Phase Noise in Multi-carrier Systems

This thesis concerns the effect of phase noise (PHN) on multi-carrier systems such as OFDM and the detection of multi-carrier symbols affected by PHN. It is known that PHN causes mixing between sub-carriers resulting in inter-carrier interference (ICI) and rotates symbols on every sub-carrier by a c...

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Bibliographic Details
Main Author: Sridharan, Gokul
Other Authors: Lim, Teng Joon
Language:en_ca
Published: 2010
Subjects:
Online Access:http://hdl.handle.net/1807/25809
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spelling ndltd-TORONTO-oai-tspace.library.utoronto.ca-1807-258092013-04-19T20:00:38ZPhase Noise in Multi-carrier SystemsSridharan, GokulPhase Noisemulti-carrier systemsofdmsc-fdma0544This thesis concerns the effect of phase noise (PHN) on multi-carrier systems such as OFDM and the detection of multi-carrier symbols affected by PHN. It is known that PHN causes mixing between sub-carriers resulting in inter-carrier interference (ICI) and rotates symbols on every sub-carrier by a certain angle called the common phase error (CPE). We explore how these two effects arise and show that these two effects are coupled to each other. We also note that higher order M-QAM constellations like 64-QAM are more sensitive to CPE than smaller constellations like 4-QAM. Based on our observations on CPE, we propose a blind CPE estimation algorithm. We then address the issue of ICI and propose a turbo receiver design to mitigate it.Lim, Teng Joon2010-112011-01-11T16:33:31ZNO_RESTRICTION2011-01-11T16:33:31Z2011-01-11T16:33:31ZThesishttp://hdl.handle.net/1807/25809en_ca
collection NDLTD
language en_ca
sources NDLTD
topic Phase Noise
multi-carrier systems
ofdm
sc-fdma
0544
spellingShingle Phase Noise
multi-carrier systems
ofdm
sc-fdma
0544
Sridharan, Gokul
Phase Noise in Multi-carrier Systems
description This thesis concerns the effect of phase noise (PHN) on multi-carrier systems such as OFDM and the detection of multi-carrier symbols affected by PHN. It is known that PHN causes mixing between sub-carriers resulting in inter-carrier interference (ICI) and rotates symbols on every sub-carrier by a certain angle called the common phase error (CPE). We explore how these two effects arise and show that these two effects are coupled to each other. We also note that higher order M-QAM constellations like 64-QAM are more sensitive to CPE than smaller constellations like 4-QAM. Based on our observations on CPE, we propose a blind CPE estimation algorithm. We then address the issue of ICI and propose a turbo receiver design to mitigate it.
author2 Lim, Teng Joon
author_facet Lim, Teng Joon
Sridharan, Gokul
author Sridharan, Gokul
author_sort Sridharan, Gokul
title Phase Noise in Multi-carrier Systems
title_short Phase Noise in Multi-carrier Systems
title_full Phase Noise in Multi-carrier Systems
title_fullStr Phase Noise in Multi-carrier Systems
title_full_unstemmed Phase Noise in Multi-carrier Systems
title_sort phase noise in multi-carrier systems
publishDate 2010
url http://hdl.handle.net/1807/25809
work_keys_str_mv AT sridharangokul phasenoiseinmulticarriersystems
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