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Data-Driven Design of Feedback-Feedforward Control Systems for Dynamic Processes

机译:用于动态过程的反馈 - 前馈控制系统的数据驱动设计

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This paper presents a new solution for the design of a controller for a process using exclusively input/output (I/O) data, which enables the overall system to exhibit high control performance including tracking performance and system robustness in case of deterministic additive disturbances. First, a data-driven model is constructed based on deadbeat diagnostic observer/residual generator. Next, a new state, which is equivalent to the integral of the system tracking error, combined with process input and output information is used to define the performance criterion. Minimising this performance criterion using an online control policy gives an optimal feedback and feedforward controller. The effectiveness of the proposed approach for industrial implementations is shown using a DC-motor simulation.
机译:本文介绍了使用专用输入/输出(I / O)数据的用于工艺的控制器的新解决方案,这使得整个系统能够表现出高控制性能,包括在确定性添加剂干扰的情况下跟踪性能和系统鲁棒性。首先,基于Deadbeat诊断观察者/剩余发电机构建数据驱动模型。接下来,使用与系统跟踪误差的积分相同的新状态,与过程输入和输出信息组合使用来定义性能标准。使用在线控制策略最小化此性能标准可提供最佳反馈和馈送控制器。使用DC电动机模拟示出了所提出的工业实施方法的有效性。

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