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Congestion Control in ATM networks using PID Controller with Immune Algorithm

机译:使用具有免疫算法的PID控制器在ATM网络中进行拥塞控制

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In this paper, the Proportional-Integrator-Differentiator (PID) controller is tuned in a rate-based congestion control scheme to be used for the ATM networks. The tuning strategy is based on reformulating the problem to be as an optimization problem with a compact fitness function reflecting the control requirements. The key contribution in this paper is to adopt the immune algorithm as the tuning process, which proves to be so simple, fast, and computationally cheap compared with the other traditional tuning methods. For the purpose of comparison, a simplified network model is built and simulated using two control methods; namely: the proposed control scheme and the well-known single-bit indicator scheme. The experimental results prove that the PID controller tuned by the immune algorithm is superior in terms of the stability of both, buffer occupancy in the switch and the source rate. Both the transient behavior and the steady-state response for the PID controller are shown to be much better than the single-bit indicator scheme. Consequently, the proposed control scheme outperforms the single-bit indicator in terms of link utilization, buffer utilization, packet drop and robustness against any burst change in the network environment.
机译:在本文中,比例积分微分器(PID)控制器在基于速率的拥塞控制方案中进行了调整,可用于ATM网络。调整策略基于将问题重新构造为具有紧凑适应性函数的优化问题,从而反映了控制要求。本文的主要贡献是采用免疫算法作为调整过程,与其他传统的调整方法相比,它被证明非常简单,快速且计算便宜。为了进行比较,使用两种控制方法建立并模拟了简化的网络模型。即:提出的控制方案和众所周知的单位指示符方案。实验结果证明,采用免疫算法调整的PID控制器在开关的缓冲区占用率和信号源速率的稳定性方面均具有优越性。 PID控制器的瞬态行为和稳态响应都显示出比单位指示符方案好得多。因此,所提出的控制方案在链路利用率,缓冲区利用率,数据包丢失和针对网络环境中任何突发变化的鲁棒性方面均优于单位指示符。

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