...
首页> 外文期刊>International Journal of Control >Dynamic gain-scheduled control and extended linearisation: extensions, explicit formulae and stability
【24h】

Dynamic gain-scheduled control and extended linearisation: extensions, explicit formulae and stability

机译:动态增益预定控制和扩展线性化:扩展,明确的公式和稳定性

获取原文
获取原文并翻译 | 示例

摘要

A controller designed for linearisations at various trim/operating points of a nonlinear system using linear approaches is not necessarily performing well or stable once scheduled with a state under dynamic conditions; the key idea of using this scheduled control law design is to retain states close to the current, usually dynamically varying, operating point. Dynamic gain scheduling (DGS) is a technique aimed to resolve this controller scheduling issue for rapidly changing dynamics and states. It entails scheduling the control law gains with a fast-varying state variable rather than with a slowly varying state. It has been successfully applied to the aircraft system models, allowing also for nested loops. The aim of this paper is to extend DGS to a more general setting allowing for more complex multi-input dynamics incorporating the more simple static scheduling within the same controller. Hence, given a linear design, suitable transformations are provided which allow fast scheduling of multi-variable controllers. Important parallels to the approach of extended linearisation are drawn. Theoretical results are shown, providing explicit formulae related to nonlinear dynamic inversion control. Several examples of varying nonlinear complexity are presented in order to emphasise the characteristics of the approach.
机译:设计用于使用线性方法在非线性系统的各种调整/操作点处进行线性化的控制器,一旦按动态条件下的状态进行调度,不一定会表现良好或稳定。使用此计划控制律设计的关键思想是保持状态接近当前(通常是动态变化的)工作点。动态增益调度(DGS)是一种旨在解决此控制器调度问题的技术,用于快速变化的动态和状态。它需要使用快速变化的状态变量而不是缓慢变化的状态来调度控制律增益。它已成功应用于飞机系统模型,也允许嵌套循环。本文的目的是将DGS扩展到一个更通用的设置,以允许更复杂的多输入动态功能,并在同一控制器内合并更简单的静态调度。因此,在给定线性设计的情况下,提供了合适的变换,该变换允许对多变量控制器进行快速调度。得出了与扩展线性化方法很重要的相似之处。给出了理论结果,提供了与非线性动态反演控制有关的明确公式。为了强调该方法的特性,给出了一些非线性复杂度变化的例子。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号