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Diving control of underactuated unmanned undersea vehicle using integral-fast terminal sliding mode control 被引量:4
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作者 严浙平 于浩淼 侯恕萍 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第5期1085-1094,共10页
The problem of diving control for an underactuated unmanned undersea vehicle(UUV) considering the presence of parameters perturbations and wave disturbances was addressesed.The vertical motion of an UUV was divided in... The problem of diving control for an underactuated unmanned undersea vehicle(UUV) considering the presence of parameters perturbations and wave disturbances was addressesed.The vertical motion of an UUV was divided into two noninteracting subsystems for surge velocity control and diving.To stabilize the vertical motion system,the surge velocity and the depth control controllers were proposed using backstepping technology and an integral-fast terminal sliding mode control(IFTSMC).It is proven that the proposed control scheme can guarantee that all the error signals in the whole closed-loop system globally converge to the sliding surface in finite time and asymptotically converge to the origin along the sliding surface.With a unified control parameters for different motion states,a series of numerical simulation results illustrate the effectiveness of the above designed control scheme,which also shows strong robustness against parameters perturbations and wave disturbances. 展开更多
关键词 integral-fast terminal sliding mode control depth control underactuated unmanned undersea vehicle
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Trajectory tracking guidance of interceptor via prescribed performance integral sliding mode with neural network disturbance observer 被引量:1
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作者 Wenxue Chen Yudong Hu +1 位作者 Changsheng Gao Ruoming An 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第2期412-429,共18页
This paper investigates interception missiles’trajectory tracking guidance problem under wind field and external disturbances in the boost phase.Indeed,the velocity control in such trajectory tracking guidance system... This paper investigates interception missiles’trajectory tracking guidance problem under wind field and external disturbances in the boost phase.Indeed,the velocity control in such trajectory tracking guidance systems of missiles is challenging.As our contribution,the velocity control channel is designed to deal with the intractable velocity problem and improve tracking accuracy.The global prescribed performance function,which guarantees the tracking error within the set range and the global convergence of the tracking guidance system,is first proposed based on the traditional PPF.Then,a tracking guidance strategy is derived using the integral sliding mode control techniques to make the sliding manifold and tracking errors converge to zero and avoid singularities.Meanwhile,an improved switching control law is introduced into the designed tracking guidance algorithm to deal with the chattering problem.A back propagation neural network(BPNN)extended state observer(BPNNESO)is employed in the inner loop to identify disturbances.The obtained results indicate that the proposed tracking guidance approach achieves the trajectory tracking guidance objective without and with disturbances and outperforms the existing tracking guidance schemes with the lowest tracking errors,convergence times,and overshoots. 展开更多
关键词 BP network neural integral sliding mode control(ISMC) Missile defense Prescribed performance function(PPF) State observer Tracking guidance system
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Integrated guidance and control design for missile with terminal impact angle constraint based on sliding mode control 被引量:22
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作者 Peng Wu Ming Yang 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2010年第4期623-628,共6页
Aimed at the guidance requirements of some missiles which attack targets with terminal impact angle at the terminal point,a new integrated guidance and control design scheme based on variable structure control approac... Aimed at the guidance requirements of some missiles which attack targets with terminal impact angle at the terminal point,a new integrated guidance and control design scheme based on variable structure control approach for missile with terminal impact angle constraint is proposed.First,a mathematical model of an integrated guidance and control model in pitch plane is established,and then nonlinear transformation is employed to transform the mathematical model into a standard form suitable for sliding mode control method design.A sufficient condition for the existence of linear sliding surface is given in terms of linear matrix inequalities(LMIs),based on which the corresponding reaching motion controller is also developed.To verify the effectiveness of the proposed integrated design scheme,the numerical simulation of missile is made.The simulation results demonstrate that the proposed guidance and control law can guide missile to hit the target with desired impact angle and desired flight attitude angle simultaneously. 展开更多
关键词 GUIDANCE terminal impact angle sliding mode control integrated guidance and control linear matrix inequality(LMI).
