随设定点变化的非线性对象的PID滑动面离散滑模控制器

B. Patil, L. Waghmare, M. Uplane
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引用次数: 1

摘要

本文提出了一种离散时间滑模控制器(DSMC),以满足延迟时间(HOPDT)形式之外的更高要求。选取滑模曲面作为框架状态的组成部分,利用压倒性后态法求解SMC的误差和整定参数。“桶中球”的控制对象是调节直流送风风扇的转速,使球悬浮在桶中的某个预定位置。因此,DSMC工作来指导球的位置。尽管非常简单,但由于对球的非直接影响和管理其行为的复杂材料科学,这是一个棘手的控制问题。此外,这个球对任何来自风扇的外部刺激都非常敏感。综上所述,它很难受到习惯科学的约束,而不是真正陷入控制计算的再现或数值相关性中。复制和实验结果表明,所提出的策略保证了所需的要素。目前提出的制度的完善之处在于,它将在不久的将来逐步确立以下进展。这个小工具有助于初步分析习惯的PID控制器和DSMC控制器。结果表明,控制器的执行特性存在显著差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Discrete Sliding Mode Controller Action With PID Sliding Surface For Non Linear Plant Along With Changing Set Point
In this paper, a discrete time sliding mode controller (DSMC) is proposed for higher request in addition to postpone time (HOPDT) forms. A sliding mode surface is picked as a component of framework states and mistake and the tuning parameters of SMC are resolved by utilizing the overwhelming post situation procedure. The control object for "ball in a barrel" is to regulate the speed of a DC supplying fan which blows air into a chamber in order to keep a ball suspended at some foreordained position in the barrel. The DSMC is worked to direct the ball's position consequently. Albeit adroitly straightforward, this is a troublesome control issue due to the non-direct consequences for the ball and the perplexing material science administering its conduct. Besides, the ball is amazingly touchy to any outer aggravations from the fan. Taken together, it is hard to be constrained by the customary science, and not actually caught in reproduced or numerical correlations of control calculations. The reproduction and experimentation results demonstrate that the proposed strategy guarantees the required elements. The perfection of current proposed system is it grants the following of progress which will progressively set point in the near future. This gadget helps to tentatively analyze a customary PID controller and DSMC controller. The results show significant differentiations in the execution characteristics of the controllers.
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