DocumentCode :
893820
Title :
A low-complexity noncoherent IR-UWB transceiver architecture with TOA estimation
Author :
Stoica, Lucian ; Rabbachin, Alberto ; Oppermann, Ian
Author_Institution :
Centre for Wireless Commun., Oulu Univ., Finland
Volume :
54
Issue :
4
fYear :
2006
fDate :
6/1/2006 12:00:00 AM
Firstpage :
1637
Lastpage :
1646
Abstract :
Impulse-radio (IR)-based ultra-wideband (UWB) technology is a strong candidate for short-range data communication and positioning systems. This paper examines the performance of time-of-arrival (TOA) position estimation techniques as well as the simulated and measured performances of an IR-UWB noncoherent energy-collection receiver. The noncoherent IR-UWB transceiver has been designed for operation over the frequency range 3.1-4.1 GHz and implemented in 0.35-μm SiGe BiCMOS technology. The performance of two different algorithms, namely, the threshold-crossing and the maximum selection (MAX) algorithms, are compared in terms of TOA estimation error in Saleh Valenzuela channel model 3 and channel model 4. The implemented structure of the TOA MAX algorithm suitable for IR-UWB-based noncoherent receivers is presented. A UWB testbed has been constructed in order to test and measure the transmitted waveform as well the receiver performances. The simulated receiver noise figure is 7.3 dB while the receiver gain is 34 dB. The TOA MAX algorithm can achieve ±5-ns positioning accuracy for 95% of cases. Constant transconductance tuning circuits for improved TOA estimation reliability are also presented.
Keywords :
BiCMOS integrated circuits; Ge-Si alloys; MMIC; circuit tuning; radio receivers; time-of-arrival estimation; transceivers; ultra wideband communication; wireless channels; 0.35 micron; 3.1 to 4.1 GHz; 7.3 dB; BiCMOS technology; SiGe; estimation error; estimation reliability; impulse-radio ultra-wideband technology; maximum selection algorithms; noncoherent energy-collection receiver; positioning systems; short-range data communication; threshold-crossing algorithms; time-of-arrival position estimation techniques; transceiver architecture; Circuit testing; Data communication; Energy measurement; Frequency; Performance evaluation; Position measurement; Silicon germanium; Time of arrival estimation; Transceivers; Ultra wideband technology; Impulse-radio ultra-wideband (IR-UWB); RF front-end; SiGe BiCMOS; noncoherent low-complexity transceiver architecture; tag networks; time-of-arrival (TOA) estimation;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2006.872056
Filename :
1618591
Link To Document :
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