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Controller design for nonlinear multi-input-multi-output systems based on an algorithmic plant description

机译:基于算法工厂描述的非线性多输入多输出系统的控制器设计

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摘要

Complicated multi-domain systems are usually described in terms of modelling languages. These models are mainly used for simulation. We discuss the usage of an algorithmic plant description for nonlinear controller design based on differential geometric concepts. The design procedures themselves are often formulated in terms of Lie derivatives. These derivatives are typically computed symbolically. The symbolic manipulations require an explicit description of the plant by formulae and expressions. Moreover, the symbolic computations can be very time consuming for complex and large-scale systems. These problems can be circumvented by automatic differentiation. This paper is concerned with the controller design of algorithmically modelled plants utilizing automatic differentiation.
机译:通常用建模语言来描述复杂的多域系统。这些模型主要用于仿真。我们讨论了基于差分几何概念的非线性控制器设计中算法工厂描述的用法。设计程序本身通常是根据Lie派生词制定的。这些导数通常是符号计算的。符号操作需要通过公式和表达式对植物进行明确描述。此外,对于复杂和大规模的系统,符号计算可能非常耗时。这些问题可以通过自动区分来解决。本文涉及利用自动微分算法建模的植物的控制器设计。

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