Title :
STFBC method for the ICI reduction in OFDM communication system
Author :
Li, Yingshan ; Lee, Jun-Seo ; Lee, Kang-Me ; Ryu, Heung-Gyoon
Author_Institution :
Dept. of Electr. Eng., Chung-Buk Nat. Univ., Cheongju, South Korea
fDate :
29 Aug.-1 Sept. 2004
Abstract :
In OFDM communication system suitable for the highspeed broadband transmission, ICI (intersubcarrier-interference) caused by phase noise and frequency offset results in poor system performance. In this paper, new STFBC (space time frequency block coding) method combining ICI self-cancellation scheme and antenna, time, frequency diversity is studied to reduce ICI effectively. CPE (common phase error) and ICI are analyzed by the phase noise linear approximation method in the 4 kinds of systems. CIR (carrier-to-interference ratio), PAPR (peak to average power ratio), PICR (peak interference to carrier ratio), BER (bit error rate) and bandwidth efficiency are discussed to analyze the system performance degraded by phase noise of the PLL (or frequency offset) in the 5 kinds of systems. The SCI (self-channel interference) that usually happens in the STBC (space-time block coding) method can be easily avoided in above STFBC method. STFBC method considerably reduces ICI and SCI. Conclusively the proposed STFBC method using diversity technique can show excellent performance without the loss of bandwidth efficiency, compared with the other conventional methods, although it lowers the transmission speed.
Keywords :
OFDM modulation; block codes; broadband networks; diversity reception; error statistics; phase noise; radiofrequency interference; space-time codes; telecommunication channels; BER; CIR; CPE; ICI self-cancellation scheme; OFDM communication system; PAPR; PICR; STFBC; bit error rate; carrier-to-interference ratio; common phase error; diversity technique; frequency offset; highspeed broadband transmission; intersubcarrier-interference; linear approximation method; orthogonal frequency division multiplexing; peak interference-to-carrier ratio; peak-to-average power ratio; phase noise; space time frequency block coding; Bandwidth; Bit error rate; Block codes; Diversity reception; Interference; OFDM; Peak to average power ratio; Phase noise; System performance; Time frequency analysis;
Conference_Titel :
Communications, 2004 and the 5th International Symposium on Multi-Dimensional Mobile Communications Proceedings. The 2004 Joint Conference of the 10th Asia-Pacific Conference on
Print_ISBN :
0-7803-8601-9
DOI :
10.1109/APCC.2004.1391852