Title :
Transmission of block turbo coded digital audio over FM-SCA
Author :
Janakiraman, Vivek ; Jang, Jeen Sang ; Kim, Junghwan
Author_Institution :
Electr. Eng. & Comput. Sci. Dept., Univ. of Toledo, OH, USA
fDate :
6/1/2004 12:00:00 AM
Abstract :
In this paper, an efficient coded scheme for transmitting digital audio over the existing FM channel, by multiplexing it with the baseband FM signal, is described. Transmission of multiplexed signals in the FM baseband called FM-SCA (subsidiary communications authorization) has been previously used for low quality analog content and some low rate digital content. The investigated scheme opens up the possibility of achieving CD quality audio over FM-SCA by enabling high bitrate transmission using MPEG-I layer 3 and MPEG-AAC audio coding for the digital audio. These schemes provide CD quality audio at or below 128 kbps, MPEG-AAC being able to do so at rates as low as 96 kbps. Block turbo codes (BTC), which offer near Shannon´s limit performance with relatively low hardware complexity requirements, provide the error protection. Block turbo codes have been shown to be particularly effective for high coding rates. The system uses OFDM in conjunction with 8PSK/16PSK to modulate the digital bitstream and fit it in the 44 kHz (54 to 98 kHz) band available in the FM baseband. Simulation results show an optimal system configuration for digital audio transmission in FM-SCA.
Keywords :
OFDM modulation; audio coding; block codes; channel coding; digital audio broadcasting; frequency modulation; phase shift keying; telecommunication equipment testing; telecommunication standards; turbo codes; CD quality audio; FM channel; FM subsidiary communications authorization; FM-SCA; MPEG-AAC audio coding; MPEG-I layer 3 coding; OFDM; OFDM 8PSK/16PSK modulation; PSK; baseband FM signal; block turbo coded digital audio transmission; coded transmission scheme; coding rates; digital audio broadcasting; digital bitstream modulation; high bitrate transmission; multiplexed signals transmission; near-Shannon limit performance; simulation; Audio coding; Authorization; Bandwidth; Baseband; Bit rate; Digital audio broadcasting; Frequency modulation; Hardware; Radio broadcasting; Turbo codes; Block turbo code; digital audio broadcasting;
Journal_Title :
Broadcasting, IEEE Transactions on
DOI :
10.1109/TBC.2004.828368