DocumentCode
1814626
Title
Adaptive interleaver based on the measurement of Doppler shift in fading channel [vehicle speed measurement]
Author
Li, Yonghui ; Zhang, Qishan ; He, Huixia
Author_Institution
Beijing Univ. of Aeronaut. & Astronaut., China
fYear
2001
fDate
2001
Firstpage
233
Lastpage
236
Abstract
An adaptive interleaver based on the measurement of Doppler shift in fading channel is presented in this paper. It is known that the combination of channel coding with interleaver can effectively correct burst errors in fading channel. An interleaver can make channel actions on symbols in one decoder block appear to be independent. In general words, the deeper the interleaver is, the better the effect is, but the longer the delay is. The depth of interleaver is much related with the fading rate, i.e., it is dependent on the correlative time of fading channel. This paper gives out an adaptive interleaver by measuring vehicular speed, i.e. Doppler shift. From measurement of the Doppler shift by calculating variation of different of estimated fading factor, one can compute optimal interleaver depth, and then select appropriate interleaver both in the transmitter and receiver. By using this method, the average delay of interleaver can be decreased effectively. This paper presents this method and computer simulation results
Keywords
Doppler shift; channel coding; error correction codes; fading channels; receivers; transmitters; adaptive interleaver; burst errors correction; channel coding; computer simulation; fading channel Doppler shift measurement; fading rate; optimal interleaver depth; receiver; transmitter; vehicular speed measurement; 3G mobile communication; Bit error rate; Delay effects; Delay systems; Doppler shift; Extraterrestrial measurements; Fading; Forward error correction; Marine vehicles; System performance;
fLanguage
English
Publisher
ieee
Conference_Titel
Vehicle Electronics Conference, 2001. IVEC 2001. Proceedings of the IEEE International
Conference_Location
Tottori
Print_ISBN
0-7803-7229-8
Type
conf
DOI
10.1109/IVEC.2001.961759
Filename
961759
Link To Document