Adaptive Robust Control for a Class of Nonlinear TCP Dynamic Network Systems

Sun Ping, Z. Liang, Wang Ting
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Abstract

This paper presents an adaptive robust control scheme for a class of nonlinear TCP dynamic network systems. By introducing the interference, time-delay and uncertain parameters to improve the nonlinear model, the objective of the work described here was to attenuate any various interference, time-delay and uncertain parameters factors in the actual network running environment. Using proper coordinate transformation, evaluation signal, energy storage function and adjusting appropriate weights, the systems satisfy the nonlinear L2 gain performance index. The robust controller achieves the desired queue size and guarantee asymptotic stability. This way ameliorates the instability phenomena, when the parameters of system were changed and subjected to the external interference. Finally, the simulation results confirm the feasibility and effectiveness of the designed scheme.
一类非线性TCP动态网络系统的自适应鲁棒控制
针对一类非线性TCP动态网络系统,提出了一种自适应鲁棒控制方案。通过引入干扰、时延和不确定参数来改进非线性模型,目的是减弱实际网络运行环境中的各种干扰、时延和不确定参数因素。通过适当的坐标变换、评价信号、能量存储函数和调整适当的权值,使系统满足非线性L2增益性能指标。鲁棒控制器在保证系统渐近稳定的前提下,实现了期望的队列大小。这种方法改善了系统参数变化和受到外界干扰时的不稳定现象。最后,仿真结果验证了所设计方案的可行性和有效性。
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