研究了线性扩张状态观测器(Extended state observer,ESO)的估计能力,并且分析了在线性自抗扰控制(Linearactive disturbance rejection control,LADRC)下闭环系统的稳定性.对于系统模型未知的情形,给出了线性扩张观测器估计误差有界的...研究了线性扩张状态观测器(Extended state observer,ESO)的估计能力,并且分析了在线性自抗扰控制(Linearactive disturbance rejection control,LADRC)下闭环系统的稳定性.对于系统模型未知的情形,给出了线性扩张观测器估计误差有界的证明,并通过分析得出了如下结论:在扩张状态观测器跟踪误差趋于零的前提下,在线性自抗扰控制下的闭环系统可以实现对设定信号的精确跟踪以及输入-输出有界(Bounded input and bounded output,BIBO)稳定.展开更多
The extended state observer (ESO) is a novel observer for a class of uncertain systems. Since ESO adopts the continuous non-smooth structure, the classical observer design theory is hard to use for ESO analysis. In th...The extended state observer (ESO) is a novel observer for a class of uncertain systems. Since ESO adopts the continuous non-smooth structure, the classical observer design theory is hard to use for ESO analysis. In this note, the self-stable region (SSR) approach, which is a nonlinear synthesis method for nonlinear uncertain systems, will be used for ESO design and its stability analysis. The advantages of the non-smooth structure in ESO for improving the convergence properties and the estimation precision will be shown.展开更多
针对内嵌式永磁同步电机无位置传感器控制系统,基于自抗扰控制技术和高频信号注入技术,提出了以转子位置角为扩张状态观测器(extended state observer,ESO)主体变量的自抗扰控制系统.该方法避免了传统算法中以电流为ESO主体变量时依靠...针对内嵌式永磁同步电机无位置传感器控制系统,基于自抗扰控制技术和高频信号注入技术,提出了以转子位置角为扩张状态观测器(extended state observer,ESO)主体变量的自抗扰控制系统.该方法避免了传统算法中以电流为ESO主体变量时依靠角速度估计值积分来获得转子位置角估计值所带来的误差积累问题.该方法在电机起动、负载突变等电流波形正弦度较差的情况下,仍能保证转子位置角的估计值具有较高的精度.仿真结果验证了所提出方法的正确性和优越性.展开更多
文摘研究了线性扩张状态观测器(Extended state observer,ESO)的估计能力,并且分析了在线性自抗扰控制(Linearactive disturbance rejection control,LADRC)下闭环系统的稳定性.对于系统模型未知的情形,给出了线性扩张观测器估计误差有界的证明,并通过分析得出了如下结论:在扩张状态观测器跟踪误差趋于零的前提下,在线性自抗扰控制下的闭环系统可以实现对设定信号的精确跟踪以及输入-输出有界(Bounded input and bounded output,BIBO)稳定.
文摘The extended state observer (ESO) is a novel observer for a class of uncertain systems. Since ESO adopts the continuous non-smooth structure, the classical observer design theory is hard to use for ESO analysis. In this note, the self-stable region (SSR) approach, which is a nonlinear synthesis method for nonlinear uncertain systems, will be used for ESO design and its stability analysis. The advantages of the non-smooth structure in ESO for improving the convergence properties and the estimation precision will be shown.
文摘针对内嵌式永磁同步电机无位置传感器控制系统,基于自抗扰控制技术和高频信号注入技术,提出了以转子位置角为扩张状态观测器(extended state observer,ESO)主体变量的自抗扰控制系统.该方法避免了传统算法中以电流为ESO主体变量时依靠角速度估计值积分来获得转子位置角估计值所带来的误差积累问题.该方法在电机起动、负载突变等电流波形正弦度较差的情况下,仍能保证转子位置角的估计值具有较高的精度.仿真结果验证了所提出方法的正确性和优越性.