Radio Direction Finding and Superresolution

Radio Direction Finding and Superresolution
Author: P. J. D. Gething
Publisher: IET
Total Pages: 392
Release: 1991
Genre: Science
ISBN: 9780863412387

Enlarged and revised second edition. Modern direction finders, capable of measuring elevation angles as well as azimuth angles on the components of multi-ray wavefields, have become powerful tools for research in ionospheric physics and HF radio propagation. The complexity of the problem of resolving closely-spaced rays requires the combined use of wide aperture antenna arrays, multichannel receiving systems and sophisticated digital processing techniques.

Radar Array Processing

Radar Array Processing
Author: Simon Haykin
Publisher: Springer Science & Business Media
Total Pages: 326
Release: 2013-03-08
Genre: Technology & Engineering
ISBN: 3642773478

Radar Array Processing presents modern techniques and methods for processingradar signals received by an array of antenna elements. With the recent rapid growth of the technology of hardware for digital signal processing, itis now possible to apply this to radar signals and thus to enlist the full power of sophisticated computational algorithms. Topics covered in detail here include: super-resolution methods of array signal processing as applied to radar, adaptive beam forming for radar, and radar imaging. This book will be of interest to researchers and studentsin the radar community and also in related fields such as sonar, seismology, acoustics and radio astronomy.

Massive Access for Cellular Internet of Things Theory and Technique

Massive Access for Cellular Internet of Things Theory and Technique
Author: Xiaoming Chen
Publisher: Springer
Total Pages: 137
Release: 2019-05-07
Genre: Technology & Engineering
ISBN: 9811365970

This book focuses on massive access to the cellular internet of things (IoT). Both theory and technique are addressed, with more weight placed on the latter. This is achieved by providing in-depth studies on a number of central topics such as channel state information acquisition, user clustering, superposition coding, and successive interference cancellation. Four typical application scenarios are examined in detail, namely the stationary IoT device scenario, frequency division duplex-based low-mobility IoT device scenario, time-division duplex-based IoT device scenario, and high-mobility IoT device scenario. The comprehensive and systematic treatment of key techniques in massive access to the cellular IoT is one of the major features of the book, which is particularly suited for readers who are interested in finding practical solutions for the cellular IoT. As such, it will benefit researchers, engineers, and graduate students in the fields of information engineering, telecommunications engineering, computer engineering, etc.