𝔖 Scriptorium
✦   LIBER   ✦

πŸ“

Energy Storage Devices for Electronic Systems: Rechargeable Batteries and Supercapacitors

✍ Scribed by Nihal Kularatna


Publisher
Academic Press
Year
2014
Tongue
English
Leaves
269
Edition
1
Category
Library

⬇  Acquire This Volume

No coin nor oath required. For personal study only.

✦ Synopsis


Energy storage devices are a crucial area of research and development across many engineering disciplines and industries. While batteries provide the significant advantage of high energy density, their limited life cycles, disposal challenges and charge and discharge management constraints undercut their effectiveness in certain applications. Compared to electrochemical cells, supercapacitors are charge-storage devices with much longer life cycles, yet they have traditionally been hobbled by limited DC voltage capabilities and energy density. However, recent advances are improving these issues.

This book provides the opportunity to expand your knowledge of innovative supercapacitor applications, comparing them to other commonly used energy storage devices. It will strengthen your understanding of energy storage from a practical, applications-based point-of-view, without requiring detailed examination of underlying electrochemical equations. No matter what your field, you will find inspiration and guidance in the cutting-edge advances in energy storage devices in this book.

  • Provides explanations of the latest energy storage devices in a practical applications-based context
  • Includes examples of circuit designs that optimize the use of supercapacitors, and pathways to improve existing designs by effectively managing energy storage devices crucial to both low and high power applications.
  • Covers batteries, BMS (battery management systems) and cutting-edge advances in supercapacitors, providing a unique compare and contrast examination demonstrating applications where each technology can offer unique benefits

✦ Table of Contents


Content:
Front Matter, Pages i-ii
Copyright, Page iv
Dedication, Page v
Preface, Page xi
Acknowledgments, Pages xiii-xiv
1 - Energy storage devicesβ€”a general overview, Pages 1-28
2 - Rechargeable battery technologies: an electronic engineer’s view point, Pages 29-61
3 - Dynamics, models, and management of rechargeable batteries, Pages 63-135
4 - Capacitors as energy storage devicesβ€”simple basics to current commercial families, Pages 137-148
5 - Electrical double-layer capacitors: fundamentals, characteristics, and equivalent circuits, Pages 149-186
6 - Supercapacitor as a lossless dropper in DC-DC converters, Pages 187-225
7 - Supercapacitors for surge absorption, Pages 227-244
8 - Supercapacitors in a rapid heat transfer application, Pages 245-255
Appendix A - capacitors and AC line filtering, Pages 257-261
Index, Pages 263-267


πŸ“œ SIMILAR VOLUMES


Energy Storage Devices for Renewable Ene
✍ Nihal Kularatna, Kosala Gunawardane πŸ“‚ Library πŸ› Academic Press 🌐 English

<p><span>Energy Storage Devices for Renewable Energy-Based Systems: Rechargeable Batteries and Supercapacitors, Second Edition</span><span> is a fully revised edition of this comprehensive overview of the concepts, principles and practical knowledge on energy storage devices. The book gives readers

New carbon based materials for electroch
✍ Igor V. Barsukov, Christopher S. Johnson, Joseph E. Doninger, Vyacheslav Z. Bars πŸ“‚ Library πŸ“… 2006 πŸ› Springer 🌐 English

<P>For the first time Argonne National Laboratory opened it doors in the USA to host researchers from both European and former Warsaw Pact countries to address the latest research on the development, synthesis, characterization and use of advanced carbonaceous materials for electrochemical energy st

Energy Storage and Conversion Devices: S
✍ Anurag Gaur (editor), A. L. Sharma (editor), Anil Arya (editor) πŸ“‚ Library πŸ“… 2021 πŸ› CRC Press 🌐 English

<p>This book presents a state-of-the-art overview of the research and development in designing electrode and electrolyte materials for Li-ion batteries and supercapacitors. Further, green energy production via the water splitting approach by the hydroelectric cell is also explored. </p><p>Features i

Energy Storage – Batteries, Supercapacit
✍ Virginie Viallet, Benoit Fleutot πŸ“‚ Library πŸ“… 2018 πŸ› Wiley-ISTE 🌐 English

<p>Since the 90s, the Li-ion batteries are the most commonly used energy storage systems. The demand for performance and safety is constantly growing, current commercial batteries based liquid electrolytes or gels may not be able to meet the needs of emerging applications such as for electric and hy

Nanostructured Materials for Next-Genera
✍ Qiang Zhen, Sajid Bashir, Jingbo Louise Liu πŸ“‚ Library πŸ“… 2019 πŸ› Springer 🌐 English

<p><p>Volume 3 of a 4-volume series is a concise, authoritative and an eminently readable and enjoyable experience related to lithium ion battery design, characterization and usage for portable and stationary power. Although the major focus is on lithium metal oxides or transition metal oxide as all

Advances in Supercapacitor and Supercapa
✍ Mohammad Khalid, Numan Arshid, Nirmala Grace πŸ“‚ Library πŸ“… 2020 πŸ› Elsevier 🌐 English

<p><i>Advances in Supercapacitor and Supercapattery:Β Innovations in Energy Storage Devices</i>Β provides a deep insight into energy storage systems and their applications. The first two chapters cover the detailed background, fundamental charge storage mechanism and the various types of supercapacito