Presentation 2013-04-19
HARQ Throughput of Adaptive Single-carrier MIMO Transmission with Joint Tx/Rx Filtering in Distributed Antenna Network
Shinya KUMAGAI, Tatsunori OBARA, Tetsuya YAMAMOTO, Fumiyuki ADACHI,
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Abstract(in English) In the conventional cellular network (CN) whose antennas are co-located at the center of the cell, the throughput near the cell edge significantly degrades due to the degradation of the received signal power. Distributed antenna network (DAN) whose antennas are distributed over the entire cell can solve this problem. In DAN, high received signal power can be obtained over the entire cell because the mobile terminal can access the nearby antennas with a high probability. Therefore, the throughput can be increased over the entire cell by performing multiple-input multiple-output (MIMO) spatial multiplexing with multiple distributed antennas. In this paper, we evaluate, by computer simulation, the hybrid automatic repeat request (HARQ) throughput distribution in DAN of the adaptive single-carrier (SC)-MIMO transmission with minimum mean square error (MMSE) based joint transmit and receive filtering which was recently proposed by us. It is shown that DAN can improve the downlink throughput especially near the cell edge compared to CN and the proposed transmission method can improve the throughput especially in DAN compared to the conventional SC-MIMO spatial multiplexing with receive MMSE filtering.
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Keyword(in English) Distributed antenna / MIMO / Joint Tx/Rx filtering / HARQ
Paper # RCS2013-15
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Committee RCS
Conference Date 2013/4/11(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) HARQ Throughput of Adaptive Single-carrier MIMO Transmission with Joint Tx/Rx Filtering in Distributed Antenna Network
Sub Title (in English)
Keyword(1) Distributed antenna
Keyword(2) MIMO
Keyword(3) Joint Tx/Rx filtering
Keyword(4) HARQ
1st Author's Name Shinya KUMAGAI
1st Author's Affiliation Dept. of Communications Engineering, Graduate School of Engineering, Tohoku University()
2nd Author's Name Tatsunori OBARA
2nd Author's Affiliation Dept. of Communications Engineering, Graduate School of Engineering, Tohoku University
3rd Author's Name Tetsuya YAMAMOTO
3rd Author's Affiliation Dept. of Communications Engineering, Graduate School of Engineering, Tohoku University
4th Author's Name Fumiyuki ADACHI
4th Author's Affiliation Dept. of Communications Engineering, Graduate School of Engineering, Tohoku University
Date 2013-04-19
Paper # RCS2013-15
Volume (vol) vol.113
Number (no) 8
Page pp.pp.-
#Pages 6
Date of Issue