Automation System
- Substation Automation System Overview
- Substation Automation Structure
- Conventional Control & Protection
- Modern Substation Automation (SA)
- Implementation of Intelligent Technology
- Intelligent SA Architecture
- Monitoring via IEDs for Protection
- Basic Components of Substation Automation System
- RTU Overview
- RTU protocol
- Digital Substation

SIEMENS SAS overview
- SIEMENS SAS architecture
- Bay Level Engineering
- SICAM PAS Introduction
- SICAM PAS Value Viewer
- SICAM SCC Introduction
- Automation Software Portfolio
- Control and Protection Panel Overview
Q&A
- Summary of the section
- Q&A
- Assessment
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