| Code | Date | Format | Currency | Team of 10 Per Person* |
Team of 7 Per Person* |
Early Bird Fee Per Person |
Normal Fee Per Person |
|---|---|---|---|---|---|---|---|
| PWR1523 | 28 Sep - 02 Oct 2026 | Kuala Lumpur, Malaysia | SGD | 5,245 | 5,489 | 5,899 | 6,099 |
| PWR1523 | 28 Sep - 02 Oct 2026 | Kuala Lumpur, Malaysia | USD | 4,127 | 4,319 | 4,599 | 4,799 |
*Fee per person in a team of 7 or 10 participating from the same organisation, registering 6 weeks before the course dateRequest 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
PWR1523Date
28 Sep - 02 Oct 2026Format
Kuala Lumpur, MalaysiaCurrency
SGDTeam of 10
Per Person*
5,245
Team of 7
Per Person*
5,489
Early Bird Fee
Per Person
5,899
Normal Fee
Per Person
6,099
Code
PWR1523Date
28 Sep - 02 Oct 2026Format
Kuala Lumpur, MalaysiaCurrency
USDTeam of 10
Per Person*
4,127
Team of 7
Per Person*
4,319
Early Bird Fee
Per Person
4,599
Normal Fee
Per Person
4,799
*Fee per person in a team of 7 or 10 participating from the same organisation, registering 6 weeks before the course dateRequest 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 energy sector is undergoing a profound paradigm shift, characterized by the convergence of cutting-edge technologies, regulatory dynamism, and the escalating integration of renewable energy resources. This course delves into the technical intricacies of advanced methodologies for energy management. The course scrutinizes demand response and energy conservation programs, highlighting their implications on energy efficiency, grid stability, and sustainable energy practices.
Integration of Power Electronics and New Technologies: Power electronics and emerging technologies play a critical role in Demand management. Power electronics facilitate enhanced energy conversion, grid integration of renewables, and dynamic load management. The technical depth of this discussion includes power electronics’ role in grid-tied inverters for solar and wind energy systems, battery energy storage, and electric vehicle charging infrastructure.
Regulatory Frameworks and Zero Net Energy Building Codes This course dissects the technical nuances of regulatory frameworks and their impact on energy conservation strategies. Special emphasis is placed on zero net energy building codes, which mandate energy-efficient building designs, passive solar techniques, and advanced solutions. The technical details encompass building envelope modeling, system efficiency, and on-site renewable energy generation.
Public Agency Objectives: Energy Consumption and Demand Management: The technical objectives of public agencies regarding energy management are articulated. These objectives span a spectrum of technical parameters, including energy consumption reduction through lighting and HVAC optimization, load shedding techniques, and demand forecasting models for grid stability enhancement.
Demand Response for Grid Economics and System Security- Demand Response to Price is dissected technically, with a focus on its economic and security dimensions. This involves sophisticated load profiling, demand forecasting algorithms, and real-time pricing mechanisms. Grid reliability is maintained through the fine-grained control of loads, mitigating peak demand and alleviating transmission congestion.
Advanced Load Forecasting using Artificial Intelligence: Load forecasting AI refers to the use of artificial intelligence (AI) techniques to predict and forecast electrical load or energy consumption. This is a critical task in the energy and utility sector because accurate load forecasting helps grid operators, power companies, and energy providers to optimize energy production and distribution, plan for capacity expansion, and enhance overall energy efficiency. The course tackles the key points about load forecasting AI.
Conservation Programs: Technical Attributes and Metrics The technical success criteria encompass energy audits, advanced metering infrastructure, and continuous commissioning.
Integration of Renewable Resources: Technical Challenges and Solutions As renewable energy penetration intensifies, the course underscores the technical intricacies of grid integration. Demand response is presented as a technical strategy to tackle intermittency and ensure grid stability. Topics include dynamic load forecasting, smart grid control systems, and advanced grid management algorithms.
Enhancing Market Competition and Liquidity: The course delves into the technical underpinnings of demand response as a competitive market tool. Advanced market mechanisms, such as locational marginal pricing (LMP) and demand bidding strategies, are explored. Technical aspects include demand elasticity modeling, market-clearing algorithms, and congestion pricing.
Consumer-Centric and System-Level Perspectives The course provides a technical breakdown of the dual perspectives – consumer-centric and system-level. It elucidates advanced technologies like home energy management systems (HEMS), distributed energy resource management systems (DERMS), and grid optimization algorithms. These enable real-time energy decision-making and grid-balancing at both individual and system-wide scales.
Interoperability and Transactive Energy Interoperability standards in energy systems are dissected technically. The discussion encompasses communication protocols, data modeling, and standardization bodies. Transactive energy is explored in detail, focusing on technical aspects like blockchain-based smart contracts, microgrid interoperability, and grid-edge IoT devices.
Blockchain for Cybersecurity and Peer-to-Peer Transactions The technical dimension of blockchain’s role in energy cybersecurity is elucidated. This includes blockchain consensus mechanisms, cryptographic hashing, and secure energy data exchange protocols. The practical implementation of blockchain in peer-to-peer energy transactions and Renewable Energy Certificate (REC) trading is explored.
This course offers an in-depth technical exploration of the multifaceted aspects of modern energy management. It underscores the technical prowess of power electronics, regulatory intricacies, and the sophisticated engineering required for demand response, conservation, and renewable energy integration. As the energy landscape evolves, these technical insights serve as a compass, guiding the industry towards a sustainable and resilient energy future.
- Regulators and government agencies advising on public energy conservation programs
- All professionals interested in expanding their expertise, or advancing their career, or take on management and leadership roles in the rapidly evolving energy sector
- Energy professionals implementing demand side management, particularly in power systems with increased renewable penetration, to allow the much needed operational flexibility paramount to maintaining the reliability and stability of the power system and in the same time offering all classes of customers flexible and economical choices
- Any utility professional interested in understanding the new developments in the power industry
- Intermediate
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.


