A joint PHY/MAC cross-layer design for UWB under power control
Power control (PC) is a critical parameter for the design and evaluation of UWB-based WPAN networks due to its distributed control nature and non-fixed topology. The main issues in UWB PC are the channel gain fluctuations induced by indoor channel fluctuation and interference arising from narrowband...
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Format: | Article |
Language: | English |
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Elsevier
2010
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author | Saeed, Rashid Abdelhaleem Khatun, Sabira Mohd Ali, Borhanuddin Abdullah, Khazani |
author_facet | Saeed, Rashid Abdelhaleem Khatun, Sabira Mohd Ali, Borhanuddin Abdullah, Khazani |
author_sort | Saeed, Rashid Abdelhaleem |
collection | UPM |
description | Power control (PC) is a critical parameter for the design and evaluation of UWB-based WPAN networks due to its distributed control nature and non-fixed topology. The main issues in UWB PC are the channel gain fluctuations induced by indoor channel fluctuation and interference arising from narrowband systems. In this paper we introduce a joint PHY/MAC technique for DS-UWB power control design by exploiting the high time resolution of the UWB signal for channel gain improvement and mitigate the narrowband interference to reduce transmitted power. The results indicate that the proposed approach achieves better BER and throughput over previous works.
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first_indexed | 2024-03-06T07:23:24Z |
format | Article |
id | upm.eprints-11637 |
institution | Universiti Putra Malaysia |
language | English |
last_indexed | 2024-03-06T07:23:24Z |
publishDate | 2010 |
publisher | Elsevier |
record_format | dspace |
spelling | upm.eprints-116372011-04-08T09:14:51Z http://psasir.upm.edu.my/id/eprint/11637/ A joint PHY/MAC cross-layer design for UWB under power control Saeed, Rashid Abdelhaleem Khatun, Sabira Mohd Ali, Borhanuddin Abdullah, Khazani Power control (PC) is a critical parameter for the design and evaluation of UWB-based WPAN networks due to its distributed control nature and non-fixed topology. The main issues in UWB PC are the channel gain fluctuations induced by indoor channel fluctuation and interference arising from narrowband systems. In this paper we introduce a joint PHY/MAC technique for DS-UWB power control design by exploiting the high time resolution of the UWB signal for channel gain improvement and mitigate the narrowband interference to reduce transmitted power. The results indicate that the proposed approach achieves better BER and throughput over previous works. Elsevier 2010-05 Article PeerReviewed Saeed, Rashid Abdelhaleem and Khatun, Sabira and Mohd Ali, Borhanuddin and Abdullah, Khazani (2010) A joint PHY/MAC cross-layer design for UWB under power control. Computers and Electrical Engineering, 36 (3). pp. 455-468. ISSN 0045-7906 10.1016/j.compeleceng.2009.11.003 English |
spellingShingle | Saeed, Rashid Abdelhaleem Khatun, Sabira Mohd Ali, Borhanuddin Abdullah, Khazani A joint PHY/MAC cross-layer design for UWB under power control |
title | A joint PHY/MAC cross-layer design for UWB under power control |
title_full | A joint PHY/MAC cross-layer design for UWB under power control |
title_fullStr | A joint PHY/MAC cross-layer design for UWB under power control |
title_full_unstemmed | A joint PHY/MAC cross-layer design for UWB under power control |
title_short | A joint PHY/MAC cross-layer design for UWB under power control |
title_sort | joint phy mac cross layer design for uwb under power control |
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