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Method to improve convergence performance of iterative learning control systems over wireless networks in presence of channel noise

机译:在存在信道噪声的情况下提高无线网络上迭代学习控制系统收敛性能的方法

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摘要

The accumulated effect of channel noise, including sensor-to-controller (SC) noise and controller-to-actuator (CA) noise, has a significant impact on the convergence performance of iterative learning control (ILC) systems over wireless networks. In this study, the relation between input error, channel noise and learning gain is derived, which reveals the fact that the contribution of the SC noise and the CA noise to the input error are all influenced by the learning gain. Based on this discovery, a method is proposed to improve the convergence performance of the ILC system when the SC noise and CA noise are independent and Gaussian distributed. Specifically, this method adaptively selects the learning gain through minimising the trace of input error covariance matrix. With the adaptively selected learning gain, the convergence performance of the ILC system is improved significantly. Moreover, the effect of channel noise variance on the convergence speed of the ILC system with the proposed method is analysed theoretically. Finally, numerical experiments are given to illustrate the effectiveness of the proposed method and corroborate the theoretical analysis, respectively.
机译:信道噪声的累积效应,包括传感器到控制器(SC)噪声和控制器到致动器(CA)噪声,对无线网络上的迭代学习控制(ILC)系统的融合性能产生重大影响。在这项研究中,推导了输入误差,通道噪声和学习增益之间的关系,这揭示了一个事实,即SC噪声和CA噪声对输入误差的贡献都受学习增益的影响。基于这一发现,提出了一种在SC噪声和CA噪声独立且呈高斯分布的情况下提高ILC系统收敛性能的方法。具体地,该方法通过最小化输入误差协方差矩阵的轨迹来自适应地选择学习增益。利用自适应选择的学习增益,ILC系统的收敛性能得到显着提高。此外,从理论上分析了信道噪声方差对ILC系统收敛速度的影响。最后,通过数值实验说明了该方法的有效性,并验证了理论分析的正确性。

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