ABR traffic congestion control in ATM networks with pole placement constraint: an LMI approach

J. Chaiwat, A. Roeksabutr, P. Wardkein
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引用次数: 5

Abstract

We propose a congestion control algorithm and design a state feedback controller for regulating the congestion of available bit rate (ABR) traffic in asynchronous transfer mode (ATM) networks. ABR service is specified as the rate-based feedback mechanism for congestion control and provides a control signal to throttled sources from a bottleneck node in order to adjust the throttled source rates based on available capacity. Our main purposes are as follows: (1) to design a state feedback controller; (2) to place the closed-loop poles in any desired regions based on a pole placement constraint; (3) to use the LMI (linear matrix inequalities) approach for finding the optimal state feedback gain K. The simulation results show that, under pole placement and LMI approaches, our state feedback congestion controller for ABR traffic in ATM networks can possibly guarantee the system stability, provide no buffer overflow, determine the optimal source traffic rates and place the closed-loop poles in any desired regions as well.
具有极点放置约束的ATM网络ABR交通拥塞控制:一种LMI方法
针对异步传输模式(ATM)网络中可用比特率(ABR)流量的拥塞问题,提出了一种拥塞控制算法,并设计了一种状态反馈控制器。ABR服务被指定为基于速率的拥塞控制反馈机制,并从瓶颈节点向受限源提供控制信号,以便根据可用容量调整受限源速率。我们的主要目的如下:(1)设计一个状态反馈控制器;(2)根据极点放置约束将闭环极点放置在任何期望的区域;(3)利用LMI(线性矩阵不等式)方法求最优状态反馈增益k。仿真结果表明,在极点配置和LMI方法下,我们的ATM网络ABR流量状态反馈拥塞控制器可以保证系统的稳定性,不产生缓冲区溢出,确定最优源流量速率,并在任意期望区域设置闭环极点。
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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