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Predictive Functional Control for Unstable First-Order Dynamic Systems

机译:不稳定一阶动态系统的预测功能控制

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Predictive functional control (PFC) has emerged as a popular industrial choice owing to its simplicity and cost-effectiveness. Nevertheless, its efficacy diminishes when dealing with challenging dynamics because of prediction mismatch in such scenarios. This paper presents a proposal for reducing prediction mismatch and thus improving behaviour for simple unstable processes; a two-stage design methodology pre-stabilises predictions via proportional compensation before introducing the PFC component. It is demonstrated that pre-stabilisation reduces the dependency of the closed-loop pole on the coincidence point and also improves robustness to uncertainty. Simulation results verify the improved performance as compared to conventional PFC.
机译:由于其简单性和成本效益,预测功能控制(PFC)已成为流行的工业选择。尽管如此,由于这种情况下的预测不匹配,它在处理具有挑战性动态时,其疗效会减少。本文介绍了减少预测失配的提议,从而提高了简单不稳定过程的行为;在引入PFC组分之前,通过比例补偿预先稳定预测的两级设计方法。证明预稳定性降低了闭环极对巧合点的依赖性,并且还提高了对不确定性的鲁棒性。仿真结果验证了与传统PFC相比的改进性能。

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