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Dynamic analysis, simulation, and control of a 6-DOF IRB-120 robot manipulator using sliding mode control and boundary layer method 被引量:3
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作者 Mojtaba HADI BARHAGHTALAB Vahid MEIGOLI +2 位作者 Mohammad Reza GOLBAHAR HAGHIGHI Seyyed Ahmad NAYERI Arash EBRAHIMI 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第9期2219-2244,共26页
Because of its ease of implementation,a linear PID controller is generally used to control robotic manipulators.Linear controllers cannot effectively cope with uncertainties and variations in the parameters;therefore,... Because of its ease of implementation,a linear PID controller is generally used to control robotic manipulators.Linear controllers cannot effectively cope with uncertainties and variations in the parameters;therefore,nonlinear controllers with robust performance which can cope with these are recommended.The sliding mode control(SMC)is a robust state feedback control method for nonlinear systems that,in addition having a simple design,efficiently overcomes uncertainties and disturbances in the system.It also has a very fast transient response that is desirable when controlling robotic manipulators.The most critical drawback to SMC is chattering in the control input signal.To solve this problem,in this study,SMC is used with a boundary layer(SMCBL)to eliminate the chattering and improve the performance of the system.The proposed SMCBL was compared with inverse dynamic control(IDC),a conventional nonlinear control method.The kinematic and dynamic equations of the IRB-120 robot manipulator were initially extracted completely and accurately,and then the control of the robot manipulator using SMC was evaluated.For validation,the proposed control method was implemented on a 6-DOF IRB-120 robot manipulator in the presence of uncertainties.The results were simulated,tested,and compared in the MATLAB/Simulink environment.To further validate our work,the results were tested and confirmed experimentally on an actual IRB-120 robot manipulator. 展开更多
关键词 robot manipulator control irb-120 robot sliding mode control sliding mode control with boundary layer inverse dynamic control
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地质钻杆移摆系统运动学及动力学仿真实验研究
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作者 刘欣 胡远彪 《煤矿机械》 2023年第6期56-59,共4页
在机器人夹持柔性负载进行移摆时,往往伴随着残余振动的存在,为了探索残余振动的产生原因和实现振动抑制,需要对机器人进行运动学及动力学分析。以地质钻杆移摆系统为例,对其所用的IRB-660型机器人进行D-H运动学建模,计算运动学齐次变... 在机器人夹持柔性负载进行移摆时,往往伴随着残余振动的存在,为了探索残余振动的产生原因和实现振动抑制,需要对机器人进行运动学及动力学分析。以地质钻杆移摆系统为例,对其所用的IRB-660型机器人进行D-H运动学建模,计算运动学齐次变换矩阵并在MATLAB中进行逆运动学求解。随后,根据工况设计直线移摆轨迹,设置关键点并求出对应关节角度,在ADAMS中进行动力学仿真并且设计动力学实验,验证仿真的准确性,得出移摆过程中夹持末端三轴方向加速变化情况。仿真实验结果表明:运动学模型建立正确,动力学仿真与实验可以相互验证,振动趋势较为一致,且最大加速度变化均发生在加速度方向改变处,但仍存在一定误差,为后续振动抑制的研究打下了基础。 展开更多
关键词 irb-660型机器人 运动学 ADAMS仿真 动力学
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