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Paper Abstract and Keywords
Presentation 2011-03-04 15:30
FPGA Implementation and Transmission Experiment of Decision-Directed Phase Noise Compensation for Millimeter-Wave Single Carrier Systems with Frequency-Domain Equalization
Hiroki Ishibashi, Satoshi Suyama, Hiroshi Suzuki, Kazuhiko Fukawa (Tokyo Inst. of Tech.) RCS2010-314
Abstract (in Japanese) (See Japanese page) 
(in English) In this report, a 60-GHz millimeter-wave single-carrier system with frequency-domain equalization (SC-FDE) and phase noise compensation is implemented in FPGA, and it clarifies the effectiveness and feasibility by radio transmission experiment. If a 60-GHz transceiver is implemented by single-chip RF-CMOS IC based on the silicon technology, the relatively large phase noise in frequency synthesizers occurs, and severely degrades transmission performances in the multi-level QAM. In order to cope with the phase noise in OFDM and SC-FDE, the receivers employing decision-directed phase noise compensation (DD-PNC) have been proposed. However, the hardware feasibility and capability of real-time processing have not been investigated. First, this report introduces a baseband (BB) transmission system of SC-FDE with DD-PNC that is implemented in FPGA. The implemented BB transmission system can achieve a maximum bit-rate of 787.5 Mbps by processing the SC-FDE transmission with the symbol rate of 200 Msym/s in real-time. In addition, it includes multipath channels, the phase noise, and noise generators, and verifies the effectiveness of DD-PNC by measuring transmission performance. Moreover, the radio transmission experiment is performed by combining the BB transmission system with a 60-GHz radio circuit. Experimental results demonstrate that the phase noise compensation by DD-PNC can achieve excellent transmission performance, when 16QAM with the coding rate R of 1/2 is employed and the phase noise level is -77 dBc/Hz at 1 MHz offset.
Keyword (in Japanese) (See Japanese page) 
(in English) Wireless communication / millimeter wave / phase noise / decision-directed estimation / FPGA / transmission experiment / /  
Reference Info. IEICE Tech. Rep., vol. 110, no. 433, RCS2010-314, pp. 385-390, March 2011.
Paper # RCS2010-314 
Date of Issue 2011-02-23 (RCS) 
ISSN Print edition: ISSN 0913-5685    Online edition: ISSN 2432-6380
Copyright
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reproduction
All rights are reserved and no part of this publication may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photocopy, recording, or any information storage and retrieval system, without permission in writing from the publisher. Notwithstanding, instructors are permitted to photocopy isolated articles for noncommercial classroom use without fee. (License No.: 10GA0019/12GB0052/13GB0056/17GB0034/18GB0034)
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Conference Information
Committee RCS MoNA SR  
Conference Date 2011-03-02 - 2011-03-04 
Place (in Japanese) (See Japanese page) 
Place (in English) YRP 
Topics (in Japanese) (See Japanese page) 
Topics (in English) Mobile Communication Workshop 
Paper Information
Registration To RCS 
Conference Code 2011-03-RCS-MoMuC-SR 
Language Japanese 
Title (in Japanese) (See Japanese page) 
Sub Title (in Japanese) (See Japanese page) 
Title (in English) FPGA Implementation and Transmission Experiment of Decision-Directed Phase Noise Compensation for Millimeter-Wave Single Carrier Systems with Frequency-Domain Equalization 
Sub Title (in English)  
Keyword(1) Wireless communication  
Keyword(2) millimeter wave  
Keyword(3) phase noise  
Keyword(4) decision-directed estimation  
Keyword(5) FPGA  
Keyword(6) transmission experiment  
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Keyword(8)  
1st Author's Name Hiroki Ishibashi  
1st Author's Affiliation Tokyo Institute of Technology (Tokyo Inst. of Tech.)
2nd Author's Name Satoshi Suyama  
2nd Author's Affiliation Tokyo Institute of Technology (Tokyo Inst. of Tech.)
3rd Author's Name Hiroshi Suzuki  
3rd Author's Affiliation Tokyo Institute of Technology (Tokyo Inst. of Tech.)
4th Author's Name Kazuhiko Fukawa  
4th Author's Affiliation Tokyo Institute of Technology (Tokyo Inst. of Tech.)
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Speaker Author-1 
Date Time 2011-03-04 15:30:00 
Presentation Time 20 minutes 
Registration for RCS 
Paper # RCS2010-314 
Volume (vol) vol.110 
Number (no) no.433 
Page pp.385-390 
#Pages
Date of Issue 2011-02-23 (RCS) 


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