Title :
Transmission scheme of high-capacity FM multiplex broadcasting system
Author :
Kuroda, T. ; Takada, M. ; Isobe, T. ; Yamada, O.
Author_Institution :
NHK Sci. & Tech. Res. Labs., Tokyo, Japan
fDate :
9/1/1996 12:00:00 AM
Abstract :
FM multiplex broadcasting is a system for providing additional text and graphics, while maintaining compatibility with existing stereo sound broadcasting. The digital signals are multiplexed in a higher frequency band than baseband FM stereo signals. This paper describes a modulation method and an error correction method for a new high-capacity FM multiplex broadcasting system called DARC (Data Radio Channel), which has a bit rate of 16 kbit/s. Simulation results show that stereo sound signals interfere with a multiplexing signal under multipath conditions. LMSK (level controlled MSK) is proposed as a modulation scheme to ensure good transmission quality. It is shown that an error correction scheme using a product code of (272190) codes has a good performance for mobile reception. Field tests on the DARC for mobile reception are conducted in the service area of the NHK Tokyo FM station. These show that the correct reception rate can be obtained at more than 80% when transmitting information of 6 kbytes
Keywords :
Hi-Fi equipment; digital audio broadcasting; error correction codes; frequency division multiplexing; frequency modulation; minimum shift keying; multipath channels; radio data systems; radiofrequency interference; 16 kbit/s; DARC; Data Radio Channel; FM multiplex broadcasting system; NHK Tokyo FM station; baseband FM stereo signals; digital signals; error correction method; field tests; frequency band; graphics; high-capacity system; level controlled MSK; mobile reception; modulation method; multipath conditions; multiplexing signal; product code; radio data systems; simulation results; stereo sound broadcasting; stereo sound signals; text; transmission quality; Baseband; Colored noise; Control systems; Digital audio broadcasting; Digital modulation; Frequency modulation; Graphics; Interference; Product codes; Radio broadcasting;
Journal_Title :
Broadcasting, IEEE Transactions on