Novel data detection and channel estimation methods for coded and uncoded CPM signals

Bandwidth limitations and cost considerations are important criteria in mobile communication system developments and these have motivated considerable investigations into continuous phase modulation (CPM) techniques. In recent years, the higher frequency bands have been widely used due to the bandwi...

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Main Author: Wang, Wenwen
Other Authors: Saman S. Abeysekera
Format: Theses and Dissertations
Language:English
Published: 2014
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Online Access:https://hdl.handle.net/10356/61670
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-616702023-07-04T16:27:29Z Novel data detection and channel estimation methods for coded and uncoded CPM signals Wang, Wenwen Saman S. Abeysekera School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering::Wireless communication systems Bandwidth limitations and cost considerations are important criteria in mobile communication system developments and these have motivated considerable investigations into continuous phase modulation (CPM) techniques. In recent years, the higher frequency bands have been widely used due to the bandwidth limitations. Thus, fading rates are increasing as the fading rate is proportional to the carrier frequency. Therefore, in modern communication systems, reliable data detection under channels with considerable fading rates poses challenging research problems. In wireless communications, the transmitted signal is usually affected not only by additive white gaussian noise (AWGN) but also by channel fading. Coding is a typical way to combat fading. The combination of coding with CPM achieves performance gains and bandwidth efficiency at the same time. In order to obtain reliable communication, channel estimation is necessary. Therefore, in this thesis joint data detection and channel estimation schemes are investigated for coded and uncoded CPM signals. At first data detection for CPM signals transmitted over an AWGN channels is presented. A robust phase estimation based symbol detection algorithm, which does not require the recovery of the modulation index and the alphabet size, is proposed for M-ary full response CPM signals. Secondly, a novel joint data detection and channel estimation algorithm is proposed for CPM signals transmitted over a time-varying flat fading channel. The proposed algorithms mentioned above provide hard outputs only, and therefore, is not suitable for an iterative receiver which needs soft input soft output (SISO) modules. Thus, thirdly, the hard output module is extended to a novel adaptive SISO module for serially concatenated CPM (SCCPM) signals transmitted over a frequency flat fading channel. Finally, joint data detection and channel estimation for an orthogonal space-time block coded CPM system is investigated. Two objectives are considered: preserving the bandwidth efficiency at the transmitter and the accuracy of data detection at the receiver. It is worth noting that channel estimation problem of orthogonal space-time block coded CPM has not been previously taken into consideration in the literature. Throughout the thesis, extensive simulation results are provided to validate the effectiveness of the proposed algorithms. DOCTOR OF PHILOSOPHY (EEE) 2014-07-29T07:01:48Z 2014-07-29T07:01:48Z 2014 2014 Thesis Wang, W. (2014). Novel data detection and channel estimation methods for coded and uncoded CPM signals. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/61670 10.32657/10356/61670 en 150 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Electrical and electronic engineering::Wireless communication systems
spellingShingle DRNTU::Engineering::Electrical and electronic engineering::Wireless communication systems
Wang, Wenwen
Novel data detection and channel estimation methods for coded and uncoded CPM signals
description Bandwidth limitations and cost considerations are important criteria in mobile communication system developments and these have motivated considerable investigations into continuous phase modulation (CPM) techniques. In recent years, the higher frequency bands have been widely used due to the bandwidth limitations. Thus, fading rates are increasing as the fading rate is proportional to the carrier frequency. Therefore, in modern communication systems, reliable data detection under channels with considerable fading rates poses challenging research problems. In wireless communications, the transmitted signal is usually affected not only by additive white gaussian noise (AWGN) but also by channel fading. Coding is a typical way to combat fading. The combination of coding with CPM achieves performance gains and bandwidth efficiency at the same time. In order to obtain reliable communication, channel estimation is necessary. Therefore, in this thesis joint data detection and channel estimation schemes are investigated for coded and uncoded CPM signals. At first data detection for CPM signals transmitted over an AWGN channels is presented. A robust phase estimation based symbol detection algorithm, which does not require the recovery of the modulation index and the alphabet size, is proposed for M-ary full response CPM signals. Secondly, a novel joint data detection and channel estimation algorithm is proposed for CPM signals transmitted over a time-varying flat fading channel. The proposed algorithms mentioned above provide hard outputs only, and therefore, is not suitable for an iterative receiver which needs soft input soft output (SISO) modules. Thus, thirdly, the hard output module is extended to a novel adaptive SISO module for serially concatenated CPM (SCCPM) signals transmitted over a frequency flat fading channel. Finally, joint data detection and channel estimation for an orthogonal space-time block coded CPM system is investigated. Two objectives are considered: preserving the bandwidth efficiency at the transmitter and the accuracy of data detection at the receiver. It is worth noting that channel estimation problem of orthogonal space-time block coded CPM has not been previously taken into consideration in the literature. Throughout the thesis, extensive simulation results are provided to validate the effectiveness of the proposed algorithms.
author2 Saman S. Abeysekera
author_facet Saman S. Abeysekera
Wang, Wenwen
format Theses and Dissertations
author Wang, Wenwen
author_sort Wang, Wenwen
title Novel data detection and channel estimation methods for coded and uncoded CPM signals
title_short Novel data detection and channel estimation methods for coded and uncoded CPM signals
title_full Novel data detection and channel estimation methods for coded and uncoded CPM signals
title_fullStr Novel data detection and channel estimation methods for coded and uncoded CPM signals
title_full_unstemmed Novel data detection and channel estimation methods for coded and uncoded CPM signals
title_sort novel data detection and channel estimation methods for coded and uncoded cpm signals
publishDate 2014
url https://hdl.handle.net/10356/61670
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