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The effect of uncertain time-variant delays in ATM networks with explicit rate feedback: a control theoretic approach

机译:具有明确速率反馈的ATM网络中不确定时变时延的影响:一种控制理论方法

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A new, more realistic model for the available bit rate traffic class in ATM network congestion control with explicit rate feedback is introduced and analyzed. This model is based on recent results by M.M. Ekanayake ("Robust stability of discrete time nonlinear systems", Ph.D. dissertation, Univ. Miami, Coral Gables, FL, 1999) regarding discrete time models for time-variant delays. The discrete time model takes into account the effect of time-variant buffer occupancy levels of ATM switches, thus treating the case of time-variant delays between a single congested node and the connected sources. For highly dynamic situations, such a model is crucial for a valid analysis of the resulting feedback system. The new model also handles the effects of the mismatch between the resource management cell rates and the variable bit rate controller sampling rate as well as buffer and rate nonlinearities. A brief stability study shows that an equilibrium in the buffer occupancy is impossible to achieve in the presence of time-variant forward path delays. Stability conditions for the case of time-variant delays in the return path are presented. Finally, illustrative examples are provided.
机译:引入并分析了具有显式速率反馈的ATM网络拥塞控制中可用比特率业务类别的新的,更现实的模型。该模型基于M.M.关于时变时滞的离散时间模型的Ekanayake(“离散时间非线性系统的鲁棒稳定性”,博士学位论文,迈阿密大学,Coral Gables,FL,1999)。离散时间模型考虑了ATM交换机的时变缓冲区占用水平的影响,因此处理了单个拥塞节点与连接的源之间的时变延迟情况。对于高度动态的情况,这种模型对于有效分析所得反馈系统至关重要。新模型还处理资源管理信元速率与可变位速率控制器采样速率以及缓冲区和速率非线性之间的不匹配影响。简短的稳定性研究表明,在存在时变前向路径延迟的情况下,不可能达到缓冲区占用率的平衡。给出了返回路径中时变延迟情况下的稳定性条件。最后,提供了说明性示例。

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