In order to meet the precision requirements and tracking performance of the continuous rotary motor electro-hydraulic servo system under unknown strong non-linear and uncertain strong disturbance factors,such as dynam...In order to meet the precision requirements and tracking performance of the continuous rotary motor electro-hydraulic servo system under unknown strong non-linear and uncertain strong disturbance factors,such as dynamic uncertainty and parameter perturbation,an improved active disturbance rejection control(ADRC)strategy was proposed.The state space model of the fifth order closed-loop system was established based on the principle of valve-controlled hydraulic motor.Then the three parts of ADRC were improved by parameter perturbation and external disturbance;the fast tracking differentiator was introduced into linear and non-linear combinations;the nonlinear state error feedback was proposed using synovial control;the extended state observer was determined by nonlinear compensation.In addition,the grey wolf algorithm was used to set the parameters of the three parts.The simulation and experimental results show that the improved ADRC can realize the system frequency 12 Hz when the tracking accuracy and response speed meet the requirements of double ten indexes,which lay foundation for the motor application.展开更多
为解决传统电流解耦控制方法在电感参数失配时解耦效果不佳的问题,提出一种基于增益连续扩张状态观测器(extended state observer,ESO)的电流解耦控制方法。该方法通过ESO获得了电阻压降、交叉耦合、以及其他确定和不确定因素所引起扰...为解决传统电流解耦控制方法在电感参数失配时解耦效果不佳的问题,提出一种基于增益连续扩张状态观测器(extended state observer,ESO)的电流解耦控制方法。该方法通过ESO获得了电阻压降、交叉耦合、以及其他确定和不确定因素所引起扰动的综合观测和补偿。扰动补偿控制不仅实现了励磁和转矩控制回路间的解耦,而且将各子系统控制对象简化为一阶积分环节,从而使得调节器无需积分项,简化了设计,克服积分饱和所带来的不利影响。与基于fal()函数的常规ESO不同,文中提出了一种具有连续可微特性的非线性函数,在优化fal()函数"大误差小增益,小误差大增益"特性的同时,克服其增益在切换点处的突变问题,且所提非线性函数具有统一表达式,避免切换点判断。论文对ESO参数选择、系统稳定性等进行了讨论。最后,通过实验进行验证。展开更多
基金Project(51975164)supported by the National Natural Science Foundation of ChinaProject(2019-KYYWF-0205)supported by the Fundamental Research Foundation for Universities of Heilongjiang Province,China。
文摘In order to meet the precision requirements and tracking performance of the continuous rotary motor electro-hydraulic servo system under unknown strong non-linear and uncertain strong disturbance factors,such as dynamic uncertainty and parameter perturbation,an improved active disturbance rejection control(ADRC)strategy was proposed.The state space model of the fifth order closed-loop system was established based on the principle of valve-controlled hydraulic motor.Then the three parts of ADRC were improved by parameter perturbation and external disturbance;the fast tracking differentiator was introduced into linear and non-linear combinations;the nonlinear state error feedback was proposed using synovial control;the extended state observer was determined by nonlinear compensation.In addition,the grey wolf algorithm was used to set the parameters of the three parts.The simulation and experimental results show that the improved ADRC can realize the system frequency 12 Hz when the tracking accuracy and response speed meet the requirements of double ten indexes,which lay foundation for the motor application.
文摘为解决传统电流解耦控制方法在电感参数失配时解耦效果不佳的问题,提出一种基于增益连续扩张状态观测器(extended state observer,ESO)的电流解耦控制方法。该方法通过ESO获得了电阻压降、交叉耦合、以及其他确定和不确定因素所引起扰动的综合观测和补偿。扰动补偿控制不仅实现了励磁和转矩控制回路间的解耦,而且将各子系统控制对象简化为一阶积分环节,从而使得调节器无需积分项,简化了设计,克服积分饱和所带来的不利影响。与基于fal()函数的常规ESO不同,文中提出了一种具有连续可微特性的非线性函数,在优化fal()函数"大误差小增益,小误差大增益"特性的同时,克服其增益在切换点处的突变问题,且所提非线性函数具有统一表达式,避免切换点判断。论文对ESO参数选择、系统稳定性等进行了讨论。最后,通过实验进行验证。