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Discrete-Time Sliding-Mode Congestion Control in Multisource Communication Networks With Time-Varying Delay

机译:具有时变时滞的多源通信网络中的离散时间滑模拥塞控制

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This paper addresses the problem of congestion control in communication networks from a control-theoretic perspective. In this type of complex, dynamical systems, the primary obstacle in the design of efficient control is the delay in the feedback loop which may be subject to significant fluctuations during the control process. This paper presents a new approach to solving the congestion problem in multisource networks, in which each flow is characterized by different and time-varying delay, with the application of discrete-time sliding-mode control. The proposed controller, operating at a network node, guarantees that in the considered networks the packet losses are eliminated and all of the available bandwidth at the node output interface is used for the data transfer. The controller is demonstrated to be robust with respect to the abrupt and unpredictable changes of networking conditions, such as delay and bandwidth variations, which need not be correlated with each other. The controller parameters are selected by minimizing a quadratic cost functional. A closed-form solution of the optimization problem allows for a straightforward and operationally efficient implementation of the proposed congestion control strategy in real network nodes.
机译:本文从控制理论的角度解决了通信网络中的拥塞控制问题。在这种复杂的动态系统中,有效控制设计的主要障碍是反馈回路中的延迟,该延迟可能会在控制过程中发生重大波动。本文提出了一种解决多源网络中拥塞问题的新方法,该方法通过离散时间滑模控制的应用,使每个流具有不同的时变延迟。所提出的控制器在网络节点上运行,可确保在所考虑的网络中消除包丢失,并将节点输出接口处的所有可用带宽用于数据传输。事实证明,该控制器相对于网络条件的突然和不可预测的变化(例如延迟和带宽变化)具有较强的鲁棒性,而无需相互关联。通过最小化二次成本函数来选择控制器参数。优化问题的封闭形式解决方案允许在实际网络节点中直接且在操作上有效地实现所提出的拥塞控制策略。

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