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IoT時代の到来により,あらゆるものがインターネットに接続されるようになっ た.これに伴い,ネットワークに求められる要求が多様化し,多様な要求を満足 することができるネットワーク構築の必要性が出てきた.一方で,ネットワーク に接続される端末数が増大し,ネットワークに求められる要求が多様化している 状況ではネットワークにおける負荷の増大は免れない.このネットワークにおけ る要求を満足するために集中制御型のネットワークであるC-RANに着目した.

また,ネットワークの負荷の増大に伴い,ネットワーク機器における消費電力量 も増大することになる.そこでネットワークを構築する各構成要素において省電 力化制御を用いることでネットワーク全体の省電力化を実現した.

本研究では,アクセスネットワーク全体の省電力化制御手法に着目した.以下 は,本論文の各章を概括したものである.

■ 第1章 序論として,本研究の背景,及びその目的について述べ,本論文の 構成を示した.

5章 結論

■ 第2章 次世代無線アクセスネットワークにおいて利用されている既存の省 電力化技術とその課題について述べた.ここでは,スリープによる省電力化制御 の課題を中心にネットワーク全体を考慮した省電力化制御が必要であることを指 摘した.スリープによる省電力化制御の課題として,スリープを行う際に,通信 品質の悪化の可能性があることを指摘し,通信品質を担保した省電力化制御を行 う必要があることを示した。また,集中制御型ネットワークの特徴を活かして,

ネットワークの一部分の省電力化を行うのではなく,ネットワーク全体を考慮し た省電力化制御を行う必要があることを示した.

■ 第3章 RRHにおけるグループスケジューリングを用いた省電力化手法を提 案した.さらに,RRHのスリープと光給電を用いた複合制御について説明を行っ た.本手法ではQoEを担保しつつ,スリープを行い,通信品質と省電力化の両 立を実現した.そして,提案手法の性能について数値解析を行い,提案手法の有 効性を確認した.

■ 第4章 OLTにおけるタイムスロットを用いた省電力化手法の提案を行った.

ここでは,トラヒックのモデル化を行い,想定されるIoTトラヒックに関して検 討を行った.更に,タイムスロットを用いた省電力化手法について説明を行った.

OLTとONUそれぞれにタイムスロットを導入し,ONUとOSUのスリープを効 率的に制御することで,OLTにおける省電力化を実現した.そして,提案手法の 性能について数値解析を行った.これによりOLTの消費電力の低減を確認し,提 案手法の有効性を確認した.

■ 第5章 結論として,本論文にて提案した次世代無線アクセスネットワーク における省電力化手法を総括した.

81

5章 結論

以上のように,本研究では,アクセスネットワーク全体の省電力化制御手法の 提案を行った.本研究の成果は,今後の次世代無線アクセスネットワークにおけ る省電力化の実現に寄与するものであるといえる.

著作物利用許諾

本論文は,東北大学大学院情報科学研究科情報通信技術論研究室(加藤研究室)

において筆者が行った学士論文,修士論文,ならびに出版済みの文献にて用いら れている図表等を再利用したものを含む.本論文で再利用した出版済の文献のリ スト及び著作物利用許諾を以下に示す.

Keisuke Miyanabe, Tiago Gama Rodrigues, Yunseong Lee, Hiroki Nishiyama, and Nei Kato, “An Internet of Things Traffic-Based Power Saving Scheme in Cloud-Radio Access Network, ” IEEE Internet of Things Journal, In press. DOI:

10.1109/JIOT.2018.2878884.

Katsuya Suto, Keisuke Miyanabe, Hiroki Nishiyama, Nei Kato, Hirotaka Ujikawa, and Ken-Ichi Suzuki, “QoE-Guaranteed and Power-Efficient Network Operation for Cloud Radio Access Network with Power over Fiber,” IEEE Transactions on Computational Social Systems, vol. 2, no. 4, pp. 127-136, Feb. 2016.

Keisuke Miyanabe, Katsuya Suto, Zubair Md. Fadlullah, Hiroki Nishiyama, Nei Kato, Hirotaka Ujikawa, and Ken-Ichi Suzuki, “A cloud radio access network with power over fiber toward 5G networks: QoE-guaranteed design and opera-tion,” IEEE Wireless Communications, vol. 22, no. 4, pp. 58-64, Aug. 2015.

Keisuke Miyanabe, Hiroki Nishiyama, Nei Kato, Hirotaka Ujikawa, Ken-Ichi

83

著作物利用許諾

Suzuki, and Naoto Yoshimoto, “Synchronized Power Saving Mechanisms for Battery-Powered Mobile Terminals in Smart FiWi Networks, IEEE 80th Vehic-ular Technology Conference (VTC 2014 Fall), Vancouver, Canada, Sep. 2014.

