针对线性自抗扰(Linear Active Disturbance Rejection Control,LADRC)在四旋翼飞行器姿态控制中存在初始状态误差较大时可能产生“峰值”现象的问题,提出了一种基于线性/非线性自抗扰切换控制(Switch in linearnonlinear Active Distur...针对线性自抗扰(Linear Active Disturbance Rejection Control,LADRC)在四旋翼飞行器姿态控制中存在初始状态误差较大时可能产生“峰值”现象的问题,提出了一种基于线性/非线性自抗扰切换控制(Switch in linearnonlinear Active Disturbance Rejection Control,SADRC)四旋翼飞行器控制方法。以实验室现有的3-DOF四旋翼飞行器平台为研究对象,建立了其姿态的数学模型,引入SADRC对其基本原理进行了介绍;基于SADRC设计了四旋翼飞行器姿态解耦控制器,并对系统单通道的稳定性进行了分析;对控制方法进行了实验验证。结果表明,SADRC控制器可有效避免LADRC控制器因为初始状态误差引起的“峰值”问题,抗干扰性能进一步提高。展开更多
An improved nonlinear adaptive switching control method is presented to relax the assumption on the higher order nonlinear terms of a class of discrete-time non-affine nonlinear systems. The proposed control strategy ...An improved nonlinear adaptive switching control method is presented to relax the assumption on the higher order nonlinear terms of a class of discrete-time non-affine nonlinear systems. The proposed control strategy is composed of a linear adaptive controller, a neural network(NN) based nonlinear adaptive controller and a switching mechanism. An incremental model is derived to represent the considered system and an improved robust adaptive law is chosen to update the parameters of the linear adaptive controller. A new performance criterion of the switching mechanism is designed to select the proper controller. Using this control scheme, all the signals in the system are proved to be bounded. Numerical examples verify the effectiveness of the proposed algorithm.展开更多
文摘针对线性自抗扰(Linear Active Disturbance Rejection Control,LADRC)在四旋翼飞行器姿态控制中存在初始状态误差较大时可能产生“峰值”现象的问题,提出了一种基于线性/非线性自抗扰切换控制(Switch in linearnonlinear Active Disturbance Rejection Control,SADRC)四旋翼飞行器控制方法。以实验室现有的3-DOF四旋翼飞行器平台为研究对象,建立了其姿态的数学模型,引入SADRC对其基本原理进行了介绍;基于SADRC设计了四旋翼飞行器姿态解耦控制器,并对系统单通道的稳定性进行了分析;对控制方法进行了实验验证。结果表明,SADRC控制器可有效避免LADRC控制器因为初始状态误差引起的“峰值”问题,抗干扰性能进一步提高。
基金Supported by the National Natural Science Foundation of China(61333010,21376077,61203157)the Natural Science Foundation of Shanghai(14ZR1421800)State Key Laboratory of Synthetical Automation for Process Industries(PAL-N201404)
文摘An improved nonlinear adaptive switching control method is presented to relax the assumption on the higher order nonlinear terms of a class of discrete-time non-affine nonlinear systems. The proposed control strategy is composed of a linear adaptive controller, a neural network(NN) based nonlinear adaptive controller and a switching mechanism. An incremental model is derived to represent the considered system and an improved robust adaptive law is chosen to update the parameters of the linear adaptive controller. A new performance criterion of the switching mechanism is designed to select the proper controller. Using this control scheme, all the signals in the system are proved to be bounded. Numerical examples verify the effectiveness of the proposed algorithm.