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A Quantum Kalman Filter-Based PID Controller

机译:基于Quantum Kalman滤波器的PID控制器

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摘要

We give a concrete description of a controlled quantum stochastic dynamical model corresponding to a quantum system (a cavity mode) undergoing continual quadrature measurements, with a PID controller acting on the filtered estimate for the mode operator. The control has three feedback paths: P (proportional), I (integral) and D (derivative) of the error signal. Central use is made of the input and output pictures when constructing the model: these unitarily equivalent pictures are presented in the paper, and used to transfer concepts relating to the controlled internal dynamics to those relating to measurement output, and vice versa. The approach shows the general principle for investigating mathematically and physically consistent models in which standard control theoretic methods are to be extended to the quantum setting.
机译:我们提供了对应于经历持续正交测量的量子系统(腔模式)对应的受控量子随机动力学模型的具体描述,该PID控制器作用于模式操作员的滤波估计。该控件具有三个反馈路径:误差信号的P(比例),I(积分)和D(衍生)。在构建模型时,中央使用是由输入和输出图片制成:这些套法中的篇幅相同的图片,并用于将与受控内部动态有关的概念传输到与测量输出有关的概念,反之亦然。该方法示出了在数学上和物理上一致的模型中调查的一般原理,其中将标准控制理论方法扩展到量子设置。

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