2026/05/22 更新

写真a

セキ ユウヤ
関 勇弥
SEKI YUYA
担当
大学院情報学研究科 基幹情報学専攻 助教
工学部 情報工学科
職名
助教
所属
情報学研究院
所属キャンパス
中百舌鳥キャンパス

担当・職階

  • 大学院情報学研究科 基幹情報学専攻 

    助教  2026年04月 - 継続中

  • 工学部 情報工学科 

    助教  2026年04月 - 継続中

取得学位

  • 博士(情報学) ( 大阪公立大学 )

研究分野

  • 情報通信 / 情報ネットワーク  / 光通信ネットワーク

研究キーワード

  • 空間分割多重型エラスティック光網 (SDM-EON)

  • マルチコアファイバ

  • コア間クロストーク

  • 非線形シャノン限界

所属学協会

  • IEEE, Kansai Section

    2024年01月 - 継続中

  • 電子情報通信学会

    2020年12月 - 継続中

論文

  • Network-oriented metric for core pitch optimization in bidirectional multi-core fiber networks 査読

    Yuya Seki, YosukeTanigawa, Yusuke Hirota, and Hideki Tode

    Journal of Optical Communications and Networking   18 ( 5 )   454 - 469   2026年04月( ISSN:19430620 ( eISSN:1943-0639

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    担当区分:筆頭著者   掲載種別:研究論文(学術雑誌)   国際・国内誌:国際誌  

    This study presents a framework for optimizing the core pitch of multi-core fibers (MCFs) in bidirectional MCF-based space-division multiplexing elastic optical networks (SDM-EONs). Existing studies have predominantly adopted hexagonal-lattice core layouts for the MCF structure and have overlooked indirect inter-core crosstalk (IC-XT), which can be the dominant impairment in bidirectional MCF-based SDM-EONs. In this study, existing IC-XT calculation models are re-evaluated, demonstrating that square-lattice-structure (SLS) MCFs are preferable for bidirectional MCF-based SDM-EONs, and an “XT-free condition” is derived to determine the optimal core pitch. Numerical simulations on three network topologies (EURO28, Kanto11, and TMN12) under multiple resource-allocation strategies reveal that the blocking probability is minimized whenever the XT-free condition is satisfied, independent of topology size or resource-allocation policy. For standard-cladding 4-core SLS MCFs, optimal core pitches (34.4, 34.0, and 30.7 µm) yield a minimum lightpath blocking probability, acceptable IC-XT, and ITU-T recommendation-compliant splicing loss. The proposed framework provides a general method for MCF design and offers valuable insights into realizing high-core-count MCF-based SDM-EONs. Beyond immediate design implications, the proposed framework may serve as a foundation for redefining benchmarking standards in resource-allocation models and guiding the future standardization of MCF designs.

    DOI: 10.1364/JOCN.579445

    その他URL: https://ieeexplore.ieee.org/document/11489297

  • Data transfer method combining erasure coding and cumulative decoding-status feedback: demonstration on an optical packet-switching network testbed 査読

    Maho Ono, Yuusuke Hashimoto, Yuya Seki, Yosuke Tanigawa, Yusuke Hirota, and Hideki Tode

    Journal of Optical Communications and Networking   17 ( 5 )   412 - 424   2025年04月( ISSN:19430620 ( eISSN:1943-0639

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    掲載種別:研究論文(学術雑誌)   国際・国内誌:国際誌  

    Optical packet-switching (OPS) networks remain an emerging technology, as exemplified by the feasibility challenges of optical RAM. Nevertheless, OPS networks possess significant potential advantages, including a high data transfer rate and low power consumption due to the elimination of optical–electrical–optical conversion, compared to conventional electronic packet-switching networks, flexibility in handling traffic fluctuations due to packet-switching principles, and low latency as they do not require overhead for communication path establishment. However, effective data recovery from non-negligible packet loss due to optical packet collisions remains a critical challenge in OPS networks. Packet-level forward error correction (FEC) is regarded as an effective data recovery method for lossy networks, such as OPS ones, because it does not rely on packet-by-packet feedback, which could be lost, and avoids the delays associated with feedback and retransmission. On the other hand, FEC requires the transmission of additional packets beyond the original data, increasing the computational load associated with encoding and decoding. In this paper, we propose a data transfer method based on erasure coding, which is useful not only in OPS networks but also in other network environments suffering from severe packet loss due to collisions or signal degradation, such as optical circuit switching networks and wireless networks. This method improves effective data transfer throughput by limiting the number of transmitted packets and reducing the computational overhead of the encoding and decoding processes. This improvement is achieved through the appropriate configuration of the distribution of XOR operation target packets that constitute XOR packets, thereby restricting the number of symbols encoded in each XOR operation and introducing cumulative feedback of which symbols were already recovered at the receiver. To validate the proposed method, we conducted not only simulation evaluations but also what we believe to be the world’s first packet transmission demonstration experiment using packet-level erasure coding over an actual OPS network testbed, taking actual computational overhead into account. The experimental results show that, in high transmission rate environments, the proposed method achieves up to a 188.7% increase in effective data transfer throughput compared to the benchmark LT-Codes-based packet-level FEC transmission method while reducing the processing time on the sender side by up to 15.6% and on the receiver side by up to 39.4%. In addition, the number of packets required for data decoding can be reduced by up to 63.3%.