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High-order sliding mode attitude controller design for reentry flight 被引量:7
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作者 Liang Wang Yongzhi Sheng Xiangdong Liu 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2014年第5期848-858,共11页
A novel high-order sliding mode control strategy is proposed for the attitude control problem of reentry vehicles in the presence of parametric uncertainties and external disturbances, which results in the robust and ... A novel high-order sliding mode control strategy is proposed for the attitude control problem of reentry vehicles in the presence of parametric uncertainties and external disturbances, which results in the robust and accurate tracking of the aerodynamic angle commands with the finite time convergence. The proposed control strategy is developed on the basis of integral sliding mode philosophy, which combines conventional sliding mode control and a linear quadratic regulator over a finite time interval with a free-final-state and allows the finite-time establishment of a high-order sliding mode. Firstly, a second-order sliding mode attitude controller is designed in the proposed high-order siding mode control framework. Then, to address the control chattering problem, a virtual control is introduced in the control design and hence a third-order sliding mode attitude controller is developed, leading to the chattering reduction as well as the control accuracy improvement. Finally, simulation examples are given to illustrate the effectiveness of the theoretical results. 展开更多
关键词 reentry vehicle attitude control high-order sliding mode control integral sliding mode.
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Integral sliding mode control of time-delay systems with mismatching uncertainties 被引量:3
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作者 Fu Zhao Yu Liu Xiuming Yao Baoku Su 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2010年第2期273-280,共8页
A linear matrix inequality (LMI)-based sliding surface design method for integral sliding mode control of uncertain time- delay systems with mismatching uncertainties is proposed. The uncertain time-delay system und... A linear matrix inequality (LMI)-based sliding surface design method for integral sliding mode control of uncertain time- delay systems with mismatching uncertainties is proposed. The uncertain time-delay system under consideration may have mis- matching norm bounded uncertainties in the state matrix as well as the input matrix, A sufficient condition for the existence of a sliding surface is given to guarantee asymptotic stability of the full order slJdJng mode dynamics. An LMI characterization of the slid- ing surface is given, together with an integral sliding mode control law guaranteeing the existence of a sliding mode from the initial time. Finally, a simulation is given to show the effectiveness of the proposed method. 展开更多
关键词 linear matrix inequality integral sliding mode control uncertain time-delay systems mismatching uncertainties.
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Time delay control of hydraulic manipulators with continuous nonsingular terminal sliding mode 被引量:2
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作者 王尧尧 陈家旺 +1 位作者 顾临怡 李晓东 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第12期4616-4624,共9页
For the position tracking control of hydraulic manipulators,a novel method of time delay control(TDC) with continuous nonsingular terminal sliding mode(CNTSM) was proposed in this work.Complex dynamics of the hydrauli... For the position tracking control of hydraulic manipulators,a novel method of time delay control(TDC) with continuous nonsingular terminal sliding mode(CNTSM) was proposed in this work.Complex dynamics of the hydraulic manipulator is approximately canceled by time delay estimation(TDE),which means the proposed method is model-free and no prior knowledge of the dynamics is required.Moreover,the CNTSM term with a fast-TSM-type reaching law ensures fast convergence and high-precision tracking control performance under heavy lumped uncertainties.Despite its considerable robustness against lumped uncertainties,the proposed control scheme is continuous and chattering-free and no pressure sensors are required in practical applications.Theoretical analysis and experimental results show that faster and higher-precision position tracking performance is achieved compared with the traditional CNTSM-based TDC method using boundary layers. 展开更多
关键词 time delay control terminal sliding mode modeL-FREE hydraulic manipulators
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Fast self-adapting high-order sliding mode control for a class of uncertain nonlinear systems 被引量:3
