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Sliding mode control for singularly perturbed linear continuous time systems: Composite control approaches

机译:单型扰动线性连续时间系统的滑模控制:复合控制方法

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We investigate the problem of sliding mode control for singularly perturbed systems with external disturbances. Although the system can be decoupled into two time-scales in terms of two lower dimensional state vectors, the similar type of decomposition does not hold for the control law and the disturbance. The system decoupling transformation can only decompose the control law and the disturbances into two time-scales but not reduce their dimensions. Therefore, only one subsystem is designed to enter the sliding mode. Two composite control approaches are proposed to handle the stability and disturbance rejection problems: state feedback control used to stabilize slow or fast modes and discontinuous control used to deal with the remaining modes. A numerical example of a longitudinal model of an F8 aircraft is provided to illustrate the efficiency of the proposed methods.
机译:我们调查了外部干扰奇异扰动系统的滑模控制问题。尽管系统可以在两个下尺寸状态向量方面分离成两个时间尺度,但是相似类型的分解不适用于控制法和干扰。系统解耦变换只能将控制法和干扰分解为两个时间尺度,但不会降低它们的尺寸。因此,仅设计一个子系统以进入滑动模式。提出了两种复合控制方法来处理稳定性和干扰抑制问题:状态反馈控制用于稳定慢速或快速模式和用于处理剩余模式的不连续控制。提供了F8飞机的纵向模型的数值例子以说明所提出的方法的效率。

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