    DOI: 10.1364/JOCN.550555

    その他URL: https://ieeexplore.ieee.org/document/10976339

  • Layout design of densest weakly coupled multi-core fibers to minimize the network blocking rate 査読

    Yuya Seki, Yosuke Tanigawa, Yusuke Hirota, and Hideki Tode

    Journal of Optical Communications and Networking   16 ( 12 )   H40 - H52   2024年11月( ISSN:19430620 ( eISSN:1943-0639

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    担当区分:筆頭著者   掲載種別:研究論文(学術雑誌)   国際・国内誌:国際誌  

    The suppression of inter-core crosstalk (IC-XT) that affects each lightpath is crucial for resource allocation in space-division multiplexing elastic optical networks (SDM-EONs) with multi-core fibers (MCFs). Resource allocation approaches that limit the simultaneous use of adjacent cores in the same frequency band to the MCFs composing each lightpath have been widely adopted to suppress IC-XT. However, in principle, such methods are inefficient because they cannot fully utilize all cores. This study examines the core density from the perspective of the core layout in weakly coupled MCFs and the IC-XT suppression requirement. The densest MCF layout maximizes the network capacity while restricting the amount of IC-XT within the tolerance threshold for each lightpath. Specifically, we propose an XT-free condition, maintaining the IC-XT to each lightpath within the acceptable tolerance level. In addition, we evaluated numerous MCFs that satisfy or do not satisfy the XT-free condition with various network topologies and cladding diameters. This evaluation also validates the IC-XT reduction performance of the proposed framework compared with that of the conventional resource-allocation approach. Here, we incorporate our indirect IC-XT calculation method that affects lightpaths from other cores via its nearest cores, which was overlooked in the resource allocation problem. Based on these comprehensive examinations, we propose a method to determine the densest core layout for a given network topology and route and modulation format selection algorithm.

    DOI: 10.1364/JOCN.531706

    その他URL: https://ieeexplore.ieee.org/document/10740958

  • Proactive modulation format allocation method with selective downgrading to enhance inter-core crosstalk tolerance in SDM-EONs 査読

    Kotaro Kawaguchi, Yuya Seki, Yosuke Tanigawa, Yusuke Hirota, and Hideki Tode

    Proceedings of the 15th International Conference on Network of the Future Nof 2024   159 - 163   2024年10月( ISBN:9798350377767

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    掲載種別:研究論文(国際会議プロシーディングス)   国際・国内誌:国際誌  

    DOI: 10.1109/NoF62948.2024.10741410

  • Which multi-core fiber layout is best for highest capacity network design? 査読

    Yuya Seki, Yosuke Tanigawa, Yusuke Hirota, and Hideki Tode

    49th European Conference on Optical Communications (ECOC 2023)   365 - 368   2023年10月( ISBN:978-1-83953-926-8

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    担当区分:筆頭著者   掲載種別:研究論文(国際会議プロシーディングス)   共著区分:共著   国際・国内誌:国際誌  

    DOI: 10.1049/icp.2023.2081

  • Is indirect crosstalk negligible in resource allocation on space-division multiplexing elastic optical networks with multi-core fibers? 査読

    Yuya Seki, Yosuke Tanigawa, Yusuke Hirota, and Hideki Tode

    2023 International Conference on Photonics in Switching and Computing (PSC)   1 - 3   2023年09月( ISSN:2166-8884 ( ISBN:979-8-3503-2371-9 ( eISSN:2166-8892

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    担当区分:筆頭著者   掲載種別:研究論文(国際会議プロシーディングス)   共著区分:共著   国際・国内誌:国際誌  

    DOI: 10.1109/PSC57974.2023.10297149

  • A data transfer method combining erasure-coding with cumulative acknowledgment for lossy optical packet switching networks 査読

    Maho Ono, Yuya Seki, Yuusuke Hashimoto, Yosuke Tanigawa, Yusuke Hirota, and Hideki Tode

