DocumentCode
729611
Title
Inter-carrier interference cancelation for Alamouti coded single frequency network
Author
Zhecheng An ; Jun Wang ; Jintao Wang ; Su Huang ; Jian Song
Author_Institution
Dept. of Electron. Eng., Tsinghua Univ., Beijing, China
fYear
2015
fDate
17-19 June 2015
Firstpage
1
Lastpage
4
Abstract
For digital terrestrial television broadcasting (DTTB) systems, orthogonal frequency division multiplexing (OFDM) technique is considered to be an effective method to combat the frequency selective channel cause by multi-path effect. In the single frequency network (SFN) scenario, Alamouti space frequency block coding (SFBC) is introduced to provide spatial diversity gain and improve the link stability. However, both OFDM and Alamouti SFBC are sensitive to time-variant during mobile reception. In this paper, we propose a decision feedback equalization algorithm for inter-carrier interference (ICI) cancelation of the dual (PN) padded time domain synchronization OFDM (TDS-OFDM) DTTB system over doubly selective channel. Our algorithm is proven by numerical simulations which show bit error rate (BER) gain over mobile SFN channel and can be adopted in mobile high density television (HDTV) transmission systems.
Keywords
OFDM modulation; decision feedback equalisers; digital video broadcasting; error statistics; high definition television; intercarrier interference; multipath channels; space-time block codes; synchronisation; Alamouti SFBC; Alamouti space frequency block coding; BER gain; ICI cancellation; OFDM technique; SFN scenario; TDS-OFDM DTTB system; bit error rate gain; decision feedback equalization algorithm; digital terrestrial television broadcasting systems; doubly selective channel; dual padded time domain synchronization OFDM DTTB system; frequency selective channel; intercarrier interference; link stability; mobile HDTV transmission systems; mobile SFN channel; mobile high density television transmission systems; mobile reception; multipath effect; orthogonal frequency division multiplexing technique; single frequency network scenario; spatial diversity gain; Bit error rate; Decoding; Digital video broadcasting; Fading; OFDM; Receivers; Channel coding; DTV and broadband multimedia systems; ICI cancelation; modulation; multiplexing; single frequency network;
fLanguage
English
Publisher
ieee
Conference_Titel
Broadband Multimedia Systems and Broadcasting (BMSB), 2015 IEEE International Symposium on
Conference_Location
Ghent
Type
conf
DOI
10.1109/BMSB.2015.7177268
Filename
7177268
Link To Document