在飞行器参数变化时,L_(1)自适应控制相对于传统比例积分微分(proportional integral derivative,PID)控制方法具有理想的控制效果。针对某型存在参数不确定性的无人机,建立了无人机横侧向动力学模型,在对L_(1)自适应控制理论进行研究...在飞行器参数变化时,L_(1)自适应控制相对于传统比例积分微分(proportional integral derivative,PID)控制方法具有理想的控制效果。针对某型存在参数不确定性的无人机,建立了无人机横侧向动力学模型,在对L_(1)自适应控制理论进行研究的基础上,分别设计了L_(1)自适应控制律和比例微分(proportional derivative,PD)控制律,通过算例仿真,对比分析了这两种控制律对无人机滚转角的控制效果。结果表明,L_(1)自适应控制律具有良好的抗飞行器参数变化能力,鲁棒性强,对无人机飞行控制系统设计具有重要的参考价值。展开更多
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
文摘在飞行器参数变化时,L_(1)自适应控制相对于传统比例积分微分(proportional integral derivative,PID)控制方法具有理想的控制效果。针对某型存在参数不确定性的无人机,建立了无人机横侧向动力学模型,在对L_(1)自适应控制理论进行研究的基础上,分别设计了L_(1)自适应控制律和比例微分(proportional derivative,PD)控制律,通过算例仿真,对比分析了这两种控制律对无人机滚转角的控制效果。结果表明,L_(1)自适应控制律具有良好的抗飞行器参数变化能力,鲁棒性强,对无人机飞行控制系统设计具有重要的参考价值。
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.