Power Generation Training Courses > Mastering Voltage and Reactive Power Control in Power Systems Using SVCs and STATCOMs – Enhancing Grid Resilience in the Renewable Energy Era
Code Date Format Currency Team of 10
Per Person*
Team of 7
Per Person*
Early Bird Fee
Per Person
Normal Fee
Per Person
PWR1611 29 - 31 Mar 2027 Kuala Lumpur, Malaysia SGD 3,783 3,959 4,199 4,399
PWR1611 29 - 31 Mar 2027 Kuala Lumpur, Malaysia USD 3,009 3,149 3,299 3,499
PWR1611 29 - 31 Mar 2027 Jakarta, Indonesia USD 2,923 3,059 3,199 3,399
PWR1611 29 - 31 Mar 2027 Middle East USD 3,095 3,239 3,399 3,599
PWR1612 23 - 25 Aug 2027 Kuala Lumpur, Malaysia SGD 3,783 3,959 4,199 4,399
PWR1612 23 - 25 Aug 2027 Kuala Lumpur, Malaysia USD 3,009 3,149 3,299 3,499
PWR1612 23 - 25 Aug 2027 Jakarta, Indonesia USD 2,923 3,059 3,199 3,399
PWR1612 23 - 25 Aug 2027 Middle East USD 3,095 3,239 3,399 3,599

*Fee per person in a team of 7 or 10 participating from the same organisation, registering 6 weeks before the course date
Request for a quote if you have different team sizes, content customisation, alternative dates or course timing requirements
Request for in-person classroom training or online (VILT) training format

Learn in teams and save more! Enjoy group discounts of up to 50% off normal fees for team based learning. Contact us on [email protected] to learn more today!

Code

PWR1611

Date

29 - 31 Mar 2027

Format

Kuala Lumpur, Malaysia

Currency

SGD

Team of 10
Per Person*

3,783

Team of 7
Per Person*

3,959

Early Bird Fee
Per Person

4,199

Normal Fee
Per Person

4,399

Code

PWR1611

Date

29 - 31 Mar 2027

Format

Kuala Lumpur, Malaysia

Currency

USD

Team of 10
Per Person*

3,009

Team of 7
Per Person*

3,149

Early Bird Fee
Per Person

3,299

Normal Fee
Per Person

3,499

Code

PWR1611

Date

29 - 31 Mar 2027

Format

Jakarta, Indonesia

Currency

USD

Team of 10
Per Person*

2,923

Team of 7
Per Person*

3,059

Early Bird Fee
Per Person

3,199

Normal Fee
Per Person

3,399

Code

PWR1611

Date

29 - 31 Mar 2027

Format

Middle East

Currency

USD

Team of 10
Per Person*

3,095

Team of 7
Per Person*

3,239

Early Bird Fee
Per Person

3,399

Normal Fee
Per Person

3,599

Code

PWR1612

Date

23 - 25 Aug 2027

Format

Kuala Lumpur, Malaysia

Currency

SGD

Team of 10
Per Person*

3,783

Team of 7
Per Person*

3,959

Early Bird Fee
Per Person

4,199

Normal Fee
Per Person

4,399

Code

PWR1612

Date

23 - 25 Aug 2027

Format

Kuala Lumpur, Malaysia

Currency

USD

Team of 10
Per Person*

3,009

Team of 7
Per Person*

3,149

Early Bird Fee
Per Person

3,299

Normal Fee
Per Person

3,499

Code

PWR1612

Date

23 - 25 Aug 2027

Format

Jakarta, Indonesia

Currency

USD

Team of 10
Per Person*

2,923

Team of 7
Per Person*

3,059

Early Bird Fee
Per Person

3,199

Normal Fee
Per Person

3,399

Code

PWR1612

Date

23 - 25 Aug 2027

Format

Middle East

Currency

USD

Team of 10
Per Person*

3,095

Team of 7
Per Person*

3,239

Early Bird Fee
Per Person

3,399

Normal Fee
Per Person

3,599

*Fee per person in a team of 7 or 10 participating from the same organisation, registering 6 weeks before the course date
Request for a quote if you have different team sizes, content customisation, alternative dates or course timing requirements
Request for in-person classroom training or online (VILT) training format

About this Training Course

The global power sector is undergoing a profound transformation driven by the rapid deployment of renewable energy infrastructure. These changes are increasing the complexity of power system operation, making voltage regulation and reactive power control more critical than ever. As conventional synchronous generation is replaced by inverter-based resources, power systems require faster and more intelligent voltage support to maintain stability, improve power quality, maximise renewable energy integration, and ensure compliance with increasingly stringent grid codes.

