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Discrete-time domain two-degree-of-freedom control design for industrial stable processes with input time delay

机译:具有输入时滞的工业稳定过程的离散时域二自由度控制设计

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In this paper a discrete-time domain 2DOF design method is proposed for industrial stable processes with input time delay, based on a recently developed two-degree-of-freedom (2DOF) control structure. The setpoint tracking controller is analytically designed based on the H optimal control principle, and another controller for load disturbance rejection is derived by proposing the desired closed-loop complementary sensitivity function. Both controllers can be tuned independently to realize control optimization. Analytical expression of the setpoint response is given for quantitatively tuning the single adjustable parameter in the setpoint tracking controller. At the meantime, the tuning constraints of another adjustable parameter in the controller for disturbance rejection are derived by establishing the sufficient and necessary conditions for holding robust stability of the closed-loop system. Illustrative examples from the literature are used to show the effectiveness and merit of the proposed control method.
机译:本文基于最近开发的两自由度(2DOF)控制结构,提出了一种具有输入时延的工业稳定过程离散时域2DOF设计方法。设定点跟踪控制器是基于H最优控制原理进行分析设计的,并且通过提出所需的闭环互补灵敏度函数,得出了另一种用于负载扰动抑制的控制器。两个控制器都可以独立调整,以实现控制优化。给出了设定点响应的解析表达式,用于定量调整设定点跟踪控制器中的单个可调参数。同时,通过建立足够的必要条件来保持闭环系统的鲁棒稳定性,来推导控制器中用于抑制干扰的另一个可调参数的调整约束。文献中的说明性例子用于说明所提出的控制方法的有效性和优点。

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