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OPTIMIZING TRANSMISSION PARAMETERS IN DOCSIS 2.0 WITH A DIGITAL UPSTREAM CHANNEL ANALYZER (DUCA)

机译:使用数字上游通道分析器(DUCA)优化DOCSIS 2.0中的传输参数

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摘要

A new generation of data over cable service interface specification (DOCSIS) 2.0 cable modem and cable modem termination systems (CMTS) offer cable operators the promise of increased upstream capacity and greater robustness to common channel impairments such as ingress and impulse noise. It is already clear that the many tools in the new DOCSIS 2.0 standard that allow for efficient use of the upstream spectrum and mitigation of impairments also make the task of optimizing transmission parameters increasingly difficult. In fact, the performance of a DOCSIS 2.0 based CMTS will greatly depend on its ability to dynamically assess upstream channel conditions and set the transmission parameters accordingly. In this paper we present digital upstream channel analyzer (DUCA) - a set of functions running on a DOCSIS 2.0 CMTS that implements algorithms for optimal channel allocation and selection of transmission parameters. DUCA analyzes the entire upstream spectrum, measures and records noise and impairment conditions, and sets the parameters of the various noise mitigating tools in DOCSIS 2.0 optimally for maximum upstream throughput. We will show how proper selection of parameters, using DUCA, ensures that operators will benefit significantly from the new improved upstream PHY.
机译:新一代的电缆数据服务接口规范(DOCSIS)2.0电缆调制解调器和电缆调制解调器终端系统(CMTS)数据为电缆运营商带来了增加上行容量和对常见信道损害(例如进入和脉冲噪声)的更高鲁棒性的希望。已经很清楚,新的DOCSIS 2.0标准中的许多工具都可以有效利用上行频谱并减轻损害,这也使得优化传输参数的任务越来越困难。实际上,基于DOCSIS 2.0的CMTS的性能将极大地取决于其动态评估上行信道状况并相应设置传输参数的能力。在本文中,我们介绍了数字上行信道分析仪(DUCA)-在DOCSIS 2.0 CMTS上运行的一组功能,这些功能实现了用于优化信道分配和选择传输参数的算法。 DUCA分析整个上游频谱,测量并记录噪声和损伤情况,并在DOCSIS 2.0中最佳设置各种噪声消除工具的参数,以实现最大的上游吞吐量。我们将展示如何使用DUCA正确选择参数,以确保运营商将从新改进的上游PHY中显着受益。

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