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Trajectory tracking and obstacle avoidance method for robots based on fast terminal sliding mode 被引量:4
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作者 CAO Zhi-bin YANG Wei +1 位作者 SHAO Xing-ling LIU Ning 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2020年第1期78-86,共9页
For accurate trajectory tracking and obstacle avoidance in finite time of a nonholonomic mobile robot,a trajectory tracking controller based on global fast terminal sliding mode method is proposed,which has the advant... For accurate trajectory tracking and obstacle avoidance in finite time of a nonholonomic mobile robot,a trajectory tracking controller based on global fast terminal sliding mode method is proposed,which has the advantages of chattering-free and adjustable convergence time.First of all,the kinematics model of the robot is established in mobile carrier coordinates.Secondly,the global structure including terminal attractor and exponential convergence of the fast terminal sliding mode trajectory tracking controller is proved by Lyapunov stability theory,ensuring that the trajectory and heading angle tracking error converges to a smaller zero range in finite time.Finally,the artificial potential field obstacle avoidance method is introduced to make the robot not only track the reference trajectory strictly,but also avoid the obstacles.The simulation results show that the proposed method can achieve a stable tracking control in finite time for a given reference trajectory. 展开更多
关键词 trajectory tracking global fast terminal sliding mode adjustable convergence time chattering free artificial potential field method
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Improved Nonsingular Fast Terminal Sliding Mode Control of Unmanned Underwater Hovering Vehicle 被引量:1
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作者 HE Chenlu FENG Zhengping 《Journal of Shanghai Jiaotong university(Science)》 EI 2022年第3期393-401,共9页
An improved nonsingular fast terminal sliding mode manifold based on scaled state error is proposed in this paper.It can significantly accelerate the convergence rate of the state error which is initially far from the... An improved nonsingular fast terminal sliding mode manifold based on scaled state error is proposed in this paper.It can significantly accelerate the convergence rate of the state error which is initially far from the origin and achieve the fixed-time convergence.In addition,conventional double power term based reaching law is improved to ensure the convergence of sliding state in the presence of disturbances.The proposed approach is applied to the hovering control of an unmanned underwater vehicle.The controller exhibits both fast convergence and strong robustness to model uncertainty and external disturbances. 展开更多
关键词 nonsingular fast terminal sliding mode double power reaching law hovering control underwater vehicle
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Nonsingular Fast Terminal Sliding Mode Control Based on Nonlinear Disturbance Observer for a Quadrotor 被引量:1
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作者 ZHAO Jing WANG Peng +2 位作者 SUN Yanfei XU Fengyu XIE Fei 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2022年第2期219-230,共12页
Given external disturbances and system uncertainties,a nonsingular fast terminal sliding mode control(NFTSMC)method integrated a nonlinear disturbance observer(NDO)is put forward for quadrotor aircraft.First,a NDO is ... Given external disturbances and system uncertainties,a nonsingular fast terminal sliding mode control(NFTSMC)method integrated a nonlinear disturbance observer(NDO)is put forward for quadrotor aircraft.First,a NDO is proposed to estimate the actual values of uncertainties and disturbances.Second,the NFTSM controller based on the reaching law is designed for the attitude subsystem(inner loop),and the control strategy can ensure Euler angles’fast convergence and stability of the attitude subsystem.Moreover,the NFTSMC strategy combined with backstepping is proposed for the position subsystem(outer loop),which can ensure subsystem tracking performance.Finally,comparative simulations show the trajectory tracking performance of the proposed method is superior to that of the traditional sliding mode control(SMC)and the SM integral backstepping control under uncertainties and disturbances. 展开更多
