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首页> 外文期刊>Journal of Control Theory and Applications >Binary ABR flow control over ATM networks with uncertainty using discrete-time variable structure controller
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Binary ABR flow control over ATM networks with uncertainty using discrete-time variable structure controller

机译:使用离散时间可变结构控制器的具有不确定性的ATM网络上的二进制ABR流量控制

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摘要

A binary available bit rate (ABR) scheme based on discrete-time variable structure control (DVSC) theory is proposed to solve the problem of asynchronous transfer mode (ATM) networks congestion in this paper. A discrete-time system model with uncertainty is introduced to depict the time-varying ATM networks. Based on the system model, an asymptotically stable sliding surface is designed by linear matrix inequality (LMI). In addition, a novel discrete-time reaching law that can obviously reduce chatter is also put forward. The proposed discrete-time variable structure controller can effectively constrain the oscillation of allowed cell rate (ACR) and the queue length in a router. Moreover, the controller is self-adaptive against the uncertainty in the system. Simulations are done in different scenarios. The results demonstrate that the controller has better stability and robustness than the traditional binary flow controller, so it is good for adequately exerting the simplicity of binary flow control mechanisms.
机译:为了解决异步传输模式(ATM)网络拥塞的问题,提出了一种基于离散时间可变结构控制(DVSC)理论的二进制可用比特率(ABR)方案。引入具有不确定性的离散时间系统模型来描述时变ATM网络。在系统模型的基础上,利用线性矩阵不等式(LMI)设计了渐近稳定的滑动面。此外,还提出了一种新的离散时间到达定律,该定律可以明显减少抖动。所提出的离散时间可变结构控制器可以有效地限制路由器中允许信元速率(ACR)和队列长度的振荡。而且,控制器对系统的不确定性具有自适应性。模拟是在不同的情况下完成的。结果表明,该控制器具有比传统二元流量控制器更好的稳定性和鲁棒性,因此对于充分发挥二元流量控制机制的简单性是有好处的。

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