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Sliding Mode Control with Fuzzy Reaching Law for Queue Management in the Internet

机译:互联网队列管理模糊到达法的滑模控制

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Due to the challenging nature of nonlinearity and time-varying behaviors in TCP dynamics, traditional active queue management (AQM) algorithms suffer from poor robustness under dynamic network scenarios. To address the above problem, a novel congestion control scheme named FSM-AQM is proposed via the fuzzy sliding mode control, which is robust against uncertainties and time-varying parameters of the system. The guidelines to design FSM-AQM are presented, including sliding surface selecting, sliding controller design and stability analysis. As for the reachable issue, an enhanced reaching law based on fuzzy logic is designed to decrease the high-frequency chattering and improve the dynamic performance. Simulation comparisons with PI, PID and REM in NS2 demonstrate that our proposed algorithm achieves fast convergence of queue length to the target with small jitter. The results also indicate that FSM-AQM is robust against disturbances and outperforms traditional AQM schemes significantly.
机译:由于非线性和随时间变化的行为在TCP动力学的挑战性,传统的主动队列管理(AQM)算法从下动态网络场景稳健性差受到影响。为了解决上述问题,名为FSM-AQM的新颖的拥塞控制方案是通过模糊滑模控制,这是对不确定性和该系统的随时间变化的参数健壮提出。设计FSM-AQM的准则被呈现,包括滑动面选择,滑动控制器的设计和稳定性分析。至于可达问题,基于模糊逻辑增强到达法的目的是减少高频震动和提高动力性能。在NS2与PI,PID和REM仿真比较表明,我们的算法实现了队列长度快速收敛到小抖动的目标。研究结果还表明,FSM-AQM是强大的抗扰动和显著优于传统的AQM方案。

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