利用控制工程计算环境ANDECS进行模糊逻辑控制器的多目标设计

H. Joos, M. Schlothane, G. Grubel
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引用次数: 5

摘要

模糊控制方法可以看作是一种系统的方法来指定具有非线性增益面的控制器。为了适当地调整这些控制器,可以应用计算机辅助技术,只要有适当的植物模型可用,例如在更经典的设计方法中。特别地,展示了如何使用ANDECS-MOPS多目标规划系统对具有模糊逻辑的控制器进行多模型/多准则设计。为此,开发了控制数据对象“模糊控制器”和用于定义语言变量的图形编辑器。这代表了设计框架的动态综合部分。利用DSblock与ANDECS连接的Dymola或ACSL等模型构建环境,通过MOPS对与动态工厂模型连接的模糊控制器进行优化。以一个空气动力不稳定飞机的多准则设计问题为例进行了论证
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-objective design of controllers with fuzzy logic using the control engineering computation environment ANDECS
The fuzzy-control methodology can be seen as a systematic way to specify controllers with nonlinear gain surfaces. To properly tune such controllers, computer-aided techniques can be applied provided appropriate plant models are available such as in more classical design approaches. In particular, it is shown how a multi-models/multi-criteria design for controllers with fuzzy logic can be carried out by using the ANDECS-MOPS Multi-Objective Programming System. For that a Control Data Object 'Fuzzy-Controller' is developed together with a graphical editor for defining the linguistic variables. This represents the dynamic synthesis part of the design framework. Using a model building environment like Dymola or ACSL which is linked to ANDECS via DSblock, the fuzzy controller connected to dynamic plant models can be optimized by MOPS. This is demonstrated for a multi-criteria design problem for an aerodynamically unstable aircraft.<>
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