IEEE Fellow

Prof. King-Jet Tseng, Singapore Institute of Technology, Singapore

Bio: King-Jet Tseng was born in Singapore and received B.Eng. (First Class) and M.Eng. from National University of Singapore, and Ph.D. from Cambridge University in England. He is a Fellow of IEEE, Fellow of IET, a Fellow of IES and registered as Chartered Engineer with UK Engineering Council. He has more than 35 years of academic, research, industrial and professional experience in electrical power and energy systems. Currently, he is the Professor and Advisor for Electrical Power Engineering at Singapore Institute of Technology, working on his vision of future urban electrical distribution architecture which can provide flexible and heterogeneous power quality for greater sustainability. He continues to contribute to the International Electrotechnical Commission as a standardization expert for grid-integrated electrical energy storage systems.

 

Speech Title: Designing Electrical Energy Storage Systems for Sustainable Energy Grids

Abstract: Designing electrical energy storage systems for grid-integrated applications involves addressing the challenges of integrating renewable energy sources into the power grid. These systems play a crucial role in enhancing grid stability, reliability, and efficiency by providing services such as frequency regulation, voltage support, and power quality improvement. The design process includes selecting appropriate storage technologies, such as lithium-ion batteries, pumped hydro storage, or flywheels, based on factors like energy density, efficiency, and cost. Additionally, it involves developing control strategies to manage the charge and discharge cycles, ensuring optimal performance and longevity of the storage system. Integration with renewable energy sources, such as solar and wind, requires advanced forecasting and energy management techniques to balance supply and demand effectively. Furthermore, compliance with international standards and regulations, such as IEC 62933 and UL 9540A, is essential to ensure safety and reliability. Overall, the successful design of grid-integrated energy storage systems is key to achieving a sustainable and resilient energy future


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