DocumentCode :
3541793
Title :
Performance Comparison of Ultra Wide Band IEEE Channel and Underground Mine Channel
Author :
Khan, Ab Rouf ; Gulhane, S.M. ; Kaushik, P.G.
Author_Institution :
Dept. of Electron. & Telecommun., Jawaharlal Darda Inst. of Eng. & Technol., Yavatmal, India
fYear :
2012
fDate :
21-23 Sept. 2012
Firstpage :
1
Lastpage :
6
Abstract :
In recent years, the performance analysis of UWB (Ultra-Wide Band) systems has been an area of considerable interest. To understand the fading in UWB caused by the multipath propagation in complicated environment of underground mines, a precise model of the channel response is expected for designing a UWB system. This paper presents the comparison between the UWB channel proposed by study group IEEE 802.15.SG3a and revised channel model for underground mines based on IEEE proposed channel. Parameters such as the impulse response, power decay profile, excess delay, rms (Root Mean Square) delay, channel energy, number of paths required to meet the 85% energy capture threshold, and number of significant path with in 10 dB of peak (NP10dB) are analyzed and simulated. We compared the performance of the Time hopping (TH) UWB system in both channel and evaluate the bit error rate performance of a RAKE receiver employing maximal ratio combining (MRC). The simulation result show that the multipath delay characteristics of the modified mine channel model approaches well to the measured results.
Keywords :
diversity reception; error statistics; indoor radio; mining; radio receivers; ultra wideband communication; underground communication; IEEE 802.15.SG3a; MRC; RAKE receiver; bit error rate performance; channel energy; channel response; energy capture threshold; excess delay; impulse response; maximal ratio combining; modified mine channel model; multipath delay characteristics; multipath propagation; power decay profile; revised channel model; rms delay; root mean square delay; time hopping UWB system; ultrawideband IEEE channel; underground mine channel; Bit error rate; Channel models; Delay; Fading; IEEE 802.15 Standards; Multipath channels;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Wireless Communications, Networking and Mobile Computing (WiCOM), 2012 8th International Conference on
Conference_Location :
Shanghai
ISSN :
2161-9646
Print_ISBN :
978-1-61284-684-2
Type :
conf
DOI :
10.1109/WiCOM.2012.6478610
Filename :
6478610
Link To Document :
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