DocumentCode
1008347
Title
Unified Analysis of UWB Transmitted-Reference Schemes in the Presence of Narrowband Interference
Author
Quek, Tony Q S ; Win, Moe Z. ; Dardari, Davide
Author_Institution
Massachusetts Inst. of Technol., Cambridge
Volume
6
Issue
6
fYear
2007
fDate
6/1/2007 12:00:00 AM
Firstpage
2126
Lastpage
2139
Abstract
Transmitted-Reference (TR) signaling, in conjunction with an autocorrelation receiver (AcR), offers a low- complexity alternative to Rake reception in ultrawide bandwidth systems. This paper provides a unified performance analysis of various TR schemes by developing an analytical framework based on the sampling expansion approach. Specifically, we derive the uncoded bit error probability (BEP) of different TR signaling schemes, including TR and differential TR (DTR) signaling valid for a broad class of fading channels. We consider both AcRs and modified AcRs with noise averaging. We further develop a quasi-analytical method as well as an approximate analytical method to extend the BEP analysis to include the effect of narrowband interference (NBI). We show that the approximate analytical method is particularly useful in obtaining BEP expressions that provide insight into the effect of NBI. We quantify the effects of NBI and channel power dispersion profile on the optimum integration interval of an AcR. Finally, we compare TR and DTR signaling in terms of their sensitivity to NBI.
Keywords
error statistics; fading channels; interference (signal); spread spectrum communication; ultra wideband communication; Rake reception; UWB transmitted-reference schemes; autocorrelation receiver; bit error probability; channel power dispersion profile; fading channels; narrowband interference; sampling expansion approach; ultrawide bandwidth systems; Autocorrelation; Bandwidth; Dispersion; Error probability; Fading; Interference; Narrowband; Performance analysis; RAKE receivers; Sampling methods;
fLanguage
English
Journal_Title
Wireless Communications, IEEE Transactions on
Publisher
ieee
ISSN
1536-1276
Type
jour
DOI
10.1109/TWC.2007.05748
Filename
4251156
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