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Stability of digital feedback control systems

机译:数字反馈控制系统的稳定性

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Specific problems arising, when Von Neumann type computer is used as feedback element, are considered. It is shown, that due to specifics of operation this element introduce pure lag into control loop, and lag time depends on complexity of algorithm of control. Method of evaluation of runtime between reading data from sensors of object under control and write out data to actuator based on the theory of semi- Markov process is proposed. Formulae for time characteristics estimation are obtained. Lag time characteristics are used for investigation of stability of linear systems. Digital PID controller is divided onto linear part, which is realized with a soft and pure lag unit, which is realized with both hardware and software. With use notions amplitude and phase margins, condition for stability of system functioning are obtained. Theoretical results are confirm with computer experiment carried out on the third-order system.
机译:当使用冯·诺依曼型计算机作为反馈元件时,会出现一些具体问题。结果表明,由于操作的特殊性,该元件将纯滞后现象引入控制回路,而滞后时间取决于控制算法的复杂性。提出了一种基于半马尔可夫过程理论的从待测物体的传感器读取数据到执行器之间的运行时间评估方法。获得用于时间特性估计的公式。滞后时间特性用于研究线性系统的稳定性。数字PID控制器分为线性部分,该部分由软滞后单元实现,由硬件和软件共同实现。利用幅度和相位裕度的概念,获得了系统功能稳定性的条件。理论结果可通过在三阶系统上进行的计算机实验得到证实。

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