DocumentCode :
1916591
Title :
An iterative multipath interference canceller with linear equalization for ultra high data rate DS-UWB system
Author :
Geng, Chunhua ; Pei, Yukui ; Ge, Ning
Author_Institution :
Dept. of Electron. Eng., Tsinghua Univ., Beijing, China
fYear :
2009
fDate :
9-11 Sept. 2009
Firstpage :
93
Lastpage :
97
Abstract :
In ultra high data rate carrier based direct-sequence ultra-wideband (DS-UWB) systems with low spreading factor (SF), severe inter-path interference (IPI) and inter-chip interference (ICI) degrade the performance of conventional Rake-Equalizer receiver due to the poor autocorrelation property of spreading code. Moreover, in scenarios with long channel delay spread, the high computational complexity of decision feedback equalizer (DFE) becomes a heavy burden for system design. In this paper, a selective multipath interference canceller (SMPIC) assisted by linear equalization (LE) is developed for practical receiver design, which achieves a better trade-off between performance and computational complexity than Rake-DFE. In this scheme, the SMPIC is capable of alleviating the strong IPI, ICI and inter-symbol interference (ISI) by cancelling out reconstructed multipath interference in an iterative manner. Then a low complexity LE with small tap number is employed. Monte Carlo simulations show that compared with Rake-DFE, the proposed SMPIC-LE receiver, with much lower computational complexity, can achieve similar or even better performance in different UWB channel models.
Keywords :
Monte Carlo methods; decision feedback equalisers; interference suppression; intersymbol interference; iterative methods; multipath channels; radio receivers; spread spectrum communication; ultra wideband communication; wireless channels; DFE; Monte Carlo simulation; SMPIC-LE receiver design; UWB channel model; computational complexity; decision feedback equalizer; direct-sequence ultra-wideband system; interchip interference; interpath interference; intersymbol interference; iterative multipath interference canceller; linear equalization; ultra high data rate DS-UWB system; Computational complexity; Degradation; Equalizers; Fading; Interference cancellation; Intersymbol interference; Laboratories; Multipath channels; RAKE receivers; Ultra wideband technology; Rake; equalization; multipath interference cancellation; ultra-wideband (UWB);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultra-Wideband, 2009. ICUWB 2009. IEEE International Conference on
Conference_Location :
Vancouver, BC
Print_ISBN :
978-1-4244-2930-1
Electronic_ISBN :
978-1-4244-2931-8
Type :
conf
DOI :
10.1109/ICUWB.2009.5288680
Filename :
5288680
Link To Document :
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