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BP神经网络整定的PID在机器人轨迹跟踪中的应用 被引量:8
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作者 张海荣 舒志兵 《电气传动》 北大核心 2007年第9期36-39,共4页
充分利用BP神经网络能够逼近任意非线性系统的优点,将BP网络和PID控制相结合,解决了多关节机器人的运动轨迹跟踪问题。采用这种方法,可以在线实时调整PID控制器的参数,使其达到最优状态,克服了完全依靠经验离线调整PID参数的缺点,使系... 充分利用BP神经网络能够逼近任意非线性系统的优点,将BP网络和PID控制相结合,解决了多关节机器人的运动轨迹跟踪问题。采用这种方法,可以在线实时调整PID控制器的参数,使其达到最优状态,克服了完全依靠经验离线调整PID参数的缺点,使系统具有更好的鲁棒性和自适应性,其输出也可以通过在线调整达到预期的控制精度。仿真实验证实了该控制策略的正确性和有效性。 展开更多
关键词 机器人轨迹跟踪 BP神经网络 PID控制
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基于控制器输出误差方法的自适应模糊控制及其在机器人轨迹跟踪控制中的应用
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作者 孙炜 王耀南 《机器人》 EI CSCD 北大核心 2001年第S1期616-618,622,共4页
本文提出一种自适应模糊控制器并将之用于机器人轨迹跟踪控制 ,该控制器采用控制器输出误差方法 (COEM) ,根据控制器的输出误差而不是对象的输出误差来在线地调整模糊控制器的参数 ,无须对对象进行辩识 .仿真结果表明该控制器用于机器... 本文提出一种自适应模糊控制器并将之用于机器人轨迹跟踪控制 ,该控制器采用控制器输出误差方法 (COEM) ,根据控制器的输出误差而不是对象的输出误差来在线地调整模糊控制器的参数 ,无须对对象进行辩识 .仿真结果表明该控制器用于机器人轨迹跟踪控制具有很好的性能 。 展开更多
关键词 自适应模糊控制 控制器输出误差方法 机器人轨迹跟踪控制
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基于反演设计的神经网络不确定机器人轨迹跟踪控制研究
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作者 范兴民 王宇 廖芹 《电子世界》 2019年第16期55-56,共2页
针对机器人控制中的非线性和不确定性提出一种基于反演设计和RBF神经网络的自适应控制方法。利用反演技术设计鲁棒自适应控制器,通过RBF神经网络对模型的不确定性进行估计。该方法有效避免可能出现的控制器奇异问题,在设计中不需要估计... 针对机器人控制中的非线性和不确定性提出一种基于反演设计和RBF神经网络的自适应控制方法。利用反演技术设计鲁棒自适应控制器,通过RBF神经网络对模型的不确定性进行估计。该方法有效避免可能出现的控制器奇异问题,在设计中不需要估计系统未知的控制系数矩阵。利用lyapunov理论证明了系统的全局稳定性。仿真实验验证了方法的有效性和优越性。 展开更多
关键词 机器人轨迹跟踪控制 RBF神经网络 反演设计 鲁棒自适应控制器 LYAPUNOV理论 不确定性 机器人控制 全局稳定性
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机器人手臂轨迹跟踪的变增益LPV鲁棒H_∞控制器设计
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作者 郭海峰 窦福谈 鲁宁波 《沈阳理工大学学报》 CAS 2017年第6期56-60,共5页
针对机器人手臂模型中存在动态不确定性和外部干扰的不确定性,引入变增益线性变参数的鲁棒H_∞控制方法,设计了手臂轨迹跟踪控制器。采用拉格朗日法建立机器人手臂轨迹跟踪动态方程;利用变增益线性变参数凸分解技术,将这一动态模型转化... 针对机器人手臂模型中存在动态不确定性和外部干扰的不确定性,引入变增益线性变参数的鲁棒H_∞控制方法,设计了手臂轨迹跟踪控制器。采用拉格朗日法建立机器人手臂轨迹跟踪动态方程;利用变增益线性变参数凸分解技术,将这一动态模型转化为具有凸多面体结构的线性变参数模型;根据鲁棒控制理论和线性矩阵不等式理论,在凸多面体的各个顶点设计反馈控制器,然后利用各个顶点控制器综合得到线性变参数控制器。仿真结果表明,机器人手臂对于关节位置的变化始终具有良好的跟踪性能。 展开更多
关键词 机器人手臂轨迹跟踪 鲁棒H∞控制 变增益 线性变参数 线性矩阵不等式
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机器人的自适应分散跟踪控制
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作者 王洪斌 吴健珍 +1 位作者 王洪瑞 宋维公 《燕山大学学报》 CAS 2001年第z1期49-52,共4页
提出了一种自适应分散控制策略,用于不确定性机器人的轨迹跟踪,该控制器结构简单,而且无需计算回归矩阵,通过对二自由度的机器人的仿真,证明该方法能使跟踪误差快速趋近于零.
