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Input-to-State Stabilization with Quantized Output Feedback

机译:具有量化输出反馈的输入到状态稳定

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We study control systems where the output subspace is covered by a finite set of quantization regions, and the only information available to a controller is which of the quantization regions currently contains the system's output. We assume the dimension of the output subspace is strictly less than the dimension of the state space. The number of quantization regions can be as small as 3 per dimension of the output subspace. We show how to design a controller that stabilizes such a system, and makes the system robust to an external unknown disturbance in the sense that the closed-loop system has the Input-to-State Stability property. No information about the disturbance is required to design the controller. Achieving the ISS property for continuous-time systems with quantized measurements requires a hybrid approach, and indeed our controller consists of a dynamic, discrete-time observer, a continuous-time state-feedback stabilizer, and a switching logic that switches between several modes of operation. Except for some properties that the observer and the stabilizer must possess, our approach is general and not restricted to a specific observer or stabilizer. Examples of specific observers that possess these properties are included.
机译:我们研究了控制系统,其中输出子空间被一组有限的量化区域覆盖,并且控制器可用的唯一信息是当前哪个量化区域包含系统的输出。我们假设输出子空间的尺寸严格小于状态空间的尺寸。量化区域的数量可以小至每个输出子空间维度3个。从闭环系统具有输入到状态稳定性属性的意义上讲,我们展示了如何设计一种控制器来稳定此类系统,并使该系统对外部未知干扰具有鲁棒性。设计控制器不需要有关干扰的信息。实现具有量化测量的连续时间系统的ISS属性需要一种混合方法,实际上我们的控制器包括动态的离散时间观测器,连续时间状态反馈稳定器以及在几种模式之间切换的切换逻辑。操作。除了观察者和稳定器必须具备的某些属性外,我们的方法是通用的,并不局限于特定的观察者或稳定器。包括具有这些属性的特定观察者的示例。

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