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Insulation Coordination Using PSCAD | Power System Training

— PSCAD Master Power systems | PSCAD Online Training —

Insulation Coordination Using PSCAD

Join our PSCAD online training and learn insulation coordination through practical power system modelling and simulation. This PSCAD online course covers transient studies, overvoltage analysis, manual calculations, and real-world insulation coordination studies using PSCAD. Beginner level Course.

- Date


20th September  2026

- Time


10:00 AM to 04:00 PM IST

- Day


Sunday

- Language


English

Master PSCAD through a practical insulation coordination study course.

This PSCAD online training covers power system modelling, EMT and transient studies, overvoltage analysis and insulation coordination using PSCAD. Learn through practical simulations, engineering calculations and real-world study procedures.

01

Power System Study

Understand EMT, steady-state and transient studies, power system stability, and the fundamentals of different study approaches.

02

PSCAD Environment

Learn to create projects, workspaces and libraries, use the master library add components, and build simulation environments in PSCAD.

03

Power System Modelling

Learn practical modelling of AC sources, transmission lines, cables and transformers, including balanced, unbalanced and different approaches.

04

Insulation Coordination

Understand insulation coordination, overvoltages, standards and study procedures, with practical analysis of TOV, SFO and FFO.

Master Insulation Coordination Using PSCAD


Learn PSCAD simulation, transient analysis, overvoltage assessment, and insulation coordination study procedures in a focused one-day technical training session. Build practical skills through engineering modelling and real-world study applications.

- Hightlights -

Learn PSCAD. Model the System. Perform Insulation Coordination Studies.

Develop a practical understanding of PSCAD-based power system modelling and insulation coordination studies. Learn the concepts behind transient and overvoltage analysis, build simulation models, follow study procedures, and analyse a practical pre-modelled case study.

“Understand the concepts. Build the model.
Analyse the overvoltages.”


*

PSCAD Fundamentals

Build a strong foundation in PSCAD, including project creation, workspace management, libraries, components, and simulation setup.

*

Practical Power System Modelling

Learn to model AC sources, transmission lines, cables, transformers, and other network components for accurate PSCAD simulations.

*

Transient & Overvoltage Analysis

Understand switching and lightning overvoltages, transient behaviour, and the key analysis procedures used in insulation coordination studies.

*

Insulation Coorination Study

Apply PSCAD simulations to evaluate overvoltages and perform practical insulation coordination studies using industry-relevant methods and case studies.


- Our Outcomes -

Learn PSCAD. Apply It to Real Power System Studies.

Build practical PSCAD skills from project setup and power system modelling to transient, overvoltage, and insulation coordination analysis. By the end of the course, you’ll understand how to build models, configure simulations, interpret results, and apply PSCAD to practical engineering studies.

PSCAD Environment

Create projects, manage workspaces, use libraries and the master library, and add components to build your PSCAD simulation models.

Simulation Configuration

Configure project settings, simulation duration, solution time steps, channel outputs, and plot settings for effective PSCAD simulations.

Source Modelling

Model AC, Thevenin, single-phase, and three-phase sources with balanced, unbalanced, and impedance-based configurations.

Transmission & Cable Modelling

Model transmission lines using PI Section and Bergeron models, along with PI and coaxial cable models for power system simulations.

Insulation Coordination Study

Understand insulation coordination principles, overvoltage types, IEC/IEEE standards, and study procedures used in practical engineering analysis.

TOV, SFO & FFO Analysis

Perform TOV, SFO, and FFO analysis using PSCAD, evaluate transient overvoltages, and interpret simulation results for insulation coordination.

If we haven’t met yet…

Pradeep R is a Gold Medalist in M.E. Power Systems with 5+ years of experience in power system studies, renewable energy integration, and electrical network analysis.

He specializes in PSCAD, PSS®E, ETAP, PVsyst, and HOMER Pro, with expertise in grid integration, insulation coordination, HVDC, FACTS, and grid compliance studies. He also manages technical coordination with utilities, CTUs, OEMs, consultants, and customers for complex power system projects.

Er. Pradeep – Senior Power System Engineer – PowerProjects

- What You Get -

What You’ll Learn in This PSCAD Training


A structured one-day PSCAD online course focused on practical power system modelling, simulation, transient
overvoltage analysis, and insulation coordination studies.

01

Project & Workspace Setup


Set up PSCAD projects and workspaces, build libraries, load existing projects, and save simulations.

02

Component Library Handling


Explore the PSCAD Master Library, select required components, and add them while building models.

03

Simulation & Waveform Review


Run simulations, set time steps, adjust plots, measure values, and review results through waveforms.

04

AC Source Modelling


Model single and three-phase AC sources with balanced or unbalanced conditions and source impedance.

05

Transmission Line, Cable & Transformer Modelling


Model transmission lines and cables using PI Section and Bergeron models, plus three-phase transformers.

06

Insulation Coordination & Overvoltage Analysis


Study insulation coordination and analyze TOV, SFO, and FFO overvoltages using a premodelled system.

One Time Deal

1000 INR
  • Insulation Coordination Using PSCAD

    • Life Time Recording Access
    • Theory
    • Simulation
    • Certificate
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Frequently Asked Questions (FAQ)

PSCAD is the simulation environment covered in the course for power system studies and modelling.

The course introduces EMT, steady-state and transient studies, along with system stability.

The course covers modelling of Thevenin voltage sources, AC sources, transmission lines, cables and three-phase transformers.

The course introduces insulation coordination, its purpose, applicable standards, overvoltage types and the procedures used for analysis.

The course covers TOV, SFO and FFO procedures for analysis and observations.

Yes. The PDF specifies a premodelled system case study for insulation coordination analysis.

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