Static Var Compensators (SVCs) and Static Synchronous Compensators (STATCOMs) have become essential Flexible AC Transmission System (FACTS) technologies for modern power networks. They provide fast, dynamic reactive power compensation that enhances voltage stability, increases transmission capacity, strengthens system resilience during disturbances, and improves network efficiency by reducing losses. Today, these technologies play a pivotal role across transmission and distribution networks, Renewable Energy Zones (REZs), utility-scale solar and wind farms, Battery Energy Storage Systems (BESS), industrial facilities, data centres, and advanced Volt-VAr Optimisation (VVO) applications, supporting the transition towards a cleaner, more flexible, and decentralised energy future.

This 3-day comprehensive training provides a practical and in depth understanding of SVC and STATCOM technologies, enabling participants to confidently evaluate, specify, design, integrate, operate, and maintain these systems. Through practical case studies, industry best practices, and real-world applications, participants will learn how to implement SVC and STATCOM solutions to optimise grid performance, improve voltage control and power quality, minimise operational risk, maximise asset value, and enhance the reliability, resilience, and efficiency of modern electricity networks.

By the end of the course, participants will be able to:

  • Learn the principles and functions of SVC and STATCOM and compare the advantages and limitations of each in different applications
  • Gain practical system design knowledge to specify key parameters for various network scenarios and understand cost-benefit trade-offs in project planning
  • Enhance grid integration & compliance for reactive power support and explore best practices for harmonic filtering and system stability
  • Develop operation & maintenance skills to enhance performance monitoring, fault diagnostics, and maintenance strategies to understand lifecycle management and asset optimization
  • Review successful SVC and STATCOM implementations for maximising reliability
  • Utility Engineers and Managers (TSOs and DSOs) that are responsible for voltage and reactive power control
  • Power System Engineers in network planning and grid stability analysis
  • Renewable Energy Developers & Operators managing wind, solar, and battery storage projects
  • Industrial Power Engineers handling large-scale industrial loads and electrified rail networks
  • Professionals supporting grid connection studies and power system modelling
  • Asset & Operations Managers overseeing reactive power compensation systems

Prerequisites:
No prior experience with SVC and STATCOM is required, but basic knowledge of power systems and voltage management is beneficial.

  • Intermediate
  • Advanced

This course will provide comprehensive learning resources, including course materials for future reference. Each topic will commence with a clearly defined intended learning outcome (LO). The learning experience will be enriched through diverse activities such as quizzes, videos, and assessments, ensuring engagement and understanding. In addition to the core material, participants will have access to additional resources like articles, case studies, and tools. The course structure incorporates interactive elements, such as group discussions, case studies, and practical exercises, enhancing hands-on learning experiences. Q&A sessions will provide opportunities for clarifications and deeper understanding.

Your expert course leader is a highly experienced Power Systems Engineer with over 28 years of experience in the electricity supply industry and energy expertise across Australia and international markets. He has held senior technical and leadership roles with Powerlink Queensland as a subject matter expert for Voltage Control, Reactive Power, STATCOM/SVC and Power Quality. At Arcadis as Associate Technical Director; VicGrid as VTIF Project Director for Planning and Modelling and energySEA/Global Power Energy as Manager mainly on Power Systems and Executive Power Systems Advisor. In these roles, he has led teams of highly skilled power systems engineers delivering generator connections, data centre load connections, transmission planning, and strategic power system advisory services.

He is a recognised specialist in power quality, power system harmonics, and renewable energy integration. His expertise spans harmonic assessment and mitigation, harmonic filter design, power system modelling, Renewable Energy Zones (REZ), system strength, voltage stability, reactive power control, FACTS technologies (SVC/STATCOM), HV/EHV substations, SCADA and digital substations, and the integration of wind farms, solar farms, Battery Energy Storage Systems (BESS), and large industrial loads. He has successfully led multidisciplinary engineering teams delivering high-voltage infrastructure projects with a combined capital value exceeding USD 300 million, consistently achieving technical excellence while meeting project budget and schedule objectives.

