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Discrete-time flow control for connection-oriented communication network via reduced model

机译:通过简化模型对面向连接的通信网络进行离散时间流控制

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In this paper, a suboptimal flow controller design for connection-oriented communication network via reduced model is proposed. Network is modeled as an nth order discrete system whose available bandwidth variations at the bottlenecked link act as an exogenous unmatched disturbance. The proposed scheme is characterized by a simple first order design which is applied to nth order systems through aggregation. Effect of bandwidth variation at the congested node which is modeled as a disturbance, is well accounted in controller design with widely adopted delay-based disturbance estimation. Performance of the proposed scheme is validated through Matlab and ns simulations. Simulation results shows that all the proposed reduced order control scheme tracks the desired queue length effectively under the adverse influence of unmatched disturbances.
机译:本文提出了一种基于简化模型的面向连接通信网络的次优流量控制器设计。网络被建模为第n阶离散系统,该系统的瓶颈链路上的可用带宽变化充当外来的不匹配干扰。该方案以简单的一阶设计为特征,该一阶设计通过聚合应用于n 阶系统。在控制器设计中,通过广泛采用基于延迟的干扰估计,可以很好地解决带宽模型在拥塞节点上的带宽变化对干扰的影响。通过Matlab和ns仿真验证了所提方案的性能。仿真结果表明,在无匹配干扰的不利影响下,所有提出的降阶控制方案都有效地跟踪了所需的队列长度。

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