Presentation 2005-01-28
Peformance Evaluation of Layered Space-Frequency Equalization with Iterative Cancellation
Amane INOUE, Tomoaki OHTSUKI,
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Abstract(in English) Recently, multiple-input multiple-output (MIMO) systems that realize a high speed data transmission with multiple antennas at both transmitter and receiver have drawn much attention. In this report, we evaluate the performance of Layered Space-Frequency Equalization (LSFE) with iterative cancellation. LSFE is combination of V-BLAST (Vertical Bell Laboratories Layered Space-Time) that is one of the signal detection methods for MIMO systems and Frequency Domain Equalization (FDE) that is one of the techniques for frequency selective fading channels. We use two iterative cancellation methods : Foward Iterative Cancellation (FIC) and Backward Iterative Cancellation (BIC). Simulation results show that for the frequency selective fading channels, bit error rate (BER) is improved by FIC and BIC. We also show that when the number of paths is large, LSFE with BIC achieves the larger diversity gain and the better BER than LSFE with FIC.
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Keyword(in English) MIMO / V-BLAST / Frequency Domain Equalization / LSFE / Iterative Cancellation
Paper # CS2004-213,RCS2004-320
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Conference Information
Committee RCS
Conference Date 2005/1/21(1days)
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Registration To Radio Communication Systems (RCS)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Peformance Evaluation of Layered Space-Frequency Equalization with Iterative Cancellation
Sub Title (in English)
Keyword(1) MIMO
Keyword(2) V-BLAST
Keyword(3) Frequency Domain Equalization
Keyword(4) LSFE
Keyword(5) Iterative Cancellation
1st Author's Name Amane INOUE
1st Author's Affiliation Graduate School of Science and Technology, Tokyo University of Science()
2nd Author's Name Tomoaki OHTSUKI
2nd Author's Affiliation Faculty School of Science and Technology, Tokyo University of Science
Date 2005-01-28
Paper # CS2004-213,RCS2004-320
Volume (vol) vol.104
Number (no) 599
Page pp.pp.-
#Pages 6
Date of Issue