DocumentCode :
1984269
Title :
Low complexity suboptimal monobit receiver for transmitted-reference impulse radio UWB systems
Author :
Khani, Hadi ; Hong Nie ; Weidong Xiang ; Zhimeng Xu ; Zhizhang Chen
Author_Institution :
Dept. of Ind. Technol., Univ. of Northern Iowa, Cedar Falls, IA, USA
fYear :
2012
fDate :
3-7 Dec. 2012
Firstpage :
4084
Lastpage :
4089
Abstract :
In this paper, a low complexity suboptimal monobit receiver, denoted as Q-function estimation (QFE) based monobit receiver, is proposed for transmitted-reference (TR) based impulse radio (IR) ultra wideband (UWB) systems to mitigate the performance degradation caused by severe quantization noise due to employing monobit ADCs. Through accumulating reference samples over multiple blocks, the QFE-based monobit receiver can considerably reduce the noise-on-noise effect and optimize the contribution of each sample to the decision statistic. Computer simulations demonstrate that in both line-of-sight (LOS) and non-LOS (NLOS) channels the QFE-based monobit weighted TR receiver can achieve a close-to-optimal bit-error rate (BER) performance without requiring full channel state information. Furthermore, because the optimal combining weights can be obtained offline and saved into a lookup table, the complexity of the proposed suboptimal monobit receiver is quite low. Therefore, it is considered as a promising technology for IR-UWB applications requiring low system complexity and low power consumption.
Keywords :
error statistics; quantisation (signal); radio receivers; radio transmitters; signal denoising; table lookup; ultra wideband communication; wireless channels; BER; LOS channel; NLOS channel; Q-function estimation; QFE; TR IR ultrawideband system; channel state information; close-to-optimal bit-error rate performance; line-of-sight channel; lookup table; low complexity suboptimal monobit receiver; monobit ADC; noise-on-noise effect; nonLOS channel; optimal combining weight; power consumption; quantization noise; transmitted-reference impulse radio UWB system; Forgetting factor; Q-function estimation; monobit ADC; quantization noise; transmitted reference; ultra-wideband;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Global Communications Conference (GLOBECOM), 2012 IEEE
Conference_Location :
Anaheim, CA
ISSN :
1930-529X
Print_ISBN :
978-1-4673-0920-2
Electronic_ISBN :
1930-529X
Type :
conf
DOI :
10.1109/GLOCOM.2012.6503756
Filename :
6503756
Link To Document :
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