DocumentCode :
3613164
Title :
Adaptive mitigation of narrowband interference in impulse radio UWB systems using time-hopping sequence design
Author :
Khedr, Mohamed E. ; El-Helw, Amr ; Afifi, Mohamed Hossam
Author_Institution :
Dept. of Electron. & Commun., Arab Acad. for Sci., Technol. & Maritime Transp., Alexandria, Egypt
Volume :
17
Issue :
6
fYear :
2015
Firstpage :
622
Lastpage :
633
Abstract :
The coexistence among different systems is a major problem in communications. Mutual interference between different systems should be analyzed and mitigated before their deployment. The paper focuses on two aspects that have an impact on the system performance. First, the coexistence analysis, i.e. evaluating the mutual interference. Second aspect is the coexistence techniques, i.e. appropriate system modifications that guarantee the simultaneous use of the spectrum by different technologies. In particular, the coexistence problem is analyzed between ultra-wide bandwidth (UWB) and narrow bandwidth (NB) systems emphasizing the role of spectrum sensing to identify and classify the NB interferers that mostly affect the performance of UWB system. A direct sequence (DS)-time hopping (TH) code design technique is used to mitigate the identified NB interference. Due to the severe effect of Narrowband Interference on UWB communications, we propose an UWB transceiver that utilizes spectrum-sensing techniques together with mitigation techniques. The proposed transceiver improves both the UWB and NB systems performance by adaptively reducing the mutual interference. Detection and avoidance method is used where spectrum is sensed every time duration to detect the NB interferer´s frequency location and power avoiding it´s effect by using the appropriate mitigation technique. Two scenarios are presented to identify, classify, and mitigate NB interferers.
Keywords :
codes; interference suppression; radio spectrum management; radio transceivers; signal detection; ultra wideband communication; UWB communications; UWB transceiver; adaptive mitigation; direct sequence-time hopping code design technique; impulse radio UWB systems; mutual interference; narrow bandwidth; narrowband interference; spectrum-sensing techniques; system modifications; time-hopping sequence design; ultra-wide bandwidth; Interference; Narrowband; Niobium; Receivers; Sensors; Transceivers; Code sequence design; coexistence; cognitive radio (CR); impulse radio (IR); interference mitigation; matched filter (MF); narrowband (NB) interference; spectrum sensing; spectrum shaping; spread-spectrum (SS);
fLanguage :
English
Journal_Title :
Communications and Networks, Journal of
Publisher :
ieee
ISSN :
1229-2370
Type :
jour
DOI :
10.1109/JCN.2015.000109
Filename :
7387270
Link To Document :
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