Design of ship main engine speed controller based on optimal active disturbance rejection technique

Weigang Pan, Yingbing Zhou, Yaozhen Han
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引用次数: 6

Abstract

Applying mathematics model of nonlinear ship main engine control and the wave disturbances to the design of electronic governor, and considering the uncertainty of model parameters and the characteristics of servo-system makes the model have the unmatched uncertainty correspondingly. In order to solve the difficulty, an active disturbance rejection nonlinear control strategy is proposed, and the genetic algorithm is used to modify parameters of ADRC online which improve the ADRC's adaptive capacity. A ship main engine optimal ADRC controller is designed. The simulation results of ship main engine (ME) speed tracking and keeping show that the controller has good adaptabilities on the system nonlinearity and strong robustness to parameter perturbations of the ship and environmental disturbances. And the speed switching is fast and smooth, thus achieved high-accurate ship ME speed control.
基于最优自抗扰技术的船舶主机转速控制器设计
将非线性船舶主机控制数学模型和波浪扰动应用于电子调速器的设计,并考虑模型参数的不确定性和伺服系统的特性,使模型具有不匹配的不确定性。为了解决这一难题,提出了一种自抗扰非线性控制策略,并利用遗传算法在线修改自抗扰控制器的参数,提高了自适应能力。设计了一种船舶主机最优自抗扰控制器。船舶主机航速跟踪与保持仿真结果表明,该控制器对系统非线性具有良好的自适应能力,对船舶参数摄动和环境扰动具有较强的鲁棒性。并且速度切换快速平稳,实现了高精度的船舶ME速度控制。
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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