针对欠驱动机械臂系统的快速稳定控制中存在着的系统过程噪声和传感器观测噪声的干扰问题,设计了具有回路传输恢复的线性二次高斯(linear quadratic Gaussian control with loop transfer recovery, LQG/LTR)控制器。该控制器由卡尔曼...针对欠驱动机械臂系统的快速稳定控制中存在着的系统过程噪声和传感器观测噪声的干扰问题,设计了具有回路传输恢复的线性二次高斯(linear quadratic Gaussian control with loop transfer recovery, LQG/LTR)控制器。该控制器由卡尔曼滤波器和最优状态反馈增益调节器两部分组成,并进一步使用了回路传输恢复技术提高了控制系统稳定裕度。仿真试验表明:LQG/LTR控制方法相比于线性二次型调节器控制方法具有更加出色的动态品质,能很好地抑制噪声造成的系统不稳定问题,使得机械臂快速稳定在期望位置,具备良好的稳定性和鲁棒性。展开更多
A control strategy based on LQG/LTR theory for steer-by-wire (SBW) system is proposed in this paper. Firstly, the models of the SBW system and the whole vehicle are constructed. econdly, the control strategy of LQG f...A control strategy based on LQG/LTR theory for steer-by-wire (SBW) system is proposed in this paper. Firstly, the models of the SBW system and the whole vehicle are constructed. econdly, the control strategy of LQG for SBW system is proposed, in which the LTR is utilized to eliminate the effect from the Kalman filter. Thirdly, simulations based on the co- simulation platform of MATLAB/Simulink and Carsim are performed with the proposed control strategy to identify its performance. At last, field experiments are conducted to further verify the feasibility of the proposed control strategy in real application. The simulation and experiment results indicate that the proposed control strategy has good stability, robustness and feasibility in real application, and is more effective in practical application of SBW system.展开更多
文摘针对欠驱动机械臂系统的快速稳定控制中存在着的系统过程噪声和传感器观测噪声的干扰问题,设计了具有回路传输恢复的线性二次高斯(linear quadratic Gaussian control with loop transfer recovery, LQG/LTR)控制器。该控制器由卡尔曼滤波器和最优状态反馈增益调节器两部分组成,并进一步使用了回路传输恢复技术提高了控制系统稳定裕度。仿真试验表明:LQG/LTR控制方法相比于线性二次型调节器控制方法具有更加出色的动态品质,能很好地抑制噪声造成的系统不稳定问题,使得机械臂快速稳定在期望位置,具备良好的稳定性和鲁棒性。
基金supported by the National Natural Science Foundation of China (Grant No. 51375007)the Fundamental Research Funds for the Central Universities (Grant No. NE2016002)Open Foundation of the State Key Laboratory of Fluid Power and Mechatronic Systems (Grant No.GZKF-201605)
文摘A control strategy based on LQG/LTR theory for steer-by-wire (SBW) system is proposed in this paper. Firstly, the models of the SBW system and the whole vehicle are constructed. econdly, the control strategy of LQG for SBW system is proposed, in which the LTR is utilized to eliminate the effect from the Kalman filter. Thirdly, simulations based on the co- simulation platform of MATLAB/Simulink and Carsim are performed with the proposed control strategy to identify its performance. At last, field experiments are conducted to further verify the feasibility of the proposed control strategy in real application. The simulation and experiment results indicate that the proposed control strategy has good stability, robustness and feasibility in real application, and is more effective in practical application of SBW system.