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Maximum Achievable Precision of Linear Systems with Discrete Controllers

机译:带有离散控制器的线性系统的最大可实现精度

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摘要

Consideration was given to the problem of maximum achievable precision of linear systems with discrete state and output controllers. The external perturbations affecting the system are the bounded step-type and harmonic (of unknown frequency) vector functions of time which the control theory regards as standard. The condition for asymptotic stability of the closed-loop system is the only requirement on the controllers aside from their physical realizability. Therefore, the conclusions of the present paper apply to the entire set of the discrete stabilizing controllers, no matter what method was used to design them.
机译:考虑了具有离散状态和输出控制器的线性系统的最大可实现精度问题。影响系统的外部扰动是时间的有界阶跃型和谐波(未知频率)矢量函数,控制理论将其作为标准。闭环系统的渐近稳定性条件是控制器除了其物理可实现性之外的唯一要求。因此,无论采用哪种方法设计,本文的结论均适用于整套离散稳定控制器。

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