Amazon cover image
Image from Amazon.com

Design of Ultra-Low Power Impulse Radios [electronic resource] / by Alyssa Apsel, Xiao Wang, Rajeev Dokania.

By: Contributor(s): Series: Analog Circuits and Signal Processing ; 124Publisher: New York, NY : Springer New York : Imprint: Springer, 2014Description: VIII, 155 p. 142 illus., 93 illus. in color. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781461418450
Subject(s): Genre/Form: Additional physical formats: Printed edition:: No titleDDC classification:
  • 621.3815 23
LOC classification:
  • TK7888.4
Online resources:
Contents:
Introduction -- Approaches to Low Power Radio Design -- Low Power Impulse Radio Transceivers -- Traditional Synchronization in Radio Systems -- Pulse Coupled Oscillator Networks -- Pulse Coupled Oscillator Based Radio System -- UWB Networking Analysis -- Networking and Some Novel Applications.
In: Springer eBooksSummary: This book covers the fundamental principles behind the design of ultra-low power radios and how they can form networks to facilitate a variety of applications within healthcare and environmental monitoring, since they may operate for years off a small battery or even harvest energy from the environment. These radios are distinct from conventional radios in that they must operate with very constrained resources and low overhead.  This book provides a thorough discussion of the challenges associated with designing radios with such constrained resources, as well as fundamental design concepts and practical approaches to implementing working designs.  Coverage includes integrated circuit design, timing and control considerations, fundamental theory behind low power and time domain operation, and network/communication protocol considerations.   • Enables detailed understanding of the design space for ultra-low power radio; • Provides detailed discussion and examples of the design of a practical low power radio network; • Compares a variety of low power transmission and radio styles, including traditional continuous wave radio, wake up radios, and impulse radios; • Includes detailed design techniques and examples of integrated circuits for low power impulse radio transceivers, with discussion of timing control and synchronization.  .
Item type: eBooks
Star ratings
    Average rating: 0.0 (0 votes)
No physical items for this record

Introduction -- Approaches to Low Power Radio Design -- Low Power Impulse Radio Transceivers -- Traditional Synchronization in Radio Systems -- Pulse Coupled Oscillator Networks -- Pulse Coupled Oscillator Based Radio System -- UWB Networking Analysis -- Networking and Some Novel Applications.

This book covers the fundamental principles behind the design of ultra-low power radios and how they can form networks to facilitate a variety of applications within healthcare and environmental monitoring, since they may operate for years off a small battery or even harvest energy from the environment. These radios are distinct from conventional radios in that they must operate with very constrained resources and low overhead.  This book provides a thorough discussion of the challenges associated with designing radios with such constrained resources, as well as fundamental design concepts and practical approaches to implementing working designs.  Coverage includes integrated circuit design, timing and control considerations, fundamental theory behind low power and time domain operation, and network/communication protocol considerations.   • Enables detailed understanding of the design space for ultra-low power radio; • Provides detailed discussion and examples of the design of a practical low power radio network; • Compares a variety of low power transmission and radio styles, including traditional continuous wave radio, wake up radios, and impulse radios; • Includes detailed design techniques and examples of integrated circuits for low power impulse radio transceivers, with discussion of timing control and synchronization.  .

Copyright © 2020 Alfaisal University Library. All Rights Reserved.
Tel: +966 11 2158948 Fax: +966 11 2157910 Email:
librarian@alfaisal.edu