关键词 quadrotor aircraft nonlinear disturbance observer(NDO) nonsingular fast terminal sliding mode control(NFTSMC) disturbances
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Fuzzy Fractional-Order Fast Terminal Sliding Mode Control for Some Chaotic Microcomponents 被引量:1
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作者 Jianxin Han Qichang Zhang +1 位作者 Wei Wang Jing Wang 《Transactions of Tianjin University》 EI CAS 2017年第3期289-294,共6页
In this paper, we propose a novel fractional-order fast terminal sliding mode control method, based on an integer-order scheme, to stabilize the chaotic motion of two typical microcomponents. We apply the fractional L... In this paper, we propose a novel fractional-order fast terminal sliding mode control method, based on an integer-order scheme, to stabilize the chaotic motion of two typical microcomponents. We apply the fractional Lyapunov stability theorem to analytically guarantee the asymptotic stability of a system characterized by uncertainties and external disturbances. To reduce chattering, we design a fuzzy logic algorithm to replace the traditional signum function in the switching law. Lastly, we perform numerical simulations with both the fractional-order and integer-order control laws. Results show that the proposed control law is effective in suppressing chaos. © 2017, Tianjin University and Springer-Verlag Berlin Heidelberg. 展开更多
关键词 Asymptotic stability Calculations Chaotic systems Control theory Fuzzy logic Fuzzy sets Motion control
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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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Grey Wolf Optimization Based Tuning of Terminal Sliding Mode Controllers for a Quadrotor 被引量:2
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作者 Rabii Fessi Hegazy Rezk Soufiene Bouallègue 《Computers, Materials & Continua》 SCIE EI 2021年第8期2265-2282,共18页
The research on Unmanned Aerial Vehicles(UAV)has intensified considerably thanks to the recent growth in the fields of advanced automatic control,artificial intelligence,and miniaturization.In this paper,a Grey Wolf O... The research on Unmanned Aerial Vehicles(UAV)has intensified considerably thanks to the recent growth in the fields of advanced automatic control,artificial intelligence,and miniaturization.In this paper,a Grey Wolf Optimization(GWO)algorithm is proposed and successfully applied to tune all effective parameters of Fast Terminal Sliding Mode(FTSM)controllers for a quadrotor UAV.A full control scheme is first established to deal with the coupled and underactuated dynamics of the drone.Controllers for altitude,attitude,and position dynamics become separately designed and tuned.To work around the repetitive and time-consuming trial-error-based procedures,all FTSM controllers’parameters for only altitude and attitude dynamics are systematically tuned thanks to the proposed GWO metaheuristic.Such a hard and complex tuning task is formulated as a nonlinear optimization problem under operational constraints.The performance and robustness of the GWO-based control strategy are compared to those based on homologous metaheuristics and standard terminal sliding mode approaches.Numerical simulations are carried out to show the effectiveness and superiority of the proposed GWO-tuned FTSM controllers for the altitude and attitude dynamics’stabilization and tracking.Nonparametric statistical analyses revealed that the GWO algorithm is more competitive with high performance in terms of fastness,non-premature convergence,and research exploration/exploitation capabilities. 展开更多
