[1] | 吴文祥 . 多自由度串联机器人关节摩擦分析与低速高精度运动控制[D]. 杭州:浙江大学, 2013. | [2] | CHENG C, XU W, SHANG J . Optimal distribution of the actuating torques for a redundantly actuated masticatory robot with two higher kinematic pairs[J].Nonlinear Dynamics, 2014(2):1235-1255. | [3] | SAHA A, BHATTACHARYA B, WAHI P . A comparative study on the control of friction-driven oscillations by time-delayed feedback[J]. Nonlinear Dynamics, 2010(1):15-37. | [4] | PUTRA D, NIJMEIJER H , WOUW N V D. Analysis of undercompensation and overcompensation of friction in 1DOF mechanical systems[J]. Automatica, 2007,43(8):1387-1394. | [5] | ARMSTRONG-HELOUVRY B, DUPONT P , et al. A survey of models, analysis tools and compensation methods for the control of machines with friction[J]. Automatica, 1994,30(7):1083-1138. | [6] | 向红标, 王收军, 张春秋 , 等. Stribeck模型自适应滑模摩擦补偿控制[J]. 中国测试, 2015,41(9):92-95. | [7] | 付永领, 牛建军, 王岩 . Stribeck模型模糊整定及其在转台控制中的应用[J].北京航空航天大学学报, 2009(6):35-39. | [8] | 张来福, 田赟, 姜敏 , 等. 基于遗传算法的伺服系统摩擦参数辨识与仿真[J]. 计算机应用, 2016,36(z1):110-112. | [9] | 晋超琼, 张葆, 李贤涛 , 等. 基于扰动观测器的光电稳定平台摩擦补偿策略[J].吉林大学学报(工学版), 2017(6):1-9 | [10] | Cong S, Deng K, Shang W , et al. Isolation control for inertially stabilized platform based on nonlinear friction compensation[J].Nonlinear Dynamics, 2016(3):1123-1133. | [11] | 周旋, 李世华 . 基于摩擦和扰动补偿的永磁同步电机伺服系统控制方法研究[ C]//第二十九届中国控制会议.北京:中国自动化学会控制理论专业委员会, 2010: 6. | [12] | ZHAO S, CUI L, LIU G, et al. An improved torque feed-forward control with observer-based inertia identification in PMSM drives [C]//15th International Conference on Electrical Machines and Systems.IEEE, 2012: 1-6. | [13] | 潘海鸿, 王玲, 陈琳 , 等. PMSM伺服系统速度环高阶模型实验建模及分析[J]. 微特电机, 2016,44(4):52-55. | [14] | 倪风雷, 刘宏, 介党阳 . 基于速度观测器的GMS摩擦模型辨识与补偿[J]. 电机与控制学报, 2012,16(11):70-75 |
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