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Adaptive Tube-Enhanced Multi-Stage Nonlinear Model Predictive Control ?

机译:自适应管增强多级非线性模型预测控制

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A robust adaptive controller for nonlinear plants with parametric uncertainties, additive disturbances, and state estimation errors based on the tube-enhanced multi-stage (TEMS) nonlinear model predictive (NMPC) framework is proposed. In TEMS NMPC, primary multi-stage NMPC is used to achieve robustness against the uncertainties which have a large effect on the evolution of the state of the plant, and ancillary multi-stage NMPC is used to track the predictions of the primary controller to counteract the effect of the small uncertainties. We propose updating, at each time step, the uncertainty set considered by the scenario trees of the primary and ancillary controllers with a tighter non-falsified uncertainty set, which results from solving a guaranteed parameter estimation (GPE) optimization problem. This produces significant performance improvements over the non-adaptive implementation as will be shown on the Williams-Otto continuous stirred tank reactor (CSTR) case study.
机译:提出了一种用于非线性工厂的鲁棒自适应控制器,具有参数不确定性,基于管增强的多级(TEMS)非线性模型预测(NMPC)框架的添加剂干扰和状态估计误差。 在TEMS NMPC中,主要多级NMPC用于实现对植物状态的演变的不确定性的鲁棒性,并且辅助多级NMPC用于跟踪主控制器的预测抵消 小不确定性的影响。 我们建议在每个时间步骤更新,所以通过具有更严格的非伪造不确定性集的主要和辅助控制器的场景树考虑的不确定性集,这导致求解保证参数估计(GPE)优化问题。 这产生了对非自适应实施的显着性能改进,如威廉姆斯 - 奥托连续搅拌釜反应堆(CSTR)案例研究所示。

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