DocumentCode
1152980
Title
Postcanceling techniques for simultaneous broadcasting of analog FM and digital data
Author
Papadopoulos, Haralabos C. ; Sundberg, Carl-Erik W.
Author_Institution
Lucent Technol. Bell Labs., Murray Hill, NJ, USA
Volume
51
Issue
1
fYear
2003
fDate
1/1/2003 12:00:00 AM
Firstpage
86
Lastpage
93
Abstract
We consider simultaneous broadcasting of low-power digital data and analog FM and present reliable receivers for the digital data. Due to the relatively low power level of the digital data and the interference suppression capability of analog FM, standard analog FM receivers can reliably recover the analog FM audio signal. To recover the digital data, an extended Kalman filter front end is developed that exploits the capture capability of analog FM to reconstruct and postcancel the analog FM component from the received composite signal. Simulations are conducted with artificial analog FM signals, suggesting that postcanceling schemes can provide higher data rates than their precanceling counterparts, at a lower transmission delay penalty but higher digital receiver complexity. For analog FM to digital signal power level ratios in the range of 30-50 dB, the postcanceler digital signal recovery appears fairly robust, providing digital signal-to-noise ratios of 2-7.5 dB. The corresponding uncoded bit error rates strongly depend on the power level difference between the host analog FM and the digital data signal. In particular, at 260 kb/s and Eb/No=10 dB they range between 1% to about 15%, and can be reduced to acceptable levels using standard channel coding techniques.
Keywords
Kalman filters; digital audio broadcasting; frequency modulation; interference suppression; radio receivers; radio transmitters; signal reconstruction; 260 kbit/s; DAB; FM radio transmitter; analog FM broadcasting; analog FM receivers; bit error rates; digital audio broadcasting; digital radio receivers; digital signal recovery; extended Kalman filter; hybrid in-band on channel schemes; postcanceling techniques; signal reconstruction; signal-to-noise ratios; simultaneous analog/digital broadcasting; Delay; Digital audio broadcasting; FCC; Frequency modulation; Interference suppression; Licenses; Radio broadcasting; Robustness; Satellite broadcasting; Signal to noise ratio;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2002.807613
Filename
1181551
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