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Scheduling, Bandwidth Allocation and Performance Evaluation of DOCSIS Protocol for Cable Networks

机译:电缆网络DOCSIS协议的调度,带宽分配和性能评估

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The Data Over Cable Service Interface Specifications (DOCSIS) of the Multimedia Cable Network System (MCNS) organization intends to support IP traffics over HFC (hybrid fiber/coax) networks with significantly higher data rates than analog modems and Integrated Service Digital Network (ISDN) links. The availability of high speed-access enables the delivery of high quality audio, video and interactive services. To support quality-of-service (QoS) for such applications, it is important for HFC network to provide effective medium access and traffic scheduling mechanisms. In this work, a novel scheduling mechanism and a new bandwidth allocation scheme are proposed to support multimedia traffic over DOCSIS (Data Over Cable System Interface Specification)-compliant cable networks. The primary goal of our research is to improve the transmission of real-time variable bit rate (VBR) traffic in terms of throughput and delay under DOCSIS. To support integrated services, we also consider the transmission of constant bit rate (CBR) traffic and non-real-time traffic in the simulation. To demonstrate the performance, we compare the result of the proposed scheme with that of a simple multiple priority scheme. It is shown via simulation that the proposed method provides a significant amount of improvement over existing QoS scheduling services in DOCSIS. Finally, a discrete-time Markov model is used to analyze the performance of the voice traffic over DOCSIS-supported cable networks.
机译:多媒体电缆网络系统(MCN)组织的电缆服务界面规范(DOCSIS)的数据打算支持IP流量超过HFC(混合纤维/同轴)网络,其数据率明显高于模拟调制解调器和集成服务数字网络(ISDN)链接。高速访问的可用性可实现高质量的音频,视频和交互式服务。为了支持此类应用程序的服务质量(QoS),对于HFC网络来提供有效的媒体访问和流量调度机制非常重要。在这项工作中,提出了一种新的调度机制和新的带宽分配方案,以支持DOCSIS的多媒体流量(通过电缆系统接口规范的数据) - 替换电缆网络。我们研究的主要目标是在DOCSIS下提高实时可变比特率(VBR)流量的传输。为了支持集成服务,我们还考虑在模拟中传输恒定比特率(CBR)流量和非实时流量。为了演示性能,我们将所提出的方案的结果与简单的多重优先级方案进行比较。通过模拟显示所提出的方法在DOCSIS中提供了对现有QoS调度服务的大量改进。最后,使用离散时间马尔可夫模型用于分析DOCSIS支持的电缆网络的语音流量的性能。

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