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Inverse Tangent Functional Nonlinear Feedback Control and Its Application to Water Tank Level Control

机译:反正态功能非线性反馈控制及其在水箱水平控制中的应用

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摘要

This paper explores the significance and feasibility of addressing a notion that the system error of a nonlinear feedback control can be decorated by an inverse tangent function in order to attain a sound energy-efficient performance. The related mathematical model and relevant evaluation of this concept are further illustrated by demonstrating a case study about the control performance of water tank level. The rationale of robust control and theoretical algorithm of Lyapunov stability theorem are outlined to evaluate the effectiveness of nonlinear feedback with inverse tangent function in terms of improving robustness of PID (Proportional−Integral−Derivative) controller and energy-saving capability. By demonstrating five simulations of different scenarios, it ultimately proves that the modified robust PID controller by inverse tangent function meets the requirement of energy-saving capacity. Comparing with the routine PID control, the mean control input of controlling water tank level can be reduced up to 39.2% by using modified nonlinear feedback controller. This nonlinear feedback PID controller is energy efficient and concise for its convenient use, which is feasible to expand its utility to other applications.
机译:本文探讨的意义和解决一个概念,即非线性反馈控制的系统错误可以通过反正切功能,以达到良好的节能性能被装饰的可行性。这一概念的相关数学模型,相关的评估是通过展示约水箱水位控制性能的情况下,研究进一步说明。鲁棒控制和Lyapunov稳定性理论算法的基本原理定理概述,以评估与反正切函数非线性反馈的有效性提高PID的鲁棒性(比例 - 积分 - 微分)控制器和节能能力方面。通过展示的不同的方案5级的仿真,它最终证明了由反正切函数修改的鲁棒PID控制器满足的节能能力的要求。与常规PID控制相比,控制水箱水位的平均控制输入可以通过使用改性非线性反馈控制器被降低达39.2%。此非线性反馈PID控制器是节能的和简明其方便使用,这是可行的,它的效用扩展到其他的应用程序。

著录项

  • 作者

    Jian Zhao; Xianku Zhang;

  • 作者单位
  • 年度 2020
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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