基于OSU技术的政企OTN网络架构与业务模型研究OA
Research on the Architecture and Business Model of Government Enterprise OTN Network based on OSU Technology
[目的]随着同步数字体系(SDH)技术逐步退网及新兴产业的发展,传送网亟需新的承载技术以匹配政企专线和算力网络的需求.光业务单元(OSU)技术通过灵活映射,为政企业务提供了高效的承载方案.[方法]文章首先分析了 OSU 技术的优势,提出了 OSU 业务模型与现网落地方案,并规划了 OSU 目标网络架构,解决了当前光传送网络(OTN)在小颗粒业务承载中的不足,提升了网络的灵活性和效率;其次通过对比分析 OSU 与现有 SDH、多协议标签交换-传送子集(MPLS-TP)技术相比的优势,探讨了 OSU 的技术特点、设备演进方案及网络架构;最后结合实验室测试与现网验证,评估 OSU 技术在不同应用场景下的性能,重点关注时延优化、带宽利用率和灵活调整能力等关键指标.[结果]实验结果表明,OSU 技术在时延优化和小颗粒业务承载方面表现突出.其灵活映射机制能够显著减少带宽浪费、提升资源利用率、简化映射层级、降低传输时延并且增强硬管道连接能力,使 100 Gbit/s 端口可承载多达 4 000 条专线,提升了承载能力.此外,OSU 设备交叉容量达12.8 Tbit/s,增强了网络的灵活性和扩展性.[结论]OSU 技术为突破当前政企 OTN 中小颗粒高品质专线业务承载的瓶颈提供了一条有效途径.通过合理规划和部署 OSU 设备能有效升级现有网络,满足政企用户对灵活带宽、低时延和高可靠性的需求.OSU 技术在未来政企网络中的应用前景广阔,文章的研究为其推广和应用提供了重要的理论支持和实践指导.
[Objective]With the gradual withdrawal of Synchronous Digital Hierarchy(SDH)technology and the development of emerging industries,the transmission network urgently needs new carrier technologies to support the needs of government enter-prise dedicated lines and computing power networks.The Optical Service Unit(OSU)technology provides efficient carrying solu-tions for government and enterprise businesses through flexible mapping.This article analyzes the advantages of OSU technology,proposes an OSU business model and current network implementation plan,and outlines a target network architecture.These ef-forts aim to address the shortcomings of current Optical Transport Network(OTN)networks in carrying small particle services,while enhancing the network flexibility and efficiency.[Methods]By comparing and analyzing the advantages of OSU with exist-ing SDH and Multiprotocol Label Switching-Transport Profile(MPLS-TP)technologies,this paper explores the technical char-acteristics,equipment evolution schemes,and network architecture of OSU.By combining laboratory testing and current network validation,we evaluate the performance of OSU technology in different application scenarios,with a focus on key indicators such as latency optimization,bandwidth utilization,and flexible adjustment capability.[Results]The experimental results show that the OSU technology performs well in delay optimization and small particle service carrying.Its flexible mapping mechanism can significantly reduce bandwidth waste,improve resource utilization,simplify mapping hierarchy,reduce transmission latency,and enhance hard pipeline connectivity.As a result,100 Gbit/s ports can support up to 4 000 dedicated lines,substantially improving carrying capacity.In addition,the cross capacity of OSU devices reaches 12.8 Tbit/s,enhancing the flexibility and scalability of the network.[Conclusion]The OSU technology provides an effective way to solve the bottleneck of carrying high-quality dedi-cated line services for small particles in current government enterprise OTN networks.By planning and deploying OSU devices reasonably,existing networks can be effectively upgraded to meet the needs of government and enterprise users for flexible band-width,low latency,and high reliability.The application prospects of OSU technology in future government enterprise networks are broad.This study provides important theoretical support and practical guidance for its promotion and application.
晁夫君;荆瑞泉
中国电信山东分公司,济南 250101中国电信股份有限公司研究院,北京 102209
信息技术与安全科学
光业务单元系统架构业务模型目标网络架构业务承载方案
OSUsystem architecturebusiness modeltarget network architecturebusiness bearer solution
《光通信研究》 2026 (3)
78-85,8
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