著作物利用許諾

Title: An Internet of Things Traffic-Based Power Saving Scheme in Cloud-Radio Access Network Author: Keisuke Miyanabe

Publication:IEEE Internet of Things Journal (J-IOT)

Publisher: IEEE Date: Dec 31, 1969 Copyright © 1969, IEEE

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著作物利用許諾

Title: QoE-Guaranteed and Power-Efficient Network Operation for Cloud Radio Access Network With Power Over Fiber Author: Katsuya Suto; Keisuke [::Miyanabe::]; Hiroki Nishiyama; Nei Kato; Hirotaka Ujikawa; Ken-Ichi Suzuki Publication:Computational Social Systems,

IEEE Trans on (T-CSS) Publisher: IEEE

Date: Dec. 2015 Copyright © 2015, IEEE

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3) In placing the thesis on the author's university website, please display the following message in a prominent place on the website: In reference to IEEE copyrighted material which is used with permission in this thesis, the IEEE does not endorse any of [university/educational entity's name goes here]'s products or services. Internal or personal use of this material is permitted. If interested in reprinting/republishing IEEE copyrighted material for advertising or promotional purposes or for creating new collective works for resale or redistribution, please go to http://www.ieee.org/publications_standards/publications/rights/rights_link.html to learn how to obtain a License from RightsLink.

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著作物利用許諾

Title: A cloud radio access network with power over fiber toward 5G networks: QoE-guaranteed design and operation

Author: Keisuke [::Miyanabe::]; Katsuya Suto; Zubair Md. Fadlullah;

Hiroki Nishiyama; Nei Kato;

Hirotaka Ujikawa; Ken-ichi Suzuki

Publication:IEEE Wireless Communications Magazine

Publisher: IEEE Date: August 2015 Copyright © 2015, IEEE

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Requirements to be followed when using any portion (e.g., figure, graph, table, or textual material) of an IEEE copyrighted paper in a thesis:

1) In the case of textual material (e.g., using short quotes or referring to the work within these papers) users must give full credit to the original source (author, paper, publication) followed by the IEEE copyright line © 2011 IEEE.

2) In the case of illustrations or tabular material, we require that the copyright line © [Year of original publication] IEEE appear prominently with each reprinted figure and/or table.

3) If a substantial portion of the original paper is to be used, and if you are not the senior author, also obtain the senior author's approval.

Requirements to be followed when using an entire IEEE copyrighted paper in a thesis:

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著作物利用許諾

Title: Synchronized Power Saving Mechanisms for Battery-Powered Mobile Terminals in Smart FiWi Networks Conference

Proceedings: 2014 IEEE 80th Vehicular Technology Conference (VTC2014-Fall) Author: Keisuke [::Miyanabe::];

Hiroki Nishiyama; Nei Kato;

Hirotaka Ujikawa; Ken-Ichi Suzuki; Naoto Yoshimoto Publisher: IEEE

Date: 14-17 Sept. 2014 Copyright © 2014, IEEE

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1) In the case of textual material (e.g., using short quotes or referring to the work within these papers) users must give full credit to the original source (author, paper, publication) followed by the IEEE copyright line © 2011 IEEE.

2) In the case of illustrations or tabular material, we require that the copyright line © [Year of original publication] IEEE appear prominently with each reprinted figure and/or table.

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発表文献一覧

学術論文

1. Keisuke Miyanabe, Tiago Gama Rodrigues, Yunseong Lee, Hiroki Nishiyama, and Nei Kato, “An Internet of Things Traffic-Based Power Saving Scheme in Cloud-Radio Access Network, ” IEEE Internet of Things Journal, In press. DOI:

10.1109/JIOT.2018.2878884.

2. Katsuya Suto, Keisuke Miyanabe, Hiroki Nishiyama, Nei Kato, Hirotaka Ujikawa, and Ken-Ichi Suzuki, “QoE-Guaranteed and Power-Efficient Network Operation for Cloud Radio Access Network with Power over Fiber,” IEEE Transactions on Computational Social Systems, vol. 2, no. 4, pp. 127-136, Feb. 2016.

3. Keisuke Miyanabe, Katsuya Suto, Zubair Md. Fadlullah, Hiroki Nishiyama, Nei Kato, Hirotaka Ujikawa, and Ken-Ichi Suzuki, “A cloud radio access network with power over fiber toward 5G networks: QoE-guaranteed design and opera-tion,” IEEE Wireless Communications, vol. 22, no. 4, pp. 58-64, Aug. 2015.

国際学会(査読あり)

1. Keisuke Miyanabe, Hiroki Nishiyama, Nei Kato, Hirotaka Ujikawa, Ken-Ichi Suzuki, and Naoto Yoshimoto, “Synchronized Power Saving Mechanisms for Battery-Powered Mobile Terminals in Smart FiWi Networks, IEEE 80th Vehic-ular Technology Conference (VTC 2014 Fall), Vancouver, Canada, Sep. 2014.

89

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