模型预测控制与处理饱和致动器的防卷绕策略之间的联系

J. Doná, G. Goodwin, M. Seron
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引用次数: 7

摘要

模型预测控制是解决饱和执行器问题的一种行之有效的策略。该方法的本质特征是一个受输入约束的后退水平二次最优控制问题。另一方面,反绕组方法是临时程序,它以瞬时方式实现输入饱和。众所周知,这两种方法在实践中都表现良好,每种方法都有其强有力的拥护者。在本文中,我们探讨了这些方法之间的联系。特别是,我们表明,在某些情况下,反清盘方案是相同的MPC方案。在其他情况下,我们表明反清盘策略具有接近MPC策略的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Connections between model predictive control and anti-windup strategies for dealing with saturating actuators
Model predictive control is a well established strategy for dealing with saturating actuator problems. The essential feature of the method is a receding horizon quadratic optimal control problem which is solved subject to input constraints. On the other hand, anti-windup methods are ad-hoc procedures which achieve input saturation in an instantaneous fashion. Both methods are known to perform well in practice and each has its strong advocates. In this paper, we explore connections between the methods. In particular, we show that there are cases in which anti-windup schemes are identical to MPC schemes. In other cases, we show that anti-windup has performance which is close to that of MPC strategies.
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