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The Non-Singular Fast Terminal Sliding Mode Control of Interior Permanent Magnet Synchronous Motor Based on Deep Flux Weakening Switching Point Tracking 被引量:1
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作者 Xiangfei Li Yang Yin +2 位作者 Yang Zhou Wenchang Liu Kaihui Zhao 《Energy Engineering》 EI 2023年第2期277-297,共21页
This paper presents a novel non-singular fast terminal sliding mode control(NFTSMC)based on the deep flux weakening switching point tracking method in order to improve the control performance of permanent interior mag... This paper presents a novel non-singular fast terminal sliding mode control(NFTSMC)based on the deep flux weakening switching point tracking method in order to improve the control performance of permanent interior magnet synchronous motor(IPMSM)drive systems.The mathematical model of flux weakening(FW)control is established,and the deep flux weakening switching point is calculated accurately by analyzing the relationship between the torque curve and voltage decline curve.Next,a second-order NFTSMC is designed for the speed loop controller to ensure that the system converges to the equilibrium state in finite time.Then,an extended sliding mode disturbance observer(ESMDO)is designed to estimate the uncertainty of the system.Finally,compared with both the PI control and sliding mode control(SMC)by simulations and experiments with different working conditions,the method proposed has the merits of accelerating convergence,improving steady-state accuracy,and minimizing the current and torque pulsation. 展开更多
关键词 Interior permanentmagnet synchronousmotor(IPMSM) flux weakening(FW)control non-singular fast terminal sliding mode control(NFTSMC) extended sliding mode disturbance observer(ESMDO)
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Dual sliding mode coordinated control of manipulator grasping system with visual assistance
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作者 Pengxin Zhang Haisheng Yu +3 位作者 Xiangxiang Meng Zhe Li Qing Yang Xunkai Gao 《Control Theory and Technology》 EI CSCD 2024年第1期106-121,共16页
The operation efficiency of the manipulator is placed in the primary position in automatic production. This paper proposes a coordinated control strategy for joint servo and visual servo to enable timely transfer and ... The operation efficiency of the manipulator is placed in the primary position in automatic production. This paper proposes a coordinated control strategy for joint servo and visual servo to enable timely transfer and accurate gripping in the working area. Aiming at the issues of chattering and slow convergence of traditional sliding mode controller, a fast variable power reaching rate on the basis of the non-singular fast terminal sliding mode controller is proposed, which can effectively reduce the convergence time and chattering. For the purpose of addressing the problem that the traditional visual servo control method is sensitive to the environment, a visual servo controller based on integral sliding mode is proposed, to ensure the favorable positioning accuracy of the manipulator. Based on the two proposed controllers mentioned above, a coordinated control strategy is used to implement the control of the manipulator. Finally, the upper computer software is developed using the C# programming language to monitor the workstation. The feasibility of the above-mentioned method is verified through multiple simulations and experiments. 展开更多
关键词 Automatic production Joint servo Visual servo Coordinated control non-singular fast terminal sliding mode Integral sliding mode
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Active fault-tolerant control scheme of aerial manipulators with actuator faults 被引量:1
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作者 DING Ya-dong WANG Yao-yao +1 位作者 JIANG Su-rong CHEN Bai 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第3期771-783,共13页
In this paper,an active fault-tolerant control(FTC)strategy of aerial manipulators based on non-singular terminal sliding mode(NTSM)and extended state observer(ESO)is proposed.Firstly,back-stepping technology is adopt... In this paper,an active fault-tolerant control(FTC)strategy of aerial manipulators based on non-singular terminal sliding mode(NTSM)and extended state observer(ESO)is proposed.Firstly,back-stepping technology is adopted as the control framework to ensure the global asymptotic stability of the closed-loop system.Next,the NTSM with estimated parameters of actuator faults is used as main robustness controller to deal with actuator faults.Then,the ESO is utilized to estimate and compensate the complex coupling effects and external disturbances.The Lyapunov stability theory can guarantee the asymptotic stability of aerial manipulators system with actuator faults and external disturbances.The proposed FTC scheme considers both actuator fault and modelling errors,combined with the adaptive law of actuator fault,which has better performance than traditional FTC scheme,such as NTSM.Finally,several comparative simulations are conducted to illustrate the effectiveness of the proposed FTC scheme. 展开更多
关键词 aerial manipulators back-stepping technology fault-tolerant control non-singular terminal sliding mode control extended state observer
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A novel MPTC sensorless control strategy for ANFTSMC with ESO to control PMSM
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作者 ZHANG Bin WU Xiaoliang +2 位作者 YANG Jianfeng YANG Ping SUN Xuewei 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2021年第4期449-462,共14页
