Data-driven PID tuning based on safe experimentation dynamics for control of liquid slosh

Nor Sakinah Abdul Shukor, Mohd Ashraf Ahmad, M. Tumari
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引用次数: 25

Abstract

An introductory research about a data-driven PID tuning for the control of liquid slosh system based on Safe Experimentation Dynamics (SED) is presented in this paper. A performance comparison between the SED and Simultaneous Perturbation Stochastic Approximation (SPSA) based method for data-driven PID tuning is observed and discussed. The performance is evaluated by numerical examples in terms of tracking performance, control input energy and computation time. The simulation results demonstrated that SED based datadriven PID successfully reduced the liquid slosh whilst the desired position of the cart is achieved. In addition, smaller control input energy is used.
基于安全实验动力学的数据驱动PID整定控制液体晃动
介绍了一种基于安全实验动力学(SED)的数据驱动PID整定控制液体晃动系统。观察并讨论了基于同步摄动随机逼近(SPSA)的数据驱动PID整定方法与SED的性能比较。通过数值算例,从跟踪性能、控制输入能量和计算时间三个方面评价了该算法的性能。仿真结果表明,基于SED的数据驱动PID成功地减少了液体晃动,同时达到了小车的期望位置。此外,采用较小的控制输入能量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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