As a trainer and technical educator, he delivers advanced courses on power quality, harmonic analysis and mitigation, voltage and reactive power control, Volt-VAr optimisation, Conservation Voltage Reduction (CVR), power factor correction, FACTS technologies (SVC/STATCOM), and renewable energy grid integration. He is proficient in a wide range of industry-standard engineering software, including ETAP, DIgSILENT PowerFactory, PSS®E, PSCAD, MATLAB, LabVIEW, Mathcad, SQL, VBA, and C++. He holds a Doctor of Philosophy (PhD) in Power Systems Harmonics and Network Modelling from the University of Wollongong, a Master of Systems Engineering from the Queensland University of Technology, and a Bachelor of Electrical Engineering (Honours) from the University of Queensland. He is a Fellow of Engineers Australia (FIEAust) and a Chartered Professional Engineer (CPEng), Registered Professional Engineer of Queensland (RPEQ), National Professional Engineer Register (NPER), and International Professional Engineer (IntPE Aus). He is an active contributor to international standards and industry development through his participation in IEC, Standards Australia, and CIGRE working groups.

Unlock the potential of your workforce with customized in-house training programs designed specifically for the energy sector. Our tailored, in-house courses not only enhance employee skills and engagement but also offer significant cost savings by eliminating travel expenses. Invest in your team’s success and achieve specific outcomes aligned with your organization’s goals through our expert training solutions. Request for further information regarding our on-site or in-house training opportunities.

In our ongoing commitment to sustainability and environmental responsibility, we will no longer providing hard copy training materials. Instead, all training content and resources will be delivered in digital format. Inspired by the oil and energy industry’s best practices, we are leveraging on digital technologies to reduce waste, lower our carbon emissions, ensuring our training content is always up-to-date and accessible. Click here to learn more.

To further optimise your learning experience from our courses, we also offer individualised coaching support. We can help improve your competence in your chosen area of interest, based on your learning needs and available hours. This is a great opportunity to improve your capability and confidence in a particular area of expertise. It can be delivered virtually through video conference or face to face by one of our senior subject matter experts. They will work with you to create a tailor-made coaching program that will help you achieve your goals faster. Learn more about our post training coaching services here.
1. What will I learn in the Mastering Voltage and Reactive Power Control course?

You will learn how SVC and STATCOM technologies support voltage regulation and reactive power control in modern power systems. The course also explains their role in improving voltage stability, power quality, and grid resilience. In addition, you will explore system design, integration, operation, and maintenance. You will also learn how to select suitable solutions for different network conditions.

2. What is the difference between an SVC and a STATCOM?

An SVC and a STATCOM both provide dynamic reactive power compensation, but they use different power electronic technologies and have different operating characteristics. The course compares their voltage-current characteristics, configurations, losses, and harmonic performance. It also covers SVC thyristor technology and STATCOM IGBT power modules. Therefore, participants can better assess which technology suits a specific power system application.

3. Who should attend this SVC and STATCOM training course?

This course suits professionals who work with voltage control, grid stability, or reactive power compensation. It is especially relevant to utility engineers, power system engineers, renewable energy professionals, and industrial power engineers. In addition, grid connection specialists, modelling professionals, and asset managers can benefit from the training. The course also supports professionals working with wind, solar, battery storage, and large industrial loads.

4. How does the course address renewable energy integration?

Renewable energy growth creates new challenges for voltage regulation and reactive power management, so modern networks need faster and more flexible voltage support. This course explains how SVC and STATCOM systems can support solar, wind, and battery energy storage projects. It also covers Volt-VAr Optimisation, power quality, and voltage stability. Furthermore, participants examine solutions for flicker, voltage sag, unbalance, and power factor issues.

5. Does the course include practical SVC and STATCOM exercises?

Yes. The course combines technical theory with exercises, workshops, and case studies. As a result, participants can apply key concepts to realistic power system scenarios. Activities cover power factor assessment, reactive power calculations, and SVC sizing. Participants also work on dynamic voltage control, component rating verification, and voltage swing range validation.

6. Does the training cover SVC and STATCOM operation and maintenance?

Yes. The programme covers control, protection, monitoring, operation, and maintenance. For example, participants study voltage regulation, voltage droop, power oscillation damping, and protection schemes. The course also examines commissioning, factory acceptance tests, and site acceptance tests. Furthermore, it covers fault investigation, spare parts, refurbishment planning, and asset management.

7. Do I need previous SVC or STATCOM experience to attend?

No. You do not need previous experience with SVC or STATCOM systems, although basic knowledge of power systems and voltage management will help. The course is set at an intermediate to advanced level and runs face-to-face over three days. Moreover, participants learn through course materials, discussions, exercises, case studies, quizzes, assessments, and Q&A sessions.

    Submit Your Details To Download Course Details




    Please send me more details









    By submitting this form, you hereby agree to the EnergyEdge website terms & conditions
    ** Due to personal privacy considerations, we only accept your business email


    Alternatively contact us on [email protected] or for more details about this course