DocumentCode :
1524498
Title :
DVB-T/H and T-DMB: Physical Layer Performance Comparison in Fast Mobile Channels
Author :
Poggioni, Mario ; Rugini, Luca ; Banelli, Paolo
Author_Institution :
Dept. of Electr. & Inf. Eng., Univ. of Perugia, Perugia, Italy
Volume :
55
Issue :
4
fYear :
2009
Firstpage :
719
Lastpage :
730
Abstract :
Terrestrial or Handheld Digital Video Broadcasting (DVB-T/H) and Terrestrial Digital Multimedia Broadcasting (T-DMB) are two popular broadcasting standards that enable digital television transmissions to handheld receivers. This paper presents a comprehensive performance comparison between the physical layers of DVB-T/H and T-DMB when employed for mobile communications. By exploiting a recently proposed fast simulation model, we assess the BER of the two coded OFDM systems in several realistic scenarios, taking into account Rayleigh and Rice channels, different mobile speeds, inner and outer channel coding, channel estimation, and one or two receive antennas. Our comparison shows that the DVB-T/H physical layer performance highly depends on the delay spread of the channel, whereas T-DMB is less sensitive to the frequency selectivity of the channel. As a result, DVB-T/H yields better performance than T-DMB in typical Rayleigh channels with significant delay spread. On the contrary, at high SNR, T-DMB outperforms DVB-T/H in Rice channels with low delay spread. As a side result, we show the performance improvement of DVB-H produced by MPE-FEC at the data link layer.
Keywords :
OFDM modulation; Rayleigh channels; digital video broadcasting; error statistics; mobile communication; multimedia communication; telecommunication channels; BER; DVB-T/H; MPE-FEC; Rayleigh channels; Rice channels; T-DMB; bit error rate; broadcasting standards; channel coding; channel estimation; coded OFDM systems; data link layer; digital television transmissions; handheld digital video broadcasting; handheld receivers; mobile channels; physical layer performance comparison; receive antennas; terrestrial digital multimedia broadcasting; terrestrial digital video broadcasting; Bit error rate; Delay; Digital TV; Digital multimedia broadcasting; Digital video broadcasting; Mobile communication; Multimedia communication; Physical layer; TV broadcasting; TV receivers; BER performance; DAB; DVB-H; DVB-T; Doppler spread; ICI; T-DMB; coded OFDM; time-varying fading channels;
fLanguage :
English
Journal_Title :
Broadcasting, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9316
Type :
jour
DOI :
10.1109/TBC.2009.2034418
Filename :
5299252
Link To Document :
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