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Adaptive stabilization of minimum-phase systems under quantized measurements

机译:量化测量下最小相系统的自适应稳定

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We construct an adaptive controller for a linear minimum-phase system of an arbitrary relative degree with an unknown bounded disturbance and dynamically quantized measurements. The key novelty is the extension of the shunting method (parallel feedforward compensator) to plants with bounded disturbances. This method leads to an augmented system of relative degree one that is stabilized by a passification-based adaptive controller. Moreover, we design a switching procedure for the controller parameters and the quantizer’s zoom that ensures the state convergence from an arbitrary set to an ellipsoid whose size depends on the disturbance bound. The results are demonstrated by an example of an aircraft flight control.
机译:我们构造一种自适应控制器,用于具有未知有界扰动的任意相对程度的线性最小相位系统和动态量化测量。关键新颖性是延伸分流方法(并联馈电补偿器)与有界干扰的植物。该方法导致由基于直接的自适应控制器稳定的相对程度的增强系统。此外,我们设计了控制器参数的切换过程,以及量化的缩放,可确保从任意设置到椭圆体的状态会聚,其大小取决于干扰绑定。结果通过飞机飞行控制的示例来证明。

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