可変容量・大容量光無線通信を支えるシンボルベースAES暗号技術の革新

项目来源

日本学术振兴会基金(JSPS)

项目主持人

小玉 崇宏

项目受资助机构

香川大学

立项年度

2025

立项时间

未公开

项目编号

25K07747

研究期限

未知 / 未知

项目级别

国家级

受资助金额

4680000.00日元

学科

通信工学関連

学科代码

未公开

基金类别

基盤研究(C)

关键词

暗号化 ; 光無線通信 ; 変調方式 ;

参与者

未公开

参与机构

香川大学,創造工学部

项目标书摘要:Outline of Research at the Start:本研究は、6G時代に求められる超カバレッジ拡張および大容量化に対応する光無線通信技術の確立を目指すものである。従来のビット領域AESをシンボル処理へ拡張し、省電力化、高秘匿化、大容量化を同時に実現する。国際連携を通じ、数理暗号技術の進展に貢献する。

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  • 1.Silicon photonic waveband routing architecture for scalable, flexible functional splits in 6G crosshaul networks

    • 关键词:
    • radio access networks (RAN) [2].
    • Kodama, Takahiro;Matsumoto, Ryosuke;Ikeda, Kazuhiro;Namiki, Shu
    • 《OPTICS EXPRESS》
    • 2026年
    • 34卷
    • 4期
    • 期刊

    To enable flexible functional splits (FFS) and highly efficient per-slice data transmission in future 6G networks, we introduce wavelength cross-connect (WXC) nodes capable of waveband (WB)-level routing within an integrated crosshaul architecture that unifies the fronthaul, midhaul, and backhaul segments. In this study, we develop a WB routing system that uses a silicon-photonics-based WXC node, characterized by compactness, low cost, and high reliability. We present a system architecture that supports FFS and compare the optical signal-to-noise ratio characteristics and scalability of three different WXC configurations. Furthermore, experimental validation of the proposed architecture confirms the effectiveness of add/drop and pass-through operations. The measured bit error rates complied with the forward error correction threshold, thereby verified the feasibility and robustness of our proposed WB routing using silicon photonic WXC nodes in next-generation crosshaul networks. (c) 2026 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement

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