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Reconstructing Sliding Surfaces for SISO Variable Structure Output Feedback Control Systems Using Inverse Method

机译:使用逆方法重建SISO变结构输出反馈控制系统的滑动面

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There exists a dynamic mapping relationship between the sliding variable and the output variable in a linear, time-invariant (LTI), single-input-single-output (SISO) system. This relationship is invariant of the matched disturbances, which lies in the control space. In this note, a continuous-time dynamic inverse compensator is proposed to reconstruct the sliding variable from the system output. This inverse compensator is stable and causal provided that the original SISO system is minimum phase and that the input-output relative degree is less than or equal to one. In case the system relative degree is greater than one, a digital approximation for the inverse compensator is introduced to track the sliding variable in discrete-time to the accuracy of $O(T)$, where $T$ is the sampling period. Thus the discrete-time variable structure control (VSC) law can be implemented without full state accessibility.
机译:在线性,时不变(LTI),单输入单输出(SISO)系统中,滑动变量和输出变量之间存在动态映射关系。这种关系对于位于控制空间中的匹配干扰是不变的。在本说明中,提出了一种连续时间动态逆补偿器,用于从系统输出中重建滑动变量。如果原始SISO系统为最小相位并且输入输出相对度小于或等于1,则此逆补偿器是稳定的并且是因果的。在系统相对度大于1的情况下,引入逆补偿器的数字近似值以离散时间跟踪滑动变量,精度为$ O(T)$,其中$ T $为采样周期。因此,可以在没有完全状态可访问性的情况下实现离散时间可变结构控制(VSC)律。

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