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New Minmax Linear Quadratic Fault-Tolerant Tracking Control for Batch Processes

机译:用于批处理过程的新的Minmax线性二次容错跟踪控制

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摘要

A new design of linear quadratic control (LQ) is proposed for batch processes with partial actuator faults and unknown disturbance. The autoregressive model built through input-output process data is transformed into a new non-minimal state space (NMSS) model in which the process state variables and tracking error are combined, then a new LQ control scheme is derived based on minimax optimization. Unlike LQ based on traditional NMSS model (TNMSSLQ), the process state variables and tracking error can both be regulated in the proposed method. Monotonic situations of optimal performance cost are further derived to yield sufficient conditions for both nominal and robust system stability. Finally, an injection velocity control example is illustrated to show the effectiveness.
机译:针对具有部分执行器故障和未知干扰的间歇过程,提出了一种线性二次控制(LQ)的新设计。通过输入-输出过程数据建立的自回归模型被转换为新的非最小状态空间(NMSS)模型,在该模型中,过程状态变量和跟踪误差被组合在一起,然后基于最小极大值优化推导了新的LQ控制方案。与基于传统NMSS模型(TNMSSLQ)的LQ不同,该方法可以同时调节过程状态变量和跟踪误差。进一步推导了最佳性能成本的单调情况,以为正常和鲁棒的系统稳定性提供足够的条件。最后,通过一个注射速度控制实例来说明其有效性。

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