自由空间光学在未来数据中心中的应用(会议介绍)

Zabih Ghassemlooy, H. L. Minh
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引用次数: 1

摘要

与数据中心(dc)中的增长能力、动态性和带宽需求相关的体系结构问题会影响连接性需求。直流越大,布线就越具有挑战性和复杂性。传统的方法仍然适用于较小的数据中心,在不同的数据中心网络层之间使用单独的长跳线。然而,在中型到大型数据中心中,需要大量的跳线,这些跳线不太坚固,并且可能会出现弯曲、破碎和可扩展性等问题。此外,向40和100 Gbit/s传输速率的发展为并行光学取代串行连接铺平了道路。因此,未来的方向将是利用光纤和自由空间光通信的双重优势,用于机架间和机架内链路,以解决未来数据中心面临的挑战,特别是它们的能源效率。这种混合光纤光纤无线架构可以提供前所未有的灵活性,从而提供许多功能,包括(i)相对容易地重新配置数据中心内的连接;(ii)大幅减少电缆互连的数目;(iii)作为网络运营商部署拓扑的推动者,否则由于大量布线复杂性而无法部署拓扑。本讲座概述了光无线通信(主要是FSO)及其在数据中心中的应用。FSO技术结构紧凑,功耗低,节能,它使用带有平面镜和凹面镜的镜像阵列来建立服务器,交换机,机架等之间的链接。
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Application of free-space optics in future data centers (Conference Presentation)
The architectural issues related to growth capability, dynamicity, and bandwidth requirements in data centres (DCs) impact the connectivity requirements. The larger the DC, the more challenging and complex the cabling becomes. The traditional approach, which is still the case for smaller DCs, uses long individual patch cords between different DC network tiers. However, in medium to large DCs, a large number of patch cords are required, which are less robust and create the prospect for problems resulting from bending, crushing and scalability. Additionally, the progression toward 40 and 100 Gbit/sec transmission rates is paving the way for parallel optics in place of serial connections. Therefore, the way forward would be to exploit the dual benefits of optical fibre and free space optical communications for both inter- and intra-rack links to address the challenges facing future DCs, in particular their energy efficiency. This hybrid optical fibre-optical wireless architecture can provide unprecedented degrees of flexibility thus offering a number features including (i) relatively easy reconfiguration of the connectivity within DC; (ii) drastically reducing the number of cable interconnections; (iii) acting as an enabler for network operators to deploy topologies that would otherwise remain impossible due to the substantial cabling complexity. This talk gives an overview of optical wireless communications (mostly FSO), which and its use in DCs. The FSO technology is compact, low power and energy efficient, where it uses mirror arrays with flat and concave mirrors to establish links between server, switches, rack, etc.
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Overloading 5G/IoT fronthaul networks (Conference Presentation) Application of free-space optics in future data centers (Conference Presentation) Front Matter: Volume 10945
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