关键词 不确定性机器人 轨迹跟踪 自适应控制.
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基于饱和函数的不确定机器人模糊自适应滑模控制 被引量:2
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作者 林雷 王洪瑞 胡雅楠 《机床与液压》 北大核心 2008年第3期137-140,79,共5页
针对模型和参数不确定机器人系统轨迹跟踪问题,在模糊自适应控制的基础上提出了一种新的控制策略,该控制策略把饱和函数、模糊原理与滑模控制有机结合起来,设计了一种模糊自适应滑模控制器。该控制器利用模糊逻辑系统为机器人的动力学... 针对模型和参数不确定机器人系统轨迹跟踪问题,在模糊自适应控制的基础上提出了一种新的控制策略,该控制策略把饱和函数、模糊原理与滑模控制有机结合起来,设计了一种模糊自适应滑模控制器。该控制器利用模糊逻辑系统为机器人的动力学系统建模,设计自适应律调节未知参数,为保证控制力矩输出平滑有界,不存在一般滑模变结构中的抖振现象,采用双曲正切函数代替传统的符号函数。利用李亚普诺夫定理证明了闭环控制系统全局稳定,跟踪误差渐近收敛于零。仿真结果表明了所提出的控制算法的有效性。 展开更多
关键词 机器人轨迹跟踪 模糊自适应控制 饱和函数
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基于PID算法的水下机器人路径及轨迹规划研究
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作者 Abdou Yahouza M.Sani 王京 《智能计算机与应用》 2020年第8期206-211,共6页
AUV(自动水下航行器)是当前海洋勘探研究中最重要的工具之一。为了应对复杂多变的海洋环境,智能水下机器人必须是安全且自主的。自主性体现在水下机器人与水下环境相互作用的能力上,而实时控制,自主轨迹和路径规划是相互作用的重要方面... AUV(自动水下航行器)是当前海洋勘探研究中最重要的工具之一。为了应对复杂多变的海洋环境,智能水下机器人必须是安全且自主的。自主性体现在水下机器人与水下环境相互作用的能力上,而实时控制,自主轨迹和路径规划是相互作用的重要方面之一。本文设计基于PID算法水下机器人的轨迹及几何路径跟踪控制器。通过研究水下机器人的动态模型方程获取的模型参数,并使用Matlab进行控制器模拟实验及分析。 展开更多
关键词 PID MATLAB 水下机器人轨迹和几何路径跟踪
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自适应模糊控制器及其在机器人控制中的应用
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作者 彭涛 李冰 《煤矿机械》 北大核心 2005年第5期136-137,共2页
提出一种自适应模糊控制器并将之用于机器人轨迹跟踪控制,该控制器采用控制器输出误差方法(COEM),根据控制器的输出误差而不是对象的输出误差,来在线地调整模糊控制器的参数,无须对对象进行辩识。仿真结果表明该控制器用于机器人轨迹跟... 提出一种自适应模糊控制器并将之用于机器人轨迹跟踪控制,该控制器采用控制器输出误差方法(COEM),根据控制器的输出误差而不是对象的输出误差,来在线地调整模糊控制器的参数,无须对对象进行辩识。仿真结果表明该控制器用于机器人轨迹跟踪控制具有很好的性能,是一种有效的控制器。 展开更多
关键词 自适应模糊控制 控制器输出误差方法 机器人轨迹跟踪控制
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An adaptive switching control approach for trajectory tracking of robotic manipulators 被引量:1
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作者 杨振 费树岷 +2 位作者 王芳 鲍安平 刘顾全 《Journal of Southeast University(English Edition)》 EI CAS 2016年第2期183-186,共4页
In order to design a suitable controller which can achieve accurate trajectory tracking and a good control performance, and guarantee the stability and robustness of a robot system due to external disturbances error a... In order to design a suitable controller which can achieve accurate trajectory tracking and a good control performance, and guarantee the stability and robustness of a robot system due to external disturbances error and internal parameter variations, an adaptive switching control strategy is proposed. The proposed scheme is designed under the condition of bounded distances and consists of an adaptive switching law and a PD controller. Based on the Lyapunov stability theory, it is proved that the proposed scheme can guarantee the tracking performance of the robotic manipulator and is adapted to varying unknown loads. Simulations are carded out on a two-link robotic manipulator, which illustrate the feasibility and validity of the proposed control scheme and the robustness for variational payloads. 展开更多
关键词 adaptive control switch control roboticmanipulator trajectory tracking
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Nonlinear trajectory tracking control of a new autonomous underwater vehicle in complex sea conditions 被引量:9
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作者 高富东 潘存云 +1 位作者 韩艳艳 张湘 《Journal of Central South University》 SCIE EI CAS 2012年第7期1859-1868,共10页
Autonomous underwater vehicles (AUVs) navigating in complex sea conditions usually require a strong control system to keep the fastness and stability. The nonlinear trajectory tracking control system of a new AUV in c... Autonomous underwater vehicles (AUVs) navigating in complex sea conditions usually require a strong control system to keep the fastness and stability. The nonlinear trajectory tracking control system of a new AUV in complex sea conditions was presented. According to the theory of submarines,the six-DOF kinematic and dynamic models were decomposed into two mutually non-coupled vertical and horizontal plane subsystems. Then,different sliding mode control algorithms were used to study the trajectory tracking control. Because the yaw angle and yaw angle rate rather than the displacement of the new AUV can be measured directly on the horizontal plane,the sliding mode control algorithm combining cross track error method and line of sight method was used to fulfill its high-precision trajectory tracking control in the complex sea conditions. As the vertical displacement of the new AUV can be measured,in order to