Hybrid renewable energy systems for remote telecommunication stations / Adel A. Elbaset, Salah Ata.
2021
TK1041 .E43 2021
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Can lend chapters, not whole ebooks
Details
Title
Hybrid renewable energy systems for remote telecommunication stations / Adel A. Elbaset, Salah Ata.
Author
Elbaset, Adel A., author.
ISBN
9783030663445 (electronic book)
3030663442 (electronic book)
9783030663452 (print)
3030663450
9783030663469 (print)
3030663469
3030663434
9783030663438
3030663442 (electronic book)
9783030663452 (print)
3030663450
9783030663469 (print)
3030663469
3030663434
9783030663438
Published
Cham, Switzerland : Springer, [2021]
Language
English
Description
1 online resource (xv, 196 pages)
Item Number
10.1007/978-3-030-66344-5 doi
Call Number
TK1041 .E43 2021
Dewey Decimal Classification
333.793
Summary
This book looks at the challenge of providing reliable and cost-effective power solutions to expanding communications networks in remote and rural areas where grid electricity is limited or not available. It examines the use of renewable energy systems to provide off-grid remote electrification from a variety of resources, including regenerative fuel cells, ultracapacitors, wind energy, and photovoltaic power systems, and proposes a powerful hybrid system that can replace the need and high operation costs of batteries and diesel powered electric generators. Analyzes types of communications stations and their rate of consumption of electrical power; Presents brief descriptions of various types of renewable energy; Investigates renewable energy systems as a source for powering communication stations.
Bibliography, etc. Note
Includes bibliographical references and index.
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Access limited to authorized users.
Digital File Characteristics
text file
PDF
Source of Description
Online resource; title from digital title page (viewed on April 01, 2021).
Added Author
Ata, Salah, author.
Available in Other Form
Hybrid renewable energy systems for remote telecommunication stations.
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Online Access
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Table of Contents
Introduction
Types of Communications Stations
Regenerative Fuel Cells as Energy Storage and Backup Power Supply
Optimum Sizing of Ultracapacitors
Design and Sizing of Photovoltaic Power Systems
Design and Sizing Wind Energy Systems
Optimum Sizing and Design of Renewable Energy Systems
Conclusions and Recommendations for Future Work.
Types of Communications Stations
Regenerative Fuel Cells as Energy Storage and Backup Power Supply
Optimum Sizing of Ultracapacitors
Design and Sizing of Photovoltaic Power Systems
Design and Sizing Wind Energy Systems
Optimum Sizing and Design of Renewable Energy Systems
Conclusions and Recommendations for Future Work.