关键词 QUADROTOR cascade control fast terminal sliding mode control grey wolf optimizer nonparametric Friedman analysis
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Design of Second Order Sliding Mode and Sliding Mode Algorithms:A Practical Insight to DC-DC Buck Converter 被引量:2
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作者 Seyed Mehdi RakhtAla Monazzahalsadat Yasoubi Hassan HosseinNia 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2017年第3期483-497,共15页
This paper presents a simple and systematic approach to design second order sliding mode controller for buck converters.The second order sliding mode control(SOSMC)based on twisting algorithm has been implemented to c... This paper presents a simple and systematic approach to design second order sliding mode controller for buck converters.The second order sliding mode control(SOSMC)based on twisting algorithm has been implemented to control buck switch mode converter.The idea behind this strategy is to suppress chattering and maintain robustness and finite time convergence properties of the output voltage error to the equilibrium point under the load variations and parametric uncertainties.In addition,the influence of the twisting algorithm on the performance of closed-loop system is investigated and compared with other algorithms of first order sliding mode control such as adaptive sliding mode control(ASMC),nonsingular terminal sliding mode control(NTSMC).In comparative evaluation,the transient response of the output voltage with the step change in the load and the start-up response of the output voltage with the step change in the input voltage of buck converter were compared.Experimental results were obtained from a hardware setup constructed in laboratory.Finally,for all of the surveyed control methods,the theoretical considerations,numerical simulations,and experimental measurements from a laboratory prototype are compared for different operating points.It is shown that the proposed twisting method presents an improvement in steady state error and settling time of output voltage during load changes. 展开更多
关键词 DC-DC buck converter non-singular-terminal sliding mode second order sliding mode twisting algorithm
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Controlling chaos based on a novel intelligent integral terminal sliding mode control in a rod-type plasma torch
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作者 Safa Khari Zahra Rahmani Behrooz Rezaie 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第5期11-22,共12页
An integral terminal sliding mode controller is proposed in order to control chaos in a rod-type plasma torch system.In this method, a new sliding surface is defined based on a combination of the conventional sliding ... An integral terminal sliding mode controller is proposed in order to control chaos in a rod-type plasma torch system.In this method, a new sliding surface is defined based on a combination of the conventional sliding surface in terminal sliding mode control and a nonlinear function of the integral of the system states. It is assumed that the dynamics of a chaotic system are unknown and also the system is exposed to disturbance and unstructured uncertainty. To achieve a chattering-free and high-speed response for such an unknown system, an adaptive neuro-fuzzy inference system is utilized in the next step to approximate the unknown part of the nonlinear dynamics. Then, the proposed integral terminal sliding mode controller stabilizes the approximated system based on Lyapunov's stability theory. In addition, a Bee algorithm is used to select the coefficients of integral terminal sliding mode controller to improve the performance of the proposed method. Simulation results demonstrate the improvement in the response speed, chattering rejection, transient response,and robustness against uncertainties. 展开更多
关键词 CHAOS rod-type plasma torch intelligent integral terminal sliding mode control Bee algorithm
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Dual sliding mode coordinated control of manipulator grasping system with visual assistance 被引量:1
