Transport of MPEG video with statistical loss and delay guarantees in ATM networks using a histogram-based source model

Seok-Kyu Kweon, K. Shin
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引用次数: 3

Abstract

Unlike deterministic real time communication in which excessive resources may be required for absolute performance guarantees, statistical real time communication seeks to achieve both probabilistic performance guarantees and efficient resource sharing. We propose a framework for statistical real time communication in ATM networks that provides delay guaranteed transport of MPEG coded video traffic with a statistically guaranteed cell loss ratio. In order to provide delay guaranteed communication service, we employ a modified version of Traffic-Controlled Rate-Monotonic Priority Scheduling (TCRM). We multiplex a set of statistical real time channels that share: (i) similar traffic characteristics into a common channel called a macro channel, and (ii) the resources of the macro channel. Individual statistical real time channels are given timeliness and probabilistic cell loss guarantees. A macro channel is serviced by the modified TCRM which improves link utilization and makes channel management simpler. Using the analysis of an M/D/1/N queueing system, we propose a procedure for determining the transmission capacity of a macro channel needed to statistically guarantee a cell loss ratio bound. Simulation results have shown our framework to work well as compared to the other approaches. The overall cell loss ratios for multi hop statistical real time channels are shown to be smaller than the pre-determined bounds.
使用基于直方图的源模型在ATM网络中传输具有统计丢失和延迟保证的MPEG视频
与确定性实时通信不同,确定性实时通信可能需要过多的资源来保证绝对的性能,统计实时通信寻求实现概率性能保证和有效的资源共享。我们提出了一个ATM网络中的统计实时通信框架,该框架提供了MPEG编码视频流量的延迟保证传输和统计保证的小区损失率。为了提供保证延迟的通信服务,我们采用了一种改进版的流量控制速率-单调优先级调度(TCRM)。我们将一组统计实时信道复用,这些信道共享:(i)相似的流量特征进入一个称为宏信道的公共信道,以及(ii)宏信道的资源。每个统计实时信道都具有时效性和概率损失保证。宏通道由修改后的TCRM提供服务,这提高了链路利用率,简化了通道管理。通过对M/D/1/N排队系统的分析,我们提出了一种确定宏信道传输容量的方法,以保证统计上的小区损失率界限。仿真结果表明,与其他方法相比,我们的框架工作良好。多跳统计实时信道的总小区损失率小于预先确定的界限。
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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