信息通信技术与政策

信息通信技术与政策

信息通信技术与政策 ›› 2026, Vol. 52 ›› Issue (2): 62-68.doi: 10.12267/j.issn.2096-5931.2026.02.009

专题:算力互联网技术发展与产业应用 上一篇    下一篇

光网算用一体化调度平台架构与优化*

Architecture and optimization research of optical-network-computing-application integrated scheduling platform

张越, 唐静, 马小婷   

  1. 中国电信股份有限公司研究院,北京 102209
  • 收稿日期:2026-01-05 出版日期:2026-02-25 发布日期:2026-03-06
  • 通讯作者: 马小婷, 中国电信股份有限公司研究院网络技术研究所工程师,博士,主要研究方向为未来网络、算力网络等
  • 作者简介:
    张越, 中国电信股份有限公司研究院网络技术研究所未来网络研究中心工程师,主要研究方向为算力网络、智算网络、新型数据中心网络等
    唐静, 中国电信股份有限公司研究院网络技术研究所未来网络研究中心总监,主要研究方向为算力网络、确定性网络、智算网络、新型数据中心网络等

ZHANG Yue, TANG Jing, MA Xiaoting   

  1. China Telecom Corporation Limited Research Institute,Beijing 102209,China
  • Received:2026-01-05 Online:2026-02-25 Published:2026-03-06

摘要:

随着人工智能(Artificial Intelligence,AI)大模型的快速迭代与广域智算网络的演进,传统单一算光协同架构已无法适配大模型训练与推理对“光-网-算-用”全链路资源协同的严苛需求。立足这一核心痛点,围绕“以光补算”发展思路及实现路径展开研究,设计基于光电路交换的光网算用一体化调度平台方案,构建“适配层-感知层-控制层-服务层-全链仿真”五层一体化架构,形成“感知-决策-执行”全流程闭环调度机制,可有效支撑多样化AI业务的差异化需求,助力构建高效可靠的广域智算网络生态。

关键词: 光网算用一体化, 大模型调度, 算网协同, 全链仿真, 广域智算

Abstract:

With the rapid iteration of Artificial Intelligence (AI) large models and the evolution of wide-area intelligent computing networks,the traditional single computing-optical synergy architecture can no longer meet the stringent requirements of large model training and inference for full-link resource coordination across the “optical-network-computing-application” continuum. Focusing on this core challenge,this paper conducts research on the key technologies and implementation approaches of optical-augmented computing,and designs an integrated optical-network-computing-application scheduling platform scheme based on Optical Circuit Switching (OCS). A five-layer integrated architecture consisting of the adaptation layer,perception layer,control layer,service layer,and full-chain simulation layer is constructed,forming a closed-loop scheduling mechanism of “perception-decision-execution”. This scheme can effectively support the differentiated demands of diverse AI services and facilitate the construction of an efficient and reliable wide-area intelligent computing network ecosystem.

Key words: optical-network-computing-application integration, large model scheduling, computing-network collaboration, full-chain simulation, wide-area intelligent computing

中图分类号: