Combined spatial diversity and time equalization for broadband multiple channel underwater acoustic communications

File
Publisher
Florida Atlantic University
Date Issued
2015
EDTF Date Created
2015
Description
High data rate acoustic communications become feasible with the use of communication systems that operate at high frequency. The high frequency acoustic transmission in shallow water endures severe distortion as a result of the extensive intersymbol interference and Doppler shift, caused by the time variable multipath nature of the channel. In this research a Single Input Multiple Output (SIMO) acoustic communication system is developed to improve the reliability of the high data rate communications at short range in the shallow water acoustic channel. The proposed SIMO communication system operates at very high frequency and combines spatial diversity and decision feedback equalizer in a multilevel adaptive configuration. The first configuration performs selective combining on the equalized signals from multiple receivers and generates quality feedback parameter for the next level of combining.
Note

Includes bibliography.

Language
Type
Extent
156 p.
Identifier
FA00004411
Additional Information
Includes bibliography.
Dissertation (Ph.D.)--Florida Atlantic University, 2015.
FAU Electronic Theses and Dissertations Collection
Date Backup
2015
Date Created Backup
2015
Date Text
2015
Date Created (EDTF)
2015
Date Issued (EDTF)
2015
Extension


FAU

IID
FA00004411
Person Preferred Name

Skoro Kaskarovska, Violeta

author

Graduate College
Physical Description

application/pdf
156 p.
Title Plain
Combined spatial diversity and time equalization for broadband multiple channel underwater acoustic communications
Use and Reproduction
Copyright © is held by the author, with permission granted to Florida Atlantic University to digitize, archive and distribute this item for non-profit research and educational purposes. Any reuse of this item in excess of fair use or other copyright exemptions requires permission of the copyright holder.
http://rightsstatements.org/vocab/InC/1.0/
Origin Information

2015
2015
Florida Atlantic University

Boca Raton, Fla.

Physical Location
Florida Atlantic University Libraries
Place

Boca Raton, Fla.
Sub Location
Digital Library
Title
Combined spatial diversity and time equalization for broadband multiple channel underwater acoustic communications
Other Title Info

Combined spatial diversity and time equalization for broadband multiple channel underwater acoustic communications