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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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Non-Negative Adaptive Mechanism-Based Sliding Mode Control for Parallel Manipulators with Uncertainties 被引量:1
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作者 Van-Truong Nguyen 《Computers, Materials & Continua》 SCIE EI 2023年第2期2771-2787,共17页
In this paper,a non-negative adaptive mechanism based on an adaptive nonsingular fast terminal sliding mode control strategy is proposed to have finite time and high-speed trajectory tracking for parallel manipulators... In this paper,a non-negative adaptive mechanism based on an adaptive nonsingular fast terminal sliding mode control strategy is proposed to have finite time and high-speed trajectory tracking for parallel manipulators with the existence of unknown bounded complex uncertainties and external disturbances.The proposed approach is a hybrid scheme of the online non-negative adaptive mechanism,tracking differentiator,and nonsingular fast terminal sliding mode control(NFTSMC).Based on the online non-negative adaptive mechanism,the proposed control can remove the assumption that the uncertainties and disturbances must be bounded for the NFTSMC controllers.The proposed controller has several advantages such as simple structure,easy implementation,rapid response,chattering-free,high precision,robustness,singularity avoidance,and finite-time convergence.Since all control parameters are online updated via tracking differentiator and non-negative adaptive law,the tracking control performance at high-speed motions can be better in real-time requirement and disturbance rejection ability.Finally,simulation results validate the effectiveness of the proposed method. 展开更多
关键词 Parallel manipulator uncertainties and disturbances nonsingular fast terminal sliding mode control non-negative adaptive mechanism tracking differentiator
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Fast fixed-time three-dimensional terminal guidance with non-concave trajectory constraint
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作者 Youmin GONG Yanning GUO +2 位作者 Yueyong LYU Dongyu LI Guangfu MA 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2024年第3期208-218,共11页
Focusing on the non-concave trajectory constraint,a sliding-mode-based nonsingular feedback fast fixed-time three-dimensional terminal guidance of rotor unmanned aerial vehicle landing,planetary landing and spacecraft... Focusing on the non-concave trajectory constraint,a sliding-mode-based nonsingular feedback fast fixed-time three-dimensional terminal guidance of rotor unmanned aerial vehicle landing,planetary landing and spacecraft rendezvous and docking terminal phase with external disturbance is investigated in this paper.Firstly,a fixed-time observer based on real-time differentiator is developed to compensate for the external disturbance,whose estimation error can converge to zero after a time independent of the initial state.Then,a sliding surface ensuring fixed-time convergence is presented.This sliding surface can guarantee that the vehicle achieves a non-concave trajectory,which is better for avoiding collision and maintaining the visibility of the landing site or docking port.Next,the nonsingular guidance ensuring the fixed-time convergence of the sliding surface is proposed,which is continuous and chatter free.At last,three numerical simulations of Mars landing are performed to validate the effectiveness and correctness of the designed scheme. 展开更多
关键词 THREE-DIMENSIONAL terminal guidance Non-concave trajectory constraint fast fixed-time control sliding mode control
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Global prescribed performance control for lane-keeping of automated vehicles considering input saturation
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作者 Zhibang Si Yujuan Wang +1 位作者 Qing Chen Manling Wu 《Journal of Automation and Intelligence》 2025年第1期65-71,共7页
