A Multistep, Newton-Type Control Strategy for Constrained, Nonlinear Processes

Wei Li, L. Biegler
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引用次数: 26

Abstract

For linear processes, QDMC has proven to be an effective way of systematically handling both input and output process constraints. This note describes an analogous extension of QDMC for nonlinear, constrained Processes. Based on Newton-type methods implemented in a moving horizon framework, a multi-step algorithm is derived that solves a single quadratic program (QP) over each time horizon. Sufficient stability properties can be invoked through the concept of descent directions, and these conditions can also be checked on-line. Finally, the method is illustrated on a small reactor example with state and input time delays.
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约束非线性过程的多步牛顿型控制策略
对于线性过程,QDMC已被证明是系统处理输入和输出过程约束的有效方法。本文描述了非线性约束过程的QDMC的类似扩展。基于在移动视界框架中实现的牛顿型方法,推导了一种求解每个时间视界上单个二次规划(QP)的多步算法。通过下降方向的概念可以调用足够的稳定性,并且这些条件也可以在线检查。最后,以一个具有状态和输入时滞的小型电抗器为例进行了说明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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