    2023 IEEE 20th Consumer Communications & Networking Conference (CCNC)   670 - 671   2023年01月( ISSN:2331-9852 ( ISBN:978-1-6654-9735-0 ( eISSN:2331-9860

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    掲載種別:研究論文(国際会議プロシーディングス)   共著区分:共著   国際・国内誌:国際誌  

    DOI: 10.1109/CCNC51644.2023.10060721

  • Core and spectrum allocation to achieve graceful degradation of inter-core crosstalk with generalized hierarchical core prioritization on space-division multiplexing elastic optical networks 査読

    Yuya Seki, Yosuke Tanigawa, Yusuke Hirota, and Hideki Tode

    Journal of Optical Communications and Networking   15 ( 1 )   43 - 56   2022年12月( ISSN:1943-0620 ( eISSN:1943-0639

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    担当区分:筆頭著者   掲載種別:研究論文(学術雑誌)   国際・国内誌:国際誌  

    DOI: 10.1364/JOCN.472418

  • Experimental demonstration of dynamic service function chaining based on server load information in optical packet switching networks 査読

    Yuusuke Hashimoto, Yuya Seki, Kosuke Kubota, Akihiro Fujimoto, Yosuke Tanigawa, Yusuke Hirota, and Hideki Tode

    2022 23rd Asia-Pacific Network Operations and Management Symposium (APNOMS)   1 - 4   2022年09月( ISBN:978-1-6654-9301-7

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    掲載種別:研究論文(国際会議プロシーディングス)   共著区分:共著   国際・国内誌:国際誌  

    DOI: 10.23919/APNOMS56106.2022.9919906

  • Route and mode selection considering mode dependence of inter-core crosstalk using predefined core prioritization on SDM-EONs 査読 OA

    Yuya Seki, Yosuke Tanigawa, Yusuke Hirota, and Hideki Tode

    IEICE Communications Express   11 ( 9 )   583 - 588   2022年09月( ISSN:2187-0136 ( eISSN:2187-0136

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    担当区分:筆頭著者   掲載種別:研究論文(学術雑誌)   共著区分:共著   国際・国内誌:国際誌  

    DOI: doi.org/10.1587/comex.2022XBL0089

  • Spectrum allocation exploiting different core selection patterns for graceful degradation of inter-core crosstalk in space-division multiplexing elastic optical networks 査読

    Yuya Seki, Yosuke Tanigawa, Yusuke Hirota, and Hideki Tode

    Photonics in Switching and Computing 2021   M3C.4   2021年09月( ISBN:978-1-943580-99-6

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    担当区分:筆頭著者   掲載種別:研究論文(国際会議プロシーディングス)   共著区分:共著   国際・国内誌:国際誌  

    DOI: 10.1364/PSC.2021.M3C.4

  • Functional verification of least congested routing for dynamic multicasting in optical packet switching networks 査読

    Yuya Seki, Yuusuke Hashimoto, Kosuke Kubota, Akihiro Fujimoto, Yosuke Tanigawa, Yusuke Hirota, and Hideki Tode

    International Conference on Emerging Technologies for Communications   63   C3-2   2020年12月( eISSN:2188-5079

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    担当区分:筆頭著者   掲載種別:研究論文(国際会議プロシーディングス)   共著区分:共著   国際・国内誌:国際誌  

    DOI: 10.34385/proc.63.c3-2

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講演・口頭発表等

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科研費獲得実績

  • 空間分割多重型エラスティック光網の大容量化・稠密化を実現する網構成・資源割当法

    特別研究員奨励費  2024年04月

学術貢献活動

  • Review activity for Journal of optical communications and networking

    役割:査読

    2026年04月

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    種別:査読等 

  • Review activity for Journal of optical communications and networking

    役割:査読

    2026年03月

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    種別:査読等 

  • Review activity for Journal of optical communications and networking

    役割:査読

    2026年03月

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    種別:査読等 

    (Rereview)

  • Review activity for Journal of optical communications and networking

    役割:査読

    2026年01月

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    種別:査読等 

  • Review activity for Journal of optical communications and networking

    役割:査読

    2025年12月

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    種別:査読等 

  • Review activity for Journal of the Optical Society of America B

    役割:査読

    2025年11月

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    種別:査読等 

  • Review activity for Journal of optical communications and networking

    役割:査読

    2025年05月

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    種別:査読等 

  • Review activity for Journal of optical communications and networking

    役割:査読

    2024年09月

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    種別:査読等 

    (Rereview)

  • Review activity for Journal of optical communications and networking

    役割:査読

    2024年07月

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    種別:査読等 

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