This paper addresses the lane-keeping control problem for autonomous ground vehicles subject to input saturation and uncertain system parameters.An enhanced adaptive terminal sliding mode based prescribed performance ... This paper addresses the lane-keeping control problem for autonomous ground vehicles subject to input saturation and uncertain system parameters.An enhanced adaptive terminal sliding mode based prescribed performance control scheme is proposed,which enables the lateral position error of the vehicle to be kept within the prescribed performance boundaries all the time.This is achieved by firstly introducing an improved performance function into the controller design such that the stringent initial condition requirements can be relaxed,which further allows the global prescribed performance control result,and then,developing a multivariable adaptive terminal sliding mode based controller such that both input saturation and parameter uncertainties are handled effectively,which further ensures the robust lane-keeping control.Finally,the proposed control strategy is validated through numerical simulations,demonstrating its effectiveness. 展开更多
关键词 Lane keeping global prescribed performance Adaptive terminal sliding mode control Input saturation
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Finite time slidingmode control for agile rigid satellite with CMG actuators using fast high-order sliding mode observer
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作者 Narges Nazari Hossein Moladavoudi Jalil Beyramzad 《Aerospace Systems》 2024年第2期363-383,共21页
This paper proposes a finite-time stable chattering-free output feedback control method for rigid satellites equipped with single gimbal control moment gyro(SGCMG)actuators,considering dynamic uncertainties and extern... This paper proposes a finite-time stable chattering-free output feedback control method for rigid satellites equipped with single gimbal control moment gyro(SGCMG)actuators,considering dynamic uncertainties and external disturbances.The dynamics of a rigid satellite are first represented using the modified Rodrigues parameter(MRP)explanation,and then transformed into Lagrangian state space affine form.Because of cost or technical restrictions,angular velocity data are not always accessible for practical application.So angular velocity is considered to be unmeasurable.In order to avoid increasing mathematical calculations and designing separate observers to estimate external disturbances and system states with finite time convergence,a fast third-order sliding mode state observer has been used to simultaneously estimate disturbances and system states.The main part of the proposed controller is also composed of the fast non-singular terminal sliding mode method,which is a combination of linear sliding mode and terminal sliding mode and guarantees finite-time stability and elimination of chattering phenomenon.For the computation of inverse of Jacobian matrix,off-diagonal singularity robust steering algorithm has been used that capable of escaping any kind of singularities.The stability of the proposed method and the simulation results of the proposed method have been presented and compared with the results of the methods available in the literature,which shows the efficiency of the method proposed. 展开更多
关键词 Attitude control Satellite fast terminal sliding mode Control moment gyro High-order sliding mode observer
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基于紧格式动态线性化的PMSM无模型自适应快速终端滑模控制
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作者 赵凯辉 涂麟轩 +2 位作者 何颖燊 贾林 黄宜山 《电力系统保护与控制》 北大核心 2026年第2期70-81,共12页
针对永磁同步电机(permanent magnet synchronous motor,PMSM)控制系统过度依赖精确模型的问题,提出一种基于动态线性化方式的无模型自适应快速终端滑模控制算法。首先,将电机运动方程转化为离散紧格式的动态线性化模型。基于新型快速... 针对永磁同步电机(permanent magnet synchronous motor,PMSM)控制系统过度依赖精确模型的问题,提出一种基于动态线性化方式的无模型自适应快速终端滑模控制算法。首先,将电机运动方程转化为离散紧格式的动态线性化模型。基于新型快速幂次趋近律,结合紧格式型无模型自适应控制和离散快速终端滑模算法的优点,设计离散时间无模型自适应快速终端滑模控制律。其次,基于电机的输入和输出数据,根据准则函数构造伪偏导数(pseudo partial derivative,PPD)估计算法,实现了基于数据驱动的控制,并分析了PPD估计算法的收敛性与控制算法的稳定性。最后,仿真和实验结果表明,与传统控制策略和无模型自适应滑模控制对比,所提方法提高了PMSM驱动系统的响应速度和鲁棒性,且不再依赖精确系统模型。 展开更多