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作者 GUO Fuhui LU Pingli 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2021年第3期690-699,共10页
A fast self-adapting high-order sliding mode(FSHOSM)controller is designed for a class of nonlinear systems with unknown uncertainties.As for uncertainty-free nonlinear system,a new switching condition is introduced i... A fast self-adapting high-order sliding mode(FSHOSM)controller is designed for a class of nonlinear systems with unknown uncertainties.As for uncertainty-free nonlinear system,a new switching condition is introduced into the standard geometric homogeneity.Different from the existing geometric homogeneity method,both state variables and their derivatives are considered to bring a reasonable effective switching condition.As a result,a faster convergence rate of state variables is achieved.Furthermore,based on the integral sliding mode(ISM)and above geometric homogeneity,a self-adapting high-order sliding mode(HOSM)control law is proposed for a class of nonlinear systems with uncertainties.The resulting controller allows the closed-loop system to conduct with the expected properties of strong robustness and fast convergence.Stable analysis of the nonlinear system is also proved based on the Lyapunov approach.The effectiveness of the resulting controller is verified by several simulation results. 展开更多
关键词 adaptive control law geometric homogeneity high-order sliding mode(HOSM) integral sliding mode(ISM)
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Integral sliding mode control for flexible ball screw drives with matched and mismatched uncertainties and disturbances 被引量:2
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作者 包达飞 汤文成 董亮 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第9期1992-2000,共9页
The design of servo controllers for flexible ball screw drives with matched and mismatched disturbances and uncertainties is focused to improve the tracking performance and bandwidth of ball screw drives.A two degrees... The design of servo controllers for flexible ball screw drives with matched and mismatched disturbances and uncertainties is focused to improve the tracking performance and bandwidth of ball screw drives.A two degrees of freedom mass model is established based on the axial vibration characteristics of the transport ball screw,and the controller of an adaptive integral sliding mode is proposed combining the optimal design of state feedback gain matrix K to restrain the vibration and the matched disturbances and uncertainties.Then for the counteraction of the mismatched disturbances and uncertainties,a nonlinear disturbance observer is also developed.The trajectory tracking performance experiments and bandwidth analysis were conducted on experimental setup with the proposed control method.It is proved that the adaptive integral sliding mode controller has a high tracking performance and bandwidth especially for the axial vibration characteristics model of ball screw drives.And the ball screw tracking accuracy also has a considerable improvement with the application of the proposed nonlinear disturbance observer. 展开更多
关键词 ball screw drives matched and mismatched disturbances and uncertainties axial vibration characteristics adaptive integral sliding mode control nonlinear disturbance observer
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Decoupled nonsingular terminal sliding mode control for affine nonlinear systems 被引量:1
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作者 Yueneng Yang Ye Yan 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2016年第1期192-200,共9页
A decoupled nonsingular terminal sliding mode control(DNTSMC) approach is proposed to address the tracking control problem of affine nonlinear systems.A nonsingular terminal sliding mode control(NTSMC) method is p... A decoupled nonsingular terminal sliding mode control(DNTSMC) approach is proposed to address the tracking control problem of affine nonlinear systems.A nonsingular terminal sliding mode control(NTSMC) method is presented,in which the nonsingular terminal sliding surface is defined as a special nonsingular terminal function and the convergence time of the system states can be specified.The affine nonlinear system is firstly decoupled into linear subsystems via feedback linearization.Then,a nonsingular terminal sliding surface is defined and the NTSMC method is applied to each subsystem separately to ensure the finite time convergence of the closed-loop system.The verification example is given to demonstrate the effectiveness and robustness of the proposed approach.The proposed approach exhibits a considerable advantage in terms of faster tracking error convergence and less chattering compared with the conventional sliding mode control(CSMC). 展开更多
关键词 nonlinear control feedback linearization terminal sliding mode control nonsingular affine nonlinear system.
