Free shipping on orders over $99
Orthogonal Frequency Division Multiple Access Fundamentals and Applications

Orthogonal Frequency Division Multiple Access Fundamentals and Applications

by Tao JiangLingyang Song and Yan Zhang
Paperback
Publication Date: 02/10/2019

Share This Book:

 
$120.00
Supported by the expert-level advice of pioneering researchers, Orthogonal Frequency Division Multiple Access Fundamentals and Applications provides a comprehensive and accessible introduction to the foundations and applications of one of the most promising access technologies for current and future wireless networks. It includes authoritative coverage of the history, fundamental principles, key techniques, and critical design issues of OFDM systems.



Covering various techniques of effective resource management for OFDM/OFDMA-based wireless communication systems, this cutting-edge reference:










Addresses open problems and supplies possible solutions



Provides a concise overview of key techniques for adaptive modulation



Investigates radio channel modeling in OFDMA-based wireless communication systems



Details detection strategies of frequency-domain equalization for broadband communications



Introduces a novel combination of OFDM and the orbital angular momentum of the electromagnetic field to improve performance



Contains extensive treatment of adaptive MIMO beamforming suitable for multiuser access






This valuable resource supplies readers with a macro-level understanding of OFDMA and its key issues, while providing a systematic manual for those whose work is directly related to practical OFDMA and other multiuser communication systems projects.
ISBN:
9780367384227
9780367384227
Category:
Computer architecture & logic design
Format:
Paperback
Publication Date:
02-10-2019
Publisher:
Taylor & Francis Ltd
Country of origin:
United Kingdom
Pages:
660
Dimensions (mm):
254x178mm
Weight:
0.45kg

Click 'Notify Me' to get an email alert when this item becomes available

Reviews

Be the first to review Orthogonal Frequency Division Multiple Access Fundamentals and Applications.