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Same controller in all loops controller design for multivariable systems with multiple time delays based on ideal decoupler

机译:所有循环控制器设计中的同一控制器,用于多变量系统,具有多个时间延迟的基于理想的解耦器

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In this paper, a two-degree-of-freedom (TDOF) control scheme for multi-input/multi-output (MIMO) systems with multiple time delays is proposed. First, a novel inversing decoupler design method based on the ideal decoupling is proposed for decoupling the MIMO system with multiple time delays into several same independent single-input/single output (SISO) systems. Then the H2 proportion-integral-derivative (PID) controller based on the internal model control (IMC) is applied to the obtained SISO systems. Finally, the second controller is developed according to the decoupled closed-loop transfer function. Since the decoupled SISO systems are the same, only one PID controller should be designed for the independent SISO systems. The proposed method can simplify the design task significantly. Moreover, because the TDOF control structure can isolate the disturbance from the reference, the controller of the reference loop can be used to improve the reference response independently. Simulations are provided to illustrate the effectiveness of the proposed design approach.
机译:在本文中,提出了一种自由度(TDOF)控制方案,用于具有多个时间延迟的多输入/多输出(MIMO)系统。首先,提出了一种基于理想去耦的新型反向解耦设计方法,用于将多次延迟的MIMO系统解耦为几种相同的独立单输入/单输出(SISO)系统。然后基于内部模型控制(IMC)的H2比例积分 - 衍生物(PID)控制器应用于所获得的SISO系统。最后,根据分离的闭环传输功能开发第二控制器。由于解耦的SISO系统是相同的,因此仅针对独立的SISO系统设计一个PID控制器。所提出的方法可以显着简化设计任务。此外,由于TDOF控制结构可以从参考的扰动隔离,所以参考环的控制器可用于独立地改善参考响应。提供模拟以说明所提出的设计方法的有效性。

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