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Adaptive fuzzy integral sliding mode pressure control for cutter feeding system of trench cutter
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作者 田启岩 魏建华 +1 位作者 方锦辉 国凯 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第12期3302-3311,共10页
A nonlinear pressure controller was presented to track desired feeding pressure for the cutter feeding system(CFS) of trench cutter(TC) in the presence of unknown external disturbances.The feeding pressure control of ... A nonlinear pressure controller was presented to track desired feeding pressure for the cutter feeding system(CFS) of trench cutter(TC) in the presence of unknown external disturbances.The feeding pressure control of CFS is subjected to unknown load characteristics of rock or soil; in addition,the geological condition is time-varying.Due to the complex load characteristics of rock or soil,the feeding velocity of TC is related to geological conditions.What is worse,its dynamic model is subjected to uncertainties and its function is unknown.To deal with the particular characteristics of CFS,a novel adaptive fuzzy integral sliding mode control(AFISMC) was designed for feeding pressure control of CFS,which combines the robust characteristics of an integral sliding mode controller and the adaptive adjusting characteristics of an adaptive fuzzy controller.The AFISMC feeding pressure controller is synthesized using the backstepping technique.The stability of the overall closed-loop system consisting of the adaptive fuzzy inference system,integral sliding mode controller and the cutter feeding system is proved using Lyapunov theory.Experiments are conducted on a TC test bench with the AFISMC under different operating conditions.The experimental results demonstrate that the proposed AFISMC feeding pressure controller for CFS gives a superior and robust pressure tracking performance with maximum pressure tracking error within ?0.3 MPa. 展开更多
关键词 electro-hydraulic system cutter feeding system feeding pressure control adaptive fuzzy integral sliding mode control
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Robust sliding mode control with ESO for dual-control missile 被引量:1
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作者 wei shang shengjing tang +2 位作者 jie guo yueyue ma yuhang yun 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2016年第5期1073-1082,共10页
This paper proposes a novel composite dual-control bycombing the integral sliding mode control (ISMC) method basedon the finite time convergence theory with extended state observer(ESO) for a tracking problem of a... This paper proposes a novel composite dual-control bycombing the integral sliding mode control (ISMC) method basedon the finite time convergence theory with extended state observer(ESO) for a tracking problem of a missile with tail fins and reactionjetcontrol system (RCS). First, the ISMC method based on finitetime convergence is utilized to design the control law of tail fins andthe pulse control of RCS for the dual-control system, ensuring thesystem with rapid response and high accuracy of tracking. Then,ESO is employed for the estimation of aerodynamic disturbancesinfluenced by the airflow of thruster jets. With the characteristicof high accuracy estimation of ESO, the chattering free trackingperformance of the attack angle command and the robustnessof the control law are achieved. Meanwhile, the stability of thedual-control system is analyzed based on finite time convergencestability theorem and Lyapunov’s theorem. Finally, numerical simulationsdemonstrate the effectiveness of the proposed design. 展开更多
关键词 reaction-jet control system (RCS) tail fins system integral sliding mode control extended state observer (ESO).
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Adaptive sliding-mode path following control system of the underactuated USV under the influence of ocean currents 被引量:11
