具有输出约束的最小相位系统的混合滑模策略

H. Richter
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引用次数: 0

摘要

针对单输入系统提出了一种新的设定值控制方案,其中必须在两个设定值之间传输调节输出,并附加要求一组有限输出保持在规定的范围内。该策略基于过程控制和航空航天领域中常用的最大最小选择系统。用于控制和输出的调节器是滑模类型,其中滑动变量被定义为输出与其极限之间的差异。最大和最小的安排享有许多有益的性质,包括一个分离原则,允许独立设计的滑动调节器,与整体渐近稳定性的保证。本文详细地证明了分离最小和最大选择器系统的稳定性,并描述了导致极限保护的不变性。本文还给出了一些适用于最大最小情况的结果。设计指南,以及详细的仿真示例,演示了实际的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A hybrid sliding mode strategy for minimum-phase systems with output constraints
A new setpoint control scheme is proposed for single-input systems, where a regulated output must be transferred between two setpoints, with the additional requirement that a set of limited outputs remain within prescribed bounds. The strategy is based on a max-min selector system frequently used in the process control and aerospace fields. The regulators used for the controlled and outputs are of the sliding mode type, where the sliding variable is defined as the difference between an output and its limit. The max and min arrangements enjoy many beneficial properties, including a separation principle allowing the independent design of the sliding regulators, with overall asymptotic stability guarantee. The paper details the stability proof for the separate min and max selector systems and describes the invariance properties leading to limit protection. Some results applicable to the max-min case are also included. Design guidelines, as well as a detailed simulation example, demonstrate practical applicability.
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