Capacity-efficient and uncertainty-resilient backbone network planning with hose

S. Ahuja, Varun Gupta, V. Dangui, Soshant Bali, A. Gopalan, Hao Zhong, Petr Lapukhov, Yiting Xia, Ying Zhang
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引用次数: 11

Abstract

This paper presents Facebook's design and operational experience of a Hose-based backbone network planning system. This initial adoption of the Hose model in network planning is driven by the capacity and demand uncertainty pressure of backbone expansion. Since the Hose model abstracts the aggregated traffic demand per site, peak traffic flows at different times can be multiplexed to save capacity and buffer traffic spikes. Our core design involves heuristic algorithms to select Hose-compliant traffic matrices and cross-layer optimization between the optical and IP networks. We evaluate the system performance in production and share insights from years of production experience. Hose-based network planning can save 17.4% capacity and drops 75% less traffic under fiber cuts. As the first study of Hose in network planning, our work has the potential to inspire follow-up research.
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带软管的容量效率和不确定性弹性骨干网规划
本文介绍了Facebook基于软管的骨干网规划系统的设计和运行经验。由于主干网扩容带来的容量和需求的不确定性压力,网络规划中最初采用Hose模型。由于Hose模型抽象了每个站点的聚合流量需求,因此可以将不同时间的高峰流量复用以节省容量并缓冲流量峰值。我们的核心设计包括启发式算法来选择软管兼容的流量矩阵以及光网络和IP网络之间的跨层优化。我们评估系统在生产中的性能,并分享多年生产经验的见解。基于软管的网络规划可以节省17.4%的容量,在光纤切断的情况下减少75%的流量。作为网络规划中软管的首次研究,我们的工作具有启发后续研究的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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