International Journal of Solid State Innovations & Research Review Article

Advances in Energy Systems and Solid State Electronics

  1. V. Basil Hans Department of Commerce & Management and Humanities & Social Sciences, Srinivas University, Mangalore
  2. Rashmi Ammembala Department Community Radio, Manipal Institute of Communication MAHE, Manipal

Abstract

Solid state technology has become a game changer in the field of modern electronics and energy systems providing faster, safer and more energy efficient solutions for several industries. The performance and dependability of electronic systems have been considerably improved by recent advances in solid state materials, semiconductor devices, and energy storage technologies. Progress in solid-state batteries, wide-bandgap semiconductors, and next-generation integrated circuits is transforming applications in electric vehicles, renewable energy integration, consumer electronics, and industrial automation. In the essay the latest developments in solid-state electronics and energy systems are reviewed with an emphasis on their working principles, benefits and practical applications. Special focus is paid to the contribution of solid-state devices to energy efficiency, power losses minimization and sustainable technological development. The debate also touches upon today’s issues such production complexity, material constraints and cost obstacles, and future research objectives for increased scalability and commercial acceptance. Recent advances in compact semiconductor designs, smart power management systems, and nanomaterials have greatly improved the operating longevity, thermal stability, and dependability of devices. In short, advances in the solid state are still a fundamental driver for innovation and are likely to be crucial for the evolution of future generation electrical and energy technology.

Keywords

References (10)

  1. Jiya IN, Gouws R. Overview of power electronic switches: A summary of the past, state- of-the-art and illumination of the future. Micromachines. 2020 Dec 16;11(12):1116.
  2. Chakraborty A. Advancements in power electronics and drives in interface with growing renewable energy resources. Renewable and Sustainable Energy Reviews. 2011 May 1;15(4):1816-27.
  3. Bose BK. Power electronics, smart grid, and renewable energy systems. Proceedings of the IEEE. 2017 Sep 15;105(11):2011-8.
  4. Pavan U, Karthik T, Babu DR. A Review on the Advancement of Solid-State Batteries: Potential and Challenges for Green Energy Storage. Energy. 2024;1(9):1-4.
  5. Fan L, Wei S, Li S, Li Q, Lu Y. Recent progress of the solid‐state electrolytes for high‐energy metal‐based batteries. Advanced Energy Materials. 2018 Apr;8(11):1702657.
  6. Machín A, Morant C, Márquez F. Advancements and challenges in solid-state battery technology: An in-depth review of solid electrolytes and anode innovations. Batteries. 2024 Jan 17;10(1):29.
  7. Smith SC, Sen PK, Kroposki B. Advancement of energy storage devices and applications in electrical power system. In2008 IEEE Power and Energy Society General Meeting- Conversion and Delivery of Electrical Energy in the 21st Century 2008 Jul 20 (pp. 1-8). IEEE.
  8. Dhameliya N. Power electronics innovations: Improving efficiency and sustainability in energy systems. Asia Pacific Journal of Energy and Environment. 2022 Nov;9(2):71-80.
  9. Bose BK. Energy, environment, and advances in power electronics. InISIE'2000. Proceedings of the 2000 IEEE International Symposium on Industrial Electronics (Cat. No. 00TH8543) 2000 Dec 4 (Vol. 1, pp. TU1-T14). IEEE.
  10. Trew RJ. High-frequency solid-state electronic devices. IEEE transactions on electron devices. 2005 Apr 25;52(5):638-49.