稳健不动点变换中s型函数的微调

K. Kósi, J. Bitó, J. Tar
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引用次数: 2

摘要

本文研究了利用鲁棒不动点变换设计自适应控制器的一种新方法。为了保证系统的全局稳定性,所设计的控制器在有界范围内平稳工作。该区域的极限以及控制器的性能都取决于基于rfpt的设计的基本组成部分,即取决于可以以各种方式定义的sigmoid函数的属性。在这种情况下,我们选择了一个特殊的、易于参数化的、在日常工程实践中广泛使用的s型曲线,即截断线性函数。这个函数只有一个参数,即它的斜率,它同时决定了保证控制器自适应特性的窗口宽度。结果表明,通过改变该参数,既可以提高控制器的精度,也可以提高必要的自适应调谐频率。模拟结果证实了这一说法。
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Fine tuning with sigmoid functions in robust fixed point transformation
In this paper a novel implementation of the adaptive controllers designed by the use of Robust Fixed Point Transformation is studied. Instead guaranteeing global stability the so designed controllers work smoothly in a bounded region of operation. Both the limits of this region as well as the performance of the controller depends on the basic component of the RFPT-based design, i.e. on the properties of a sigmoid function that can be defined in various manners. In this case a special, easily parameterizable sigmoid was chosen that is widely used in the daily engineering practice, a truncated linear function. This function has a single parameter, its slope, that in the same time determines the width of the window within which the adaptive nature of the controller is guaranteed. It was found that by varying this parameter either the precision of the controller or the frequency of the necessary adaptive tuning can be improved. This statement is substantiated by simulations.
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