Low latency techniques for mobile backhaul over DOCSIS

John T. Chapman, Jennifer Andreoli-Fang, Michel Chauvin, E. Reyes, Zheng Lu, Dantong Liu, Joey Padden, Alon Bernstein
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引用次数: 6

Abstract

The mobile network operators (MNOs) are looking into economically viable backhaul solutions as alternatives to fiber, specifically the hybrid fiber coaxial networks (HFC). When the latencies from both the wireless and the HFC networks are added together, the result is a noticeable end-to-end system latency, particularly under network congestion. In order to decrease total system latency, we proposed a method to improve upstream user-to-mobile core latency by coordinating the LTE and HFC scheduling in previous papers. In this paper, we implement and optimize the proposed method on a custom LTE and DOCSIS end-to-end system testbed. The testbed uses the OpenAirInterface (OAI) platform for the LTE network, along with Cisco's broadband router cBR-8 that is currently deployed in the HFC networks around the world. Our results show a backhaul latency improvement under all traffic load conditions.
基于DOCSIS的移动回程低延迟技术
移动网络运营商(mno)正在寻找经济上可行的回程解决方案,作为光纤的替代品,特别是混合光纤同轴网络(HFC)。当来自无线和HFC网络的延迟加在一起时,结果是一个明显的端到端系统延迟,特别是在网络拥塞的情况下。为了降低系统总延迟,我们在之前的论文中提出了一种通过协调LTE和HFC调度来提高上游用户到移动核心延迟的方法。在本文中,我们在一个定制的LTE和DOCSIS端到端系统测试台上实现并优化了所提出的方法。该测试平台使用OpenAirInterface (OAI) LTE网络平台,以及目前部署在全球HFC网络中的思科宽带路由器cBR-8。我们的结果表明,在所有流量负载条件下,回程延迟都有所改善。
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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