Power Bootcamp Course

Course Details

  • Software & Interface
    Software installation & interface overview
    Project setup & database management

  • Modeling & Diagram Design
    Single line diagram (SLD) development
    Electrical library customization

  • Load Flow & System Analysis
    Load flow analysis & system evaluation
    Voltage drop & bus voltage analysis

  • Equipment Sizing & Monitoring
    Cable & transformer sizing techniques
    System condition monitoring

  • Fault & Safety Studies
    Short circuit & arc flash analysis
    Fault simulation on electrical networks

  • Motor Analysis
    Motor starting analysis (static, dynamic, VFD)
    Motor configuration & load setup

  • Protection & Control
    Protection system configuration (breakers, CTs)
    Study case creation & simulation control

  • Reporting
    Report generation & documentation

  • Advanced System Studies
    Harmonic & transient stability analysis
    Ground grid system design

  • Cable & Network Design
    Cable routing & underground system design
    Cable capacity planning

  • Protection Engineering
    Protection fundamentals & fault analysis
    Protective device coordination

  • Relay Coordination
    Advanced protection systems design
    Relay coordination & TCC curve analysis

  • System Protection
    Voltage, frequency & reverse power protection
    Parameter setting & system adjustments

  • Power System Applications
    DC load flow & battery sizing
    Distributed generation (DG) systems

  • Renewable Energy Systems
    Renewable energy integration (solar & wind)
    Unbalanced load flow analysis

  • Optimization Techniques
    Optimal power flow & capacitor placement
    Switching sequence management

  • Advanced Modeling
    UDM modeling & logic design
    Generator exciter system design

  • Control Systems
    Geospatial modeling & map integration
    AC/DC control system design

  • Real-Time Systems
    Real-time simulation & load allocation
    Voltage control & VAR optimization

  • System Stability & Reliability
    Voltage stability & system balancing
    Fault management & service restoration

  • Smart Grid & Automation
    Time domain & dynamic system analysis
    Smart grid applications

  • Enterprise Systems
    Power management system (PMS)
    Microgrid & distributed system control

  • Industrial Applications
    Intelligent automation systems
    Railway traction system modeling

  • Integration & Communication
    SCADA integration & data communication
    Data exchange & field data collection

  • Advanced Protection Concepts
    State estimation techniques
    Synchro-check & auto-recloser systems

  • Final Implementation
    ETAP enterprise & real-time server
    Final project implementation
  • Load Flow Analysis
    Power Factor Correction & Transformer Paralleling
    Active Power Control & Tower Modelling

  • Short Circuit Analysis
    Fundamentals & Grid Fault Calculations
    RMS Simulation & Per Unit System

  • Motor Acceleration Study (MAS)
    Basics & Motor Data Handling
    Static & Dynamic Simulations
    Multiple Motor Analysis

  • Protection & Relay Coordination
    Relay Coordination Fundamentals
    Overcurrent & Earth Fault Protection
    Feeder & Transformer Protection Settings

  • Harmonic & Power Quality Analysis
    Harmonics & Flicker Analysis
    K-Factor Transformer
    Harmonic Filter Design & Calculations

  • Arc Flash Analysis
    AC/DC Arc Flash Fundamentals
    Simulation in Power Factory

  • Stability & RMS Studies
    Transient Stability & RMS Modelling
    Electro-Mechanical Transient Analysis

  • EMT Studies
    Transmission Line Modelling
    Line & Transformer Energization
    Lightning Transients

  • Final Implementation
    Power BootCamp enterprise & real-time server
    Final project implementation
  • Introduction to PSCAD
    Introduction to PSCAD
    Industry use cases (HVDC, FACTS, renewables, lightning studies)

  • PSCAD Software Fundamentals
    Installation and workspace setup
    Project creation and file structure

  • Electrical System Modeling Basics
    AC/DC systems representation in PSCAD
    Sources (voltage/current source modeling)

  • Power System Components Modeling
    Transmission line modeling (distributed & lumped)
    Transformer modeling (single & three-phase)
    Circuit breakers and switching devices

  • Harmonic & Power Quality Analysis
    Harmonics & Flicker Analysis
    K-Factor Transformer
    Harmonic Filter Design & Calculations

  • Fault Analysis Using PSCAD
    Single line-to-ground faults
    Line-to-line faults
    Three-phase faults

  • Stability & RMS Studies
    Transient Stability & RMS Modelling
    Electro-Mechanical Transient Analysis

  • Switching & Transient Studies
    Capacitor switching transients
    Reactor switching
    Energization of transformers

  • Final Project (Capstone)
    Complete grid model building
    Fault + switching + renewable integration
    Report generation
    Presentation of results (industry-style)
  • Introduction to Power System & PSSE
    Overview of Power System Analysis
    Introduction to PSS®️E
    Software interface & toolbars
    Project setup and case management
    Base case data structure (buses, lines, transformers, loads)

  • Power Flow Analysis
    Load flow fundamentals (Gauss-Seidel, Newton-Raphson, Fast Decoupled)
    Slack, PV, and PQ bus concepts
    Voltage profile analysis
    Losses and system balancing
    Contingency-based load flow studies
    Practical case studies (industrial & utility networks)

  • Short Circuit Analysis
    Fault types (3-phase, L-G, L-L, L-L-G)
    Symmetrical components
    Fault level calculation
    Bus fault analysis
    Equipment duty evaluation

  • Stability Analysis
    Transient stability concepts
    Rotor angle stability
    Generator modeling basics
    Fault clearing and system response
    Swing curve interpretation

  • Dynamic Simulation
    Dynamic models in PSSE
    Excitation and governor systems
    System response to disturbances
    Voltage & frequency stability

  • Network Modeling
    Transmission line modeling
    Transformer modeling (tap changers, impedance)
    Generator and load modeling (ZIP loads)
    Renewable integration basics (solar/wind models)

  • Protection & Contingency Analysis
    N-1 contingency analysis
    Overload and voltage violation detection
    System security assessment
    Remedial actions (load shedding, switching)

  • Advanced Studies & Case Scenarios
    Grid interconnection studies
    Renewable energy integration
    Industrial plant power system analysis
    Real-world utility case studies

  • Reporting & Results Interpretation
    Study case reporting
    Graphs and result interpretation
    Exporting data and documentation
Power BootCamp Course​

Course Duration & Fees

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