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首页> 外文期刊>Journal of Process Control >Type-III closed loop control systems-Digital PID controller design
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Type-III closed loop control systems-Digital PID controller design

机译:III型闭环控制系统-数字PID控制器设计

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摘要

The problem of tuning digital PID controllers for type-III control loops is investigated in this work. Type-III control loops are capable of achieving perfect tracking of step, ramp and parabolic reference signals with zero steady state position, velocity and acceleration error. The proposed PID control law involves any dominant time constants of the process itself, and any parasitic dynamics introduced by both the process and the controller, i.e. time delays within the closed control system. The development of the proposed control law takes place in the frequency domain and basis of the theory is the principle of the Magnitude Optimum criterion. The final control law consists of closed form expressions which involve also the controller's sampling time T_s. The potential of the proposed theory is justified for the control of several benchmark process models throughout simulation examples. The affect of the choice of the controller's sampling time is investigated further to the step and frequency response of the control loop both for the output of the control loop and the controller's command signal.
机译:在这项工作中,研究了为III型控制回路调整数字PID控制器的问题。 III型控制回路能够以零稳态位置,速度和加速度误差实现对步进,斜坡和抛物线参考信号的完美跟踪。提出的PID控制定律涉及过程本身的任何主要时间常数,以及过程和控制器引入的任何寄生动力学,即封闭控制系统中的时间延迟。拟议的控制律的发展发生在频域,该理论的基础是幅值最佳准则的原理。最终控制律由封闭形式的表达式组成,这些表达式还涉及控制器的采样时间T_s。在整个仿真示例中,提出的理论的潜力可用于控制多个基准过程模型。对于控制回路的输出和控制器的命令信号,进一步研究了控制器采样时间的选择对控制回路的阶跃和频率响应的影响。

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