Ranging using multicarrier signals
This thesis aims to verify and develop a new pulse shape which is based on multi-carriers OFDM modulation techniques while implementing Modified Phased Only Correlator (MPOC) which is novel frequency domain synchronization algorithm. The new designed pulse shape is to conquer noise amplification pro...
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sg-ntu-dr.10356-188252023-07-04T15:28:22Z Ranging using multicarrier signals Li, YiHui. Guan Yong Liang School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering::Wireless communication systems This thesis aims to verify and develop a new pulse shape which is based on multi-carriers OFDM modulation techniques while implementing Modified Phased Only Correlator (MPOC) which is novel frequency domain synchronization algorithm. The new designed pulse shape is to conquer noise amplification problem which exists in Modified Phase Only Correlator (MPOC) algorithm. Furthermore, it is has illustrated that compared to cyclic prefix for guard time interval, the result shows better performance for zero padding method on the same SNR condition during our implementation. As a result, it can correctly resolve closely spaced channel paths separated by smaller SNR for zero padding method. Master of Science (Communications Engineering) 2009-07-20T03:35:12Z 2009-07-20T03:35:12Z 2008 2008 Thesis http://hdl.handle.net/10356/18825 en 49 p. application/pdf |
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DRNTU::Engineering::Electrical and electronic engineering::Wireless communication systems Li, YiHui. Ranging using multicarrier signals |
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This thesis aims to verify and develop a new pulse shape which is based on multi-carriers OFDM modulation techniques while implementing Modified Phased Only Correlator (MPOC) which is novel frequency domain synchronization algorithm. The new designed pulse shape is to conquer noise amplification problem which exists in Modified Phase Only Correlator (MPOC) algorithm.
Furthermore, it is has illustrated that compared to cyclic prefix for guard time interval, the result shows better performance for zero padding method on the same SNR condition during our implementation. As a result, it can correctly resolve closely spaced channel paths separated by smaller SNR for zero padding method. |
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Guan Yong Liang |
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Guan Yong Liang Li, YiHui. |
format |
Theses and Dissertations |
author |
Li, YiHui. |
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Li, YiHui. |
title |
Ranging using multicarrier signals |
title_short |
Ranging using multicarrier signals |
title_full |
Ranging using multicarrier signals |
title_fullStr |
Ranging using multicarrier signals |
title_full_unstemmed |
Ranging using multicarrier signals |
title_sort |
ranging using multicarrier signals |
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2009 |
url |
http://hdl.handle.net/10356/18825 |
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1772829126321766400 |