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Feedback methods for inverse simulation of dynamic models for engineering systems applications

机译:工程系统应用动态模型逆仿真的反馈方法

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摘要

Inverse simulation is a form of inverse modelling in which computer simulation methods are used to find the time histories of input variables that, for a given model, match a set of required output responses. Conventional inverse simulation methods for dynamic models are computationally intensive and can present difficulties for high-speed applications. This article includes a review of established methods of inverse simulation, giving some emphasis on iterative techniques that were first developed for aeronautical applications. It goes on to discuss the application of a different approach that is based on feedback principles. This feedback method is suitable for a wide range of linear and non-linear dynamic models and involves two distinct stages. The first stage involves design of a feedback loop around the given simulation model, and in the second stage, that closed-loop system is used for inversion of the model. Issues of robustness within closed-loop systems used in inverse simulation are not significant as there are no plant uncertainties or external disturbances. Thus, the process is simpler than that required for the development of a control system of equivalent complexity. Engineering applications of this feedback approach to inverse simulation are described through case studies that put particular emphasis on non-linear and multi-input multi-output models.
机译:逆仿真是逆建模的一种形式,其中计算机仿真方法用于查找与给定模型匹配的一组所需输出响应的输入变量的时间历史。用于动态模型的常规逆仿真方法计算量大,并且可能在高速应用中带来困难。本文包括对已建立的逆仿真方法的综述,其中重点介绍了最初为航空应用开发的迭代技术。然后继续讨论基于反馈原理的其他方法的应用。这种反馈方法适用于各种线性和非线性动态模型,涉及两个不同的阶段。第一阶段涉及围绕给定的仿真模型设计反馈环路,第二阶段则使用闭环系统进行模型求逆。由于没有工厂不确定性或外部干扰,用于逆仿真的闭环系统内的鲁棒性问题并不重要。因此,该过程比开发等效复杂性的控制系统所需的过程更简单。通过案例研究描述了这种反馈方法在逆仿真中的工程应用,其中特别强调了非线性和多输入多输出模型。

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