achieve the tracking of time-varying depth signal,a stable sliding mode controller was designed based on the single-input multi-state system,which took into account the characteristic of the hydroplane and the amplitude and rate constraints of the hydroplane angle. Moreover,the application of dynamic boundary layer can improve the robustness and control accuracy of the system. The computational results show that the designed sliding mode control systems of the horizontal and vertical planes can ensure the trajectory tracking performance and accuracy of the new AUV in complex sea conditions. The impacts of currents and waves on the sliding mode controller of the new AUV were analyzed qualitatively and quantitatively by comparing the trajectory tracking performance of the new AUV in different sea conditions,which provides an effective theoretical guidance and technical support for the control system design of the new AUV in real complex environment. 展开更多
关键词 complex sea condition autonomous underwater vehicle (AUV) trajectory tracking sliding mode control
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Dynamic modelling and PFL-based trajectory tracking control for underactuated cable-driven truss-like manipulator 被引量:1
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作者 DING Shu-chen PENG Li +2 位作者 QIAO Shang-ling LIU Rong-qiang JOSEPHAT Bundi 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第10期3127-3146,共20页
In recent years,an innovative underactuated robot was developed,named as underactuated cable-driven trusslike manipulator(UCTM),to be suitable in aerospace applications.However,there has been strong consensus that the... In recent years,an innovative underactuated robot was developed,named as underactuated cable-driven trusslike manipulator(UCTM),to be suitable in aerospace applications.However,there has been strong consensus that the stabilization of planar underactuated manipulators without gravity is a great challenge since the system includes a second order nonholonomic constraint and most classical control methods are not suitable for this kind of system.Furthermore,the complexity of the truss-like structure results in tremendous difficulty of computational complicacy and high nonlinearity during dynamic modelling in addition to controller design.It is paramount to solve these difficulties for UCTM's future applications.To solve the above difficulties,this paper presents a dynamic modelling method for UCTM and a trajectory tracking control method based on partial feedback linearization(PFL)that fulfills the control goal of moving UCTM from its original position to a desired position by tracking a given trajectory of the joint angles.To achieve this,a model equivalent method is proposed to make UCTM equivalent with a three-link manipulator in the sense of dynamic behavior.Then the Lagrangian equation combined with complex vector method is proposed in the dynamic modelling process of UCTM,which simplifies the derivation procedure.Based on the established dynamic model,a coordinate transformation method is proposed to transform the control force matrix into the conventional form of an underactuated system,so that the control force can be separated from the unactuated term.The PFL method in combination with the LQR control method is then proposed to realize the targets that the joint angles can track given desired trajectory.Simulation experiments are conducted to verify the correctness and effectiveness of the proposed methods. 展开更多
关键词 underactuated robot trajectory tracking control partial feedback linearization non-linear control
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Adaptive trajectory tracking control of two-wheeled self-balance robot 被引量:1
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作者 秦勇 《High Technology Letters》 EI CAS 2009年第1期38-43,共6页
Wheeled mobile robot is one of the well-known nonholonomic systems. A two-wheeled sell-balance robot is taken as the research objective. This paper carried out a detailed force analysis of the robot and established a ... Wheeled mobile robot is one of the well-known nonholonomic systems. A two-wheeled sell-balance robot is taken as the research objective. This paper carried out a detailed force analysis of the robot and established a non-linear dynamics model. An adaptive tracking controller for the kinematic model of a nonhotonomic mobile robot with unknown parameters is also proposed. Using control Lyapunov function (CLF), the controller's global asymptotic stability has been proven. The adaptive trajectory tracking controller decreases the disturbance in the course of tracking control and enhances the real-time control characteristics. The simulation result indicated that the wheeled mobile robot tracking can be effectively controlled. 展开更多
