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Paper Abstract and Keywords
Presentation 2017-06-23 11:20
Investigations on Optimum Frequency Bandwidth Allocation Method among Service Channels for System Throughput Maximization
Shota Mizuno, Dairoku Muramatsu (Tokyo Univ. of Science), Yasuaki Yuda (Panasonic), Kenichi Higuchi (Tokyo Univ. of Science) RCS2017-87
Abstract (in Japanese) (See Japanese page) 
(in English) In the fifth generation mobile communication systems, various wireless communication services such as massive machine-type communications (mMTC) and ultra-reliable low latency communications (URLLC) will be supported in addition to the enhanced mobile broadband (eMBB). The physical channels (service channels) dedicated to respective of these wireless communication services will be multiplexed within a shared system frequency band and the respective wireless communication services will have different requirements on frequency efficiency and fairness between terminals. Therefore, appropriate frequency bandwidth assignment to each service channel considering the service requirement, number of terminals, and their channel conditions of all wireless communication services is important for system performance maximization. In this paper, we assume two service channels and define different forms of the system throughput for two service channels considering different service requirements. With definition of integrated system throughput which combine two system throughput levels of two service channels, this paper proposes optimum frequency bandwidth allocation method among service channels for integrated system throughput maximization. Computer simulation results show the effectiveness of the proposed method.
Keyword (in Japanese) (See Japanese page) 
(in English) Service channel / eMBB / mMTC / URLLC / system throughput / bandwidth allocation / /  
Reference Info. IEICE Tech. Rep., vol. 117, no. 103, RCS2017-87, pp. 221-226, June 2017.
Paper # RCS2017-87 
Date of Issue 2017-06-14 (RCS) 
ISSN Print edition: ISSN 0913-5685  Online edition: ISSN 2432-6380
Copyright
and
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. (No. 10GA0019/12GB0052/13GB0056/17GB0034/18GB0034)
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Conference Information
Committee RCS  
Conference Date 2017-06-21 - 2017-06-23 
Place (in Japanese) (See Japanese page) 
Place (in English) Ishigaki Shoukou Kaikan 
Topics (in Japanese) (See Japanese page) 
Topics (in English) First Presentation in IEICE Technical Committee, Railroad Communications, Inter-Vehicle Communications, Road to Vehicle Communications, Resource Control, Scheduling, Wireless Communication Systems, etc. 
Paper Information
Registration To RCS 
Conference Code 2017-06-RCS 
Language Japanese 
Title (in Japanese) (See Japanese page) 
Sub Title (in Japanese) (See Japanese page) 
Title (in English) Investigations on Optimum Frequency Bandwidth Allocation Method among Service Channels for System Throughput Maximization 
Sub Title (in English)  
Keyword(1) Service channel  
Keyword(2) eMBB  
Keyword(3) mMTC  
Keyword(4) URLLC  
Keyword(5) system throughput  
Keyword(6) bandwidth allocation  
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Keyword(8)  
1st Author's Name Shota Mizuno  
1st Author's Affiliation Tokyo University of Science (Tokyo Univ. of Science)
2nd Author's Name Dairoku Muramatsu  
2nd Author's Affiliation Tokyo University of Science (Tokyo Univ. of Science)
3rd Author's Name Yasuaki Yuda  
3rd Author's Affiliation Panasonic Corporation (Panasonic)
4th Author's Name Kenichi Higuchi  
4th Author's Affiliation Tokyo University of Science (Tokyo Univ. of Science)
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Speaker
Date Time 2017-06-23 11:20:00 
Presentation Time 10 
Registration for RCS 
Paper # IEICE-RCS2017-87 
Volume (vol) IEICE-117 
Number (no) no.103 
Page pp.221-226 
#Pages IEICE-6 
Date of Issue IEICE-RCS-2017-06-14 


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