Silicon Photonics Enabling 5G Optical Networks over PON Infrastructures

L. Rusch, X. Guan, W. Shi
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引用次数: 1

Abstract

Achieving the great leap forward in capacity targeted by 5G requires radio access networks to provide connectivity across multiple antenna sites. That connectivity relies on optical fronthaul with sufficient capacity. We discuss the use of analog radio over fiber signals in an optical access network equipped with a smart edge. We can minimize interference and maximize throughput at the edge of the network by collocating platforms that coordinate wireless transmissions. Silicon photonics provides a hardware platform well adapted to support optical fronthaul to increase capacity via radio over fiber, while keeping optical transceiver costs low. We highlight several issues in adopting silicon photonics and cite recent demonstrations in this area.
硅光子学在PON基础设施上实现5G光网络
实现5G目标容量的巨大飞跃需要无线接入网提供跨多个天线站点的连接。这种连接依赖于具有足够容量的光前传。我们讨论了在配备智能边缘的光接入网中使用光纤信号上的模拟无线电。通过配置协调无线传输的平台,我们可以将网络边缘的干扰最小化,吞吐量最大化。硅光子学提供了一个硬件平台,可以很好地支持光前传,通过光纤无线电增加容量,同时保持光收发器的低成本。我们强调了采用硅光子学的几个问题,并引用了该领域最近的演示。
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