关键词 wheeled mobile robot adaptive control trajectory tracking asymptotic stability
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Dynamic Velocity Feed-Forward Compensation Control with RBF-NN System Identification for Industrial Robots 被引量:1
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作者 宋伟科 肖聚亮 +1 位作者 王刚 王国栋 《Transactions of Tianjin University》 EI CAS 2013年第2期118-126,共9页
A dynamic velocity feed-forward compensation (RBF-NN) dynamic model identification was presented for control (DVFCC) approach with RBF neural network the adaptive trajectory tracking of industrial robots. The prop... A dynamic velocity feed-forward compensation (RBF-NN) dynamic model identification was presented for control (DVFCC) approach with RBF neural network the adaptive trajectory tracking of industrial robots. The proposed control approach combined the advantages of traditional feedback closed-loop position control and computed torque control based on inverse dynamic model. The feed-forward compensator used a nominal robot dynamics as accurate dynamic model and on-line identification with RBF-NN as uncertain part to improve dynamic modeling accu- racy. The proposed compensation was applied as velocity feed-forward by an inverse velocity controller that can con- vert torque signal into velocity in the standard industrial controller. Then, the need for a torque control interface was avoided in the real-time dynamic control of industrial robot. The simulations and experiments were carried out on a gas cutting manipulator. The results show that the proposed control approach can reduce steady-state error, suppress overshoot and enhance tracking accuracy and efficiency in joint space and Cartesian space, especially under high- speed condition. 展开更多
关键词 dynamic velocity feed-forward compensation control RBF-NN inverse velocity controller gas cutting manipulator
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自适应、自学习、自整定和自组织系统
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《电子科技文摘》 2001年第5期151-152,共2页
0109118机器人轨迹跟踪的一种自适应神经鲁棒控制[刊,译,英]/牛五刚//控制理论与应用.—2000,17(6).—924~928(K)针对不确定机器人轨迹跟踪问题,提出了一种基于神经网络的自适应鲁棒控制。该控制方案由一个PD 反馈和一个神经动态补偿... 0109118机器人轨迹跟踪的一种自适应神经鲁棒控制[刊,译,英]/牛五刚//控制理论与应用.—2000,17(6).—924~928(K)针对不确定机器人轨迹跟踪问题,提出了一种基于神经网络的自适应鲁棒控制。该控制方案由一个PD 反馈和一个神经动态补偿器组成,其特点是不需要系统不确定性上界的先验知识,而且避免了求解惯性矩阵逆。通过利用一个 RBF 神经网络自适应学习系统不确定性的未知上界。 展开更多
关键词 自适应控制方法 机器人轨迹跟踪 理论与应用 神经网络系统 系统不确定性 自适应鲁棒控制 自适应学习 控制方案 动态补偿器 动态神经网络
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A generalized trajectory tracking controller for robot manipulators with bounded inputs 被引量:1
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作者 Hua-shan LIU Shi-qiang ZHU 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2009年第10期1500-1508,共9页
A generalized controller based on stability theory of singularly perturbed systems is proposed,to deal with the problem of bounded actuator inputs in robot trajectory tracking control.The saturation function with erro... A generalized controller based on stability theory of singularly perturbed systems is proposed,to deal with the problem of bounded actuator inputs in robot trajectory tracking control.The saturation function with error-gain matrix is applied in the torque control law,which ensures the upper bound of torque inputs in any given limited range.Through appropriately setting the entries of the error-gain matrix,the tracking performance can be improved.Moreover,a pseudo signal is generated from a linear filter to substitute for the actual velocity error,eliminating the need for velocity measurements.Finally,to verify the ef-fectiveness of the generalized controller,a new saturated controller with error-gain-contained arc tangent function is designed.Comparison experiments show that the proposed controller can strictly guarantee the bound of the torque inputs in situations with non-zero initial tracking errors,and gives a better tracking result than other controllers. 展开更多
关键词 ROBOT Tracking control Singular perturbation Bounded input
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