DocumentCode
1234538
Title
Slightly Frequency-Shifted Reference Ultra-Wideband (UWB) Radio
Author
Goeckel, Dennis L. ; Zhang, Qu
Author_Institution
Electr. & Comput. Eng. Dept., Massachusetts Univ., Amherst, MA
Volume
55
Issue
3
fYear
2007
fDate
3/1/2007 12:00:00 AM
Firstpage
508
Lastpage
519
Abstract
A promising ultra-wideband (UWB) radio technique being widely considered for low-data-rate applications, such as those often encountered in sensor networks, is the transmitted reference (TR) UWB scheme. However, the standard TR-UWB scheme, while often motivated by the simplicity of its receiver, is still dogged by implementation concerns. In particular, the receiver requires an extremely wideband delay element, which is difficult to incorporate into low-power integrated systems. In this paper, a TR scheme is proposed in which the separation between the data and reference signals, rather than being a time delay, is a slow rotation over the symbol interval. This provides a (slightly) frequency-shifted reference that, while orthogonal to the data-bearing pulse, still goes through a nearly equal channel. A detailed analysis of the proposed scheme is provided. Simulation results demonstrate the expected result that frequency shifting of the reference in the proposed manner is not effective for high-data-rate systems that experience appreciable intersymbol interference. However, for the targeted low-to-moderate data-rate applications, numerical results demonstrate that the proposed system not only achieves the primary goal of providing a much simpler receiver architecture, but also that it outperforms the standard TR-UWB system
Keywords
delays; intersymbol interference; ultra wideband communication; UWB; data-bearing pulse; intersymbol interference; low-power integrated systems; reference signals; slightly frequency-shifted reference radio; time delay; ultra-wideband radio; Bandwidth; Delay effects; FCC; Fading; Frequency; Intersymbol interference; Military computing; Pulse modulation; RAKE receivers; Ultra wideband technology; Communication system signaling; multipath channels; receivers;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2007.892452
Filename
4132990
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