Aiming at the problem that the traditional control strategy of permanent magnet synchronous motor(PMSM)for electric vehicles has low control performance,a novel adaptive non-singular fast terminal sliding mode control... Aiming at the problem that the traditional control strategy of permanent magnet synchronous motor(PMSM)for electric vehicles has low control performance,a novel adaptive non-singular fast terminal sliding mode control(ANFTSMC)model predictive torque control(MPTC)strategy is proposed.A new adaptive exponential approach rate is designed,and the traditional switching function sgn()is replaced by the hyperbolic tangent function tanh().A new ANFTSMC with extended state observer(ESO)is constructed as the speed regulator of the system,and ESO can observe disturbances.This improved method weakens chattering and improves the robustness of the system.To realize sensorless control of the speed control system,an ESO speed observer based on tanh(Fal)is constructed.Compared with the traditional ESO based on Fal function,the observation error is smaller,and the observation accuracy is higher.Finally,aiming at the model predictive torque control strategy used,a new objective function construction method is proposed,which avoids the design of weight coefficient,and the traditional voltage vector selection method is improved and optimized,which reduces the calculation amount of the algorithm. 展开更多
关键词 permanent magnet synchronous motors(PMSM) adaptive fast non-singular terminal sliding mode control(ANFTSMC) extended state observer(ESO) model predictive torque control(MPTC)
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驱控一体7DOF机械臂位置控制技术研究 被引量:2
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作者 陈罡 吴菁 +1 位作者 金贵阳 严楠 《机电工程》 CAS 北大核心 2022年第12期1747-1754,共8页
7自由度(7DOF)机械臂的位置控制存在模型不确定性和摩擦力、重力矩等未知外部干扰,为此,开发了一种7DOF机械臂驱控一体式控制器。首先,设计了基于高级精简指令集计算机(ARM)+数字信号处理器(DSP)+现场可编程门阵列(FPGA)架构的7DOF机械... 7自由度(7DOF)机械臂的位置控制存在模型不确定性和摩擦力、重力矩等未知外部干扰,为此,开发了一种7DOF机械臂驱控一体式控制器。首先,设计了基于高级精简指令集计算机(ARM)+数字信号处理器(DSP)+现场可编程门阵列(FPGA)架构的7DOF机械臂驱控一体式控制器方案,确保有足够的计算性能;其次,提出了7DOF机械臂多电机协同控制方法,提高了机械臂位置控制系统的精度和稳定性;然后,设计了基于非线性扰动观测器与快速连续非奇异终端滑膜的复合控制律,用于补偿外界干扰及系统不确定性,同时保证了系统的快速收敛;最后,进行了机械臂关节电机位置控制、速度控制、恒力矩控制、基于非线性扰动观测器的滑模位置控制等实验,对驱控一体式控制方案和复合控制策略的有效性进行了验证。研究结果表明:采用的驱控一体式控制器与多电机位置协同控制方法,能够确保7DOF机械臂关节电机的位置、速度和恒力矩控制稳态误差在1%以内;相比比例积分微分(PID)位置控制,基于非线性扰动观测器的快速连续非奇异终端滑模复合位置控制策略的超调量、响应速度、稳态精度等性能均提高了10%~15%,可以满足机械臂高速高精伺服控制要求。 展开更多
关键词 高级精简指令集计算机 数字信号处理器 现场可编程门阵列 非线性扰动观测器 快速连续非奇异终端滑模控制 一体式控制器
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Accelerated Landweber iteration based control allocation for fault tolerant control of reusable launch vehicle 被引量:11
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作者 Changzhu WEI Mingze WANG +1 位作者 Baogang LU Jialun PU 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2022年第2期175-184,共10页
This paper presents a novel Fault Tolerant Control(FTC)scheme based on accelerated Landweber iteration and redistribution mechanism for a horizontal takeoff horizontal landing reusable launch vehicle(RLV).First,an ada... This paper presents a novel Fault Tolerant Control(FTC)scheme based on accelerated Landweber iteration and redistribution mechanism for a horizontal takeoff horizontal landing reusable launch vehicle(RLV).First,an adaptive law based on fixed-time non-singular fast terminal sliding mode control(NFTSMC),which focuses on the attitude tracking controller design for RLV in the presence of model couplings,parameter uncertainties and external disturbances,is proposed to produce virtual control command.On this basis,a novel Control Allocation(CA)based on accelerated Landwber iteration is presented to realize proportional allocation of virtual control command among the actuators according to the effective gain as well as the distance from the current position of actuator to corresponding saturation limit.Meanwhile a novel redistribution mechanism is introduced to redistribute oversaturated command among healthy actuators(non-faulty or redundant).The proposed method can be applied to a real-time FTC system so that the controller reconfiguring is not required in case of actuator faults.Finally,the effectiveness of the proposed method is demonstrated by numerical simulations. 展开更多
关键词 Accelerate Landweber iteration Adaptive non-singular fast terminal sliding mode control control allocation Fault tolerant control Redistribution mechanism
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Distributed game strategy for unmanned aerial vehicle formation with external disturbances and obstacles 被引量:3
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作者 Yang YUAN Yimin DENG +1 位作者 Sida LUO Haibin DUAN 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2022年第7期1020-1031,共12页
We investigate a distributed game strategy for unmanned aerial vehicle(UAV)formations with external disturbances and obstacles.The strategy is based on a distributed model predictive control(MPC)framework and Levy fli... We investigate a distributed game strategy for unmanned aerial vehicle(UAV)formations with external disturbances and obstacles.The strategy is based on a distributed model predictive control(MPC)framework and Levy flight based pigeon inspired optimization(LFPIO).First,we propose a non-singular fast terminal sliding mode observer(NFTSMO)to estimate the influence of a disturbance,and prove that the observer converges in fixed time using a Lyapunov function.Second,we design an obstacle avoidance strategy based on topology reconstruction,by which the UAV can save energy and safely pass obstacles.Third,we establish a distributed MPC framework where each UAV exchanges messages only with its neighbors.Further,the cost function of each UAV is designed,by which the UAV formation problem is transformed into a game problem.Finally,we develop LFPIO and use it to solve the Nash equilibrium.Numerical simulations are conducted,and the efficiency of LFPIO based distributed MPC is verified through comparative simulations. 展开更多
关键词 Distributed game strategy Unmanned aerial vehicle(UAV) Distributed model predictive control(MPC) Levy flight based pigeon inspired optimization(LFPIO) non-singular fast terminal sliding mode observer(NFTSMO) Obstacle avoidance strategy
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