Bandwidth Efficiency and Power Efficiency Issues for Wireless Transmissions

As wireless communication becomes an ever-more important and pervasive part of our everyday life, system capacity and quality of service issues are becoming more critical. In order to increase the system capacity and improve the quality of service, it is necessary that we pay closer attention to ban...

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Main Author: Chen, Ning
Format: Others
Language:en_US
Published: Georgia Institute of Technology 2006
Subjects:
Online Access:http://hdl.handle.net/1853/10484
id ndltd-GATECH-oai-smartech.gatech.edu-1853-10484
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spelling ndltd-GATECH-oai-smartech.gatech.edu-1853-104842013-01-07T20:14:00ZBandwidth Efficiency and Power Efficiency Issues for Wireless TransmissionsChen, NingCrest factorDoubly selectiveChannel estimationBlind selected pilot tone modulationPeak factorPower amplifier linearizationPredistortionBasis expansionPower analysisPower allocationEqualizationTest bedsPSAMPTAMPilot symbolAs wireless communication becomes an ever-more important and pervasive part of our everyday life, system capacity and quality of service issues are becoming more critical. In order to increase the system capacity and improve the quality of service, it is necessary that we pay closer attention to bandwidth and power efficiency issues. Orthogonal Frequency Division Multiplexing (OFDM) is a multicarrier modulation technique for high speed data transmission and is generally regarded as bandwidth efficient. However, OFDM signals suffer from high peak-to-average power ratios (PARs) which lead to power inefficiency in the RF portion of the transmitter. Moreover, in OFDM, the well-known pilot tone assisted modulation (PTAM) technique utilizes a number of dedicated training pilots to acquire the channel state information (CSI), resulting in somewhat reduced bandwidth efficiency. In this dissertation, we will address the above mentioned bandwidth and power efficiency issues in wireless transmissions. To avoid bandwidth efficiency loss due to dedicated training, we will first develop a superimposed training framework that can be used to track the frequency selective as well as the Doppler shift characteristics of a channel. Later on, we will propose a generalized superimposed training framework that allows improved channel estimates. To improve the power efficiency, we adopt the selected mapping (SLM) framework to reduce the PARs for both OFDM and forward link Code Division Multiple Access (CDMA). We first propose a dynamic SLM algorithm to greatly reduce the computational requirement of SLM without sacrificing its PAR reducing capability. We propose a number of blind SLM techniques for OFDM and for forward link CDMA; they require no side information and are easy to implement. Our proposed blind SLM technique for OFDM is a novel joint channel estimation and PAR reduction algorithm, for which bandwidth efficiency power efficiency - complexity - bit error rate tradeoffs are carefully considered.Georgia Institute of Technology2006-06-09T18:09:45Z2006-06-09T18:09:45Z2006-03-31Dissertation1061037 bytesapplication/pdfhttp://hdl.handle.net/1853/10484en_US
collection NDLTD
language en_US
format Others
sources NDLTD
topic Crest factor
Doubly selective
Channel estimation
Blind selected pilot tone modulation
Peak factor
Power amplifier linearization
Predistortion
Basis expansion
Power analysis
Power allocation
Equalization
Test beds
PSAM
PTAM
Pilot symbol
spellingShingle Crest factor
Doubly selective
Channel estimation
Blind selected pilot tone modulation
Peak factor
Power amplifier linearization
Predistortion
Basis expansion
Power analysis
Power allocation
Equalization
Test beds
PSAM
PTAM
Pilot symbol
Chen, Ning
Bandwidth Efficiency and Power Efficiency Issues for Wireless Transmissions
description As wireless communication becomes an ever-more important and pervasive part of our everyday life, system capacity and quality of service issues are becoming more critical. In order to increase the system capacity and improve the quality of service, it is necessary that we pay closer attention to bandwidth and power efficiency issues. Orthogonal Frequency Division Multiplexing (OFDM) is a multicarrier modulation technique for high speed data transmission and is generally regarded as bandwidth efficient. However, OFDM signals suffer from high peak-to-average power ratios (PARs) which lead to power inefficiency in the RF portion of the transmitter. Moreover, in OFDM, the well-known pilot tone assisted modulation (PTAM) technique utilizes a number of dedicated training pilots to acquire the channel state information (CSI), resulting in somewhat reduced bandwidth efficiency. In this dissertation, we will address the above mentioned bandwidth and power efficiency issues in wireless transmissions. To avoid bandwidth efficiency loss due to dedicated training, we will first develop a superimposed training framework that can be used to track the frequency selective as well as the Doppler shift characteristics of a channel. Later on, we will propose a generalized superimposed training framework that allows improved channel estimates. To improve the power efficiency, we adopt the selected mapping (SLM) framework to reduce the PARs for both OFDM and forward link Code Division Multiple Access (CDMA). We first propose a dynamic SLM algorithm to greatly reduce the computational requirement of SLM without sacrificing its PAR reducing capability. We propose a number of blind SLM techniques for OFDM and for forward link CDMA; they require no side information and are easy to implement. Our proposed blind SLM technique for OFDM is a novel joint channel estimation and PAR reduction algorithm, for which bandwidth efficiency power efficiency - complexity - bit error rate tradeoffs are carefully considered.
author Chen, Ning
author_facet Chen, Ning
author_sort Chen, Ning
title Bandwidth Efficiency and Power Efficiency Issues for Wireless Transmissions
title_short Bandwidth Efficiency and Power Efficiency Issues for Wireless Transmissions
title_full Bandwidth Efficiency and Power Efficiency Issues for Wireless Transmissions
title_fullStr Bandwidth Efficiency and Power Efficiency Issues for Wireless Transmissions
title_full_unstemmed Bandwidth Efficiency and Power Efficiency Issues for Wireless Transmissions
title_sort bandwidth efficiency and power efficiency issues for wireless transmissions
publisher Georgia Institute of Technology
publishDate 2006
url http://hdl.handle.net/1853/10484
work_keys_str_mv AT chenning bandwidthefficiencyandpowerefficiencyissuesforwirelesstransmissions
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