关键词 永磁同步电机 动态线性化 无模型自适应 离散快速终端滑模控制 快速幂次趋近律
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基于终端滑模转速环的PMSM无模型预测电流控制
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作者 周晓华 张鹏阳 +1 位作者 王月武 吴雪颖 《组合机床与自动化加工技术》 北大核心 2026年第2期79-84,共6页
针对永磁同步电机无模型预测控制系统中传统的转速环PI控制存在超调量大,鲁棒性差等缺点,以及传统的模型预测电流控制(MPCC)对电机参数变化敏感,参数不匹配会导致性能下降的问题,提出一种基于扰动观测器和新型非奇异快速终端滑模转速环... 针对永磁同步电机无模型预测控制系统中传统的转速环PI控制存在超调量大,鲁棒性差等缺点,以及传统的模型预测电流控制(MPCC)对电机参数变化敏感,参数不匹配会导致性能下降的问题,提出一种基于扰动观测器和新型非奇异快速终端滑模转速环的PMSM无模型预测电流控制策略。该策略在转速控制环设计中采用非奇异快速终端滑模控制算法,通过构造新型的滑模趋近律实现有限时间收敛特性。同时构建扩张状态观测器(ESO)对负载转矩等集中扰动进行动态估计,并设计前馈补偿机制将观测值注入控制器,形成具有强抗扰能力的双闭环控制架构,以提高系统的鲁棒性。电流环采用基于超局部模型的无模型预测电流控制(MFPCC)。该方法不依赖于电机参数,进一步提高了系统的鲁棒性。仿真结果表明,与传统的MFPCC相比,所提控制方法在动态响应性能、鲁棒性和参数适应性方面具有显著优势,能够有效抑制超调和抖振,提高了系统的控制精度和稳定性。 展开更多
关键词 永磁同步电机 新型非奇异快速终端滑模控制 无模型预测 扩张状态观测器
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自适应模糊全局快速Terminal滑模控制方法 被引量:4
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作者 张伟 孙秀霞 +1 位作者 秦硕 王鹏翔 《计算机工程与应用》 CSCD 北大核心 2009年第27期228-230,242,共4页
提出了一种自适应模糊全局快速Terminal滑模控制方法,在参数不确定性和外干扰情况下,为解决系统的非线性不确定性提供了一种新途径。与传统模糊Terminal滑模控制相比,通过采用模糊逻辑系统来逼近未知系统函数和开关项;鲁棒自适应律用来... 提出了一种自适应模糊全局快速Terminal滑模控制方法,在参数不确定性和外干扰情况下,为解决系统的非线性不确定性提供了一种新途径。与传统模糊Terminal滑模控制相比,通过采用模糊逻辑系统来逼近未知系统函数和开关项;鲁棒自适应律用来减小逼近误差,从而有效降低抖振;证明了该控制方案的稳定性,并将该方案应用在倒立摆系统中。仿真结果验证了该方案的有效性。 展开更多
关键词 自适应模糊控制 全局快速terminal滑模控制 非线性系统 逼近
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基于快速模糊干扰观测器的UASV再入Terminal滑模控制 被引量:14
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作者 黄国勇 姜长生 王玉惠 《宇航学报》 EI CAS CSCD 北大核心 2007年第2期292-297,304,共7页
针对无人空天飞行器再入大气层过程中气动参数变化剧烈、控制精度要求高的特点,设计了基于快速模糊干扰观测器的Terminal滑模控制方案。通过改进传统模糊干扰观测器的学习律,提出一种快速模糊干扰观测器,增强了其在线逼近干扰及系统不... 针对无人空天飞行器再入大气层过程中气动参数变化剧烈、控制精度要求高的特点,设计了基于快速模糊干扰观测器的Terminal滑模控制方案。通过改进传统模糊干扰观测器的学习律,提出一种快速模糊干扰观测器,增强了其在线逼近干扰及系统不确定的能力。Terminal滑模的有限时间收敛特性提高了系统跟踪速度,同时采用快速模糊干扰观测器消除全部扰动的影响,从而保证了飞行品质。最后,仿真结果表明了快速模糊干扰观测器的优越性及闭环控制方案的有效性。 展开更多
关键词 无人空天飞行器再入 气动参数不确定 快速模糊干扰观测器 terminal滑模控制 有限时间收敛
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直接驱动XY平台全局快速Terminal滑模控制 被引量:5
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作者 王丽梅 陈吉超 郑浩 《沈阳工业大学学报》 EI CAS 北大核心 2012年第1期1-5,10,共6页
针对永磁直线同步电机驱动XY平台系统的非线性、不确定性及轮廓误差模型复杂等问题,设计了基于等效误差法的全局快速Terminal滑模轮廓控制器.运用等效误差法建立容易计算的直接驱动XY平台非线性等效误差模型;采用全局快速Terminal滑模... 针对永磁直线同步电机驱动XY平台系统的非线性、不确定性及轮廓误差模型复杂等问题,设计了基于等效误差法的全局快速Terminal滑模轮廓控制器.运用等效误差法建立容易计算的直接驱动XY平台非线性等效误差模型;采用全局快速Terminal滑模控制方法设计直接驱动XY平台轮廓控制器.该控制方法可以促使系统在有限时间内迅速收敛到平衡状态,同时能抑制负载扰动和参数不确定性对系统性能的影响.仿真结果表明,所设计的轮廓控制器使直接驱动XY平台具有了较高的轮廓加工精度和较强的鲁棒性. 展开更多
关键词 永磁直线同步电机 直接驱动 XY平台 轮廓误差 等效误差法 全局快速terminal滑模控制 有限时间收敛 鲁棒性
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基于快速终端动态滑模的三相电压型PWM整流器控制
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作者 张缘 樊春玲 张春堂 《电子测量技术》 北大核心 2026年第2期37-44,共8页
传统滑模控制在三相电压型PWM整流器应用中,由于其固有的不连续切换特性导致直流母线电压出现高频振荡现象,难以获得理想控制效果。因此本文提出一种外环快速终端动态滑模控制和内环前馈解耦PI控制相结合的双闭环控制策略。首先内环采... 传统滑模控制在三相电压型PWM整流器应用中,由于其固有的不连续切换特性导致直流母线电压出现高频振荡现象,难以获得理想控制效果。因此本文提出一种外环快速终端动态滑模控制和内环前馈解耦PI控制相结合的双闭环控制策略。首先内环采用基于前馈解耦PI控制,消除数学模型中的耦合项,实现对电流波形的精确跟踪。其次外环通过将切换项转移到高阶微分环节,并引入快速终端滑模面,抑制系统抖振,提升动态性能,实现准确稳定的跟踪参考电压。最后基于Lyapunov稳定性理论对控制器进行了稳定性证明,并通过Simulink搭建仿真模型进行实验验证。结果表明:所提出策略有效抑制了滑模控制固有的抖振现象。系统启动阶段直流电压过冲仅有6.5 V,较传统PI控制电压差峰值降低92%,调节时间缩短91%。电压阶跃响应跟踪时间小于0.02 s,±50%额定负载阶跃扰动内,瞬态电压误差均小于±1%。该控制方法在确保高稳态精度的同时,兼具良好的动态响应性能。 展开更多
关键词 PWM整流器 动态滑模 快速终端滑模 非线性控制
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统一混沌系统的指数型超曲面terminal滑模同步控制 被引量:7
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作者 雷军委 王越 顾文锦 《海军航空工程学院学报》 2007年第3期308-312,共5页
讨论了一类统一混沌系统的指数型超曲面terminal滑模控制同步问题,并且针对初始状态离原点的不同,设计了3种超曲面,使得在系统初始状态远离平衡点和接近平衡点的情况下,均能较快地实现同步,从而弥补了接近平衡点收敛速度慢的不足.而且... 讨论了一类统一混沌系统的指数型超曲面terminal滑模控制同步问题,并且针对初始状态离原点的不同,设计了3种超曲面,使得在系统初始状态远离平衡点和接近平衡点的情况下,均能较快地实现同步,从而弥补了接近平衡点收敛速度慢的不足.而且由于指数自适应环节的引入,使得滑模面的形式得到统一与简化,收敛性能得到进一步优化.最后仿真结果表明了该方案的有效性. 展开更多
关键词 统一混沌 滑模 有限时间快速收敛 同步控制 自适应
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