Adaptive controller design and disturbance attenuation for SISO linear systems with noisy output measurements and partly measured disturbances

Sheng Zeng, Z. Pan
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引用次数: 22

Abstract

We present robust adaptive controller design for SISO linear systems with noisy output measurements and partly measured disturbances. Using the worst-case analysis approach, we formulate the robust adaptive control problem as a nonlinear H/sup /spl infin//-optimal control problem under imperfect state measurements, and solve it using game theory. The design paradigm is the same as that in (Z. Pan et al., July 2000) with the only difference being the treatment of the measured disturbances. The same results as those in (Z. Pan et al., July 200) are achieved. In addition, when the relative degrees from the measured disturbances to the output are no less than that from the control input, the controllers designed achieve the zero disturbance attenuation level with respect to the measured disturbance inputs. The asymptotic tracking objective is achieved even if the measured disturbance is only uniformly bounded, without requiring it to be of finite energy. This strong robustness property is then illustrated by a numerical example.
具有噪声输出测量和部分测量扰动的SISO线性系统的自适应控制器设计与扰动衰减
我们提出了具有噪声输出测量和部分测量扰动的SISO线性系统的鲁棒自适应控制器设计。利用最坏情况分析方法,将鲁棒自适应控制问题化为不完全状态下的非线性H/sup /spl中//最优控制问题,并利用博弈论进行求解。设计范例与(Z. Pan et al., 2000年7月)中的设计范例相同,唯一的区别是对测量扰动的处理。结果与(Z. Pan et al., July 200)相同。此外,当测量到的干扰与输出的相对程度不小于控制输入的相对程度时,所设计的控制器相对于测量到的干扰输入达到了零干扰衰减水平。即使所测扰动是均匀有界的,也可以实现渐近跟踪目标,而不需要扰动是有限能量的。然后通过数值算例说明了这种强鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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