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Discretisation method and stability criteria for non-linear systems under discrete-time time delay control

机译:离散时滞控制下非线性系统的离散化方法和稳定性判据

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Time delay control (TDC) for non-linear systems has rapidly drawn attention as a result of its unusually robust performance and yet its extraordinarily compact form. In many real applications, TDC has been implemented digitally and the time delay, λ, was set to the sampling period of the control system, which is a constant during the control process. The existing stability analysis, however, has been made based on the assumption of the continuous-time TDC and infinitesimal time delay (λλ0). The assumption not only fails to reflect the reality that the closed-loop system (CLS) is a sampled-data system, but also leads to a stability criterion in which important parameters, such as λ, are absent. In this paper, therefore, sufficient stability criteria for a non-linear system based on the premise of discrete-time TDC and λ that is equal to the sampling period are presented. To this end, we have first proposed a discretization method to derive the approximate discrete-time model of CLS. Then by using the model and the concepts of consistency and Lyapunov stability, we have derived stability criteria for the exact discrete-time model of CLS. The suggested criteria consist of the sampling period and other parameters of TDC. These criteria have been verified by simulation results.
机译:非线性系统的时间延迟控制(TDC)由于其非凡的鲁棒性能和非凡的紧凑形式而迅速引起人们的注意。在许多实际应用中,已经以数字方式实现了TDC,并且将时间延迟λ设置为控制系统的采样周期,该周期在控制过程中是恒定的。但是,现有的稳定性分析是基于连续时间TDC和无限小时延(λλ0)的假设进行的。该假设不仅不能反映闭环系统(CLS)是一个采样数据系统的现实,而且会导致缺乏重要参数(例如λ)的稳定性标准。因此,在本文中,提出了基于离散时间TDC和等于采样周期的λ的非线性系统的充分稳定性判据。为此,我们首先提出了一种离散化方法来导出CLS的近似离散时间模型。然后,通过使用模型以及一致性和Lyapunov稳定性的概念,我们导出了CLS精确离散时间模型的稳定性标准。建议的标准包括采样时间和TDC的其他参数。这些标准已通过仿真结果验证。

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