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作者 CHEN Xiao LIU Zhong +2 位作者 ZHANG Jianqiang ZHOU Dechao DONG Jiao 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2018年第6期1271-1283,共13页
The path-following control of the asymmetry underactuated unmanned surface vehicle(USV) under external disturbances such as unknown constant and irrational ocean currents is discussed, and an adaptive sliding-mode pat... The path-following control of the asymmetry underactuated unmanned surface vehicle(USV) under external disturbances such as unknown constant and irrational ocean currents is discussed, and an adaptive sliding-mode path-following control system is proposed, which comprises a path-variable updated law,a modified integral line-of-sight(ILOS) guidance law based on a time-varying lookahead distance and adaptive feedback linearizing controllers combined with sliding-mode technique. A more accurate USV model without the assumption of having diagonal inertia and damping matrices is first presented, aiming at improving the performance of the path-following control. Next, the coordinate transformation is adopted to decouple the sway dynamic from the rudder angle, and the path-following errors dynamics without non-singular problem are presented in the moving Frenet-Serret frame. Then, based on the cascaded theorem and the adaptive sliding-mode method, the adaptive control law of position errors and course error are designed, among which the lookahead distance and integral gain are all computed as different functions of cross-track error to estimate and compensate the sideslip angle caused by external disturbances adaptively. Finally, according to the Lyapunov and cascaded theorem, the control system proposed is proved to be uniform globally asymptotic stability(UGAS) and uniform semiglobal exponential stability(USGES) when the control objectives are all achieved. Simulation results illustrate the precision and high-quality performance of this new controller. 展开更多
关键词 sliding-mode control unmanned surface vehicle(USV) integral line-of-sight(ILOS) path following proof of stability
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基于预设非奇异终端滑模控制的高速列车速度控制研究 被引量:1
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作者 侯涛 魏建鹏 牛宏侠 《铁道科学与工程学报》 北大核心 2025年第1期38-50,共13页
针对高速列车自动驾驶过程中容易受到外部不确定扰动以及速度控制精度低的问题,以预设性能控制理论和非奇异终端滑模控制理论为基础,提出一种基于扩张状态观测器-预设性能非奇异终端滑模控制的高速列车自动驾驶的速度控制方法。首先,设... 针对高速列车自动驾驶过程中容易受到外部不确定扰动以及速度控制精度低的问题,以预设性能控制理论和非奇异终端滑模控制理论为基础,提出一种基于扩张状态观测器-预设性能非奇异终端滑模控制的高速列车自动驾驶的速度控制方法。首先,设计扩张状态观测器对高速列车运行过程中所受的内部和外部的未知干扰进行估计和补偿;然后,通过采用预设性能函数把系统跟踪误差转换为一个变化误差,并控制变化误差在一定的范围,间接保证了系统跟踪误差始终在预先设定的范围内;其次,设计非奇异终端滑模面和高速列车自动驾驶系统速度控制律,并利用Lyapunov稳定性理论证明系统误差可以在有限时间内收敛于平衡点;最后,结合CRH3型列车参数和郑西高铁中西安北站—渭南北站段(950.620~1010.970km)实际线路数据,分别在没有干扰和有白噪声干扰的情况下对设计的控制系统进行仿真验证。仿真结果表明:基于扩张状态观测器-预设性能非奇异终端滑模控制的高速列车控制方法对速度和位移的跟踪精度较自抗扰的控制方法和非奇异终端滑模的控制方法有显著的提高,且对列车受到的干扰能够精确地估计和补偿,实现了对列车的运行期望曲线的高精度跟踪。该研究可以提高高速列车速度控制系统的鲁棒性和控制精度,为高速列车提供一种新的速度控制技术方案。 展开更多
关键词 自动驾驶 预设性能控制 非奇异终端滑模控制 高速列车 扩张状态观测器
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基于模糊补偿的磁浮列车悬浮系统非奇异终端滑模控制
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作者 孙友刚 张丹丹 +1 位作者 吉文 徐俊起 《西南交通大学学报》 北大核心 2025年第4期803-811,共9页
针对电磁悬浮(EMS)型磁浮列车在实际运行时,因系统参数时变、侧风气动升力以及载客量变化等因素,致使高精度悬浮动态性能下降的问题,提出一种自适应模糊非奇异终端滑模控制(FNTSC)方法.首先,建立考虑系统不确定性与外部干扰的单电磁铁... 针对电磁悬浮(EMS)型磁浮列车在实际运行时,因系统参数时变、侧风气动升力以及载客量变化等因素,致使高精度悬浮动态性能下降的问题,提出一种自适应模糊非奇异终端滑模控制(FNTSC)方法.首先,建立考虑系统不确定性与外部干扰的单电磁铁悬浮系统动力学模型;其次,采用模糊逻辑系统对悬浮系统中的未知非线性函数进行在线逼近与动态补偿;然后,针对传统滑模控制(SMC)中的奇异性问题和颤振现象,设计非奇异终端滑模控制器,并在不进行任何线性化处理的前提下,基于Lyapunov稳定性理论证明跟踪误差的有限时间收敛性;最后,将PID、SMC、模糊PID控制方法与FNTSC方法进行仿真对比,并进一步开展PID和FNTSC方法的实验对比,验证所提方法的有效性和鲁棒性.研究结果表明:在随机外部干扰和轨道不平顺情况下,FNTSC方法具有更小的稳态误差和更优的跟踪性能;相较于PID控制方法,静态悬浮的均方根误差降低15.7%,对幅值为2 mm的正弦波不平顺轨迹,其跟踪误差可限定在0.05 mm以内. 展开更多
关键词 磁浮交通 悬浮系统 模糊控制 非奇异终端滑模控制 鲁棒性 自适应控制
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基于时延估计与终端滑模的无人船跟踪控制
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作者 刘超 叶华生 +2 位作者 沈跃 刘慧 沈亚运 《电子测量技术》 北大核心 2025年第4期91-100,共10页
针对欠驱动无人船动力学模型参数获取困难、跟踪控制易受水流及自然风等干扰的问题,本文提出了一种基于自适应时延估计与超螺旋快速终端滑模的轨迹跟踪控制方法。首先通过手部位置点坐标变换方法,对欠驱动无人船数学模型进行状态扩展重... 针对欠驱动无人船动力学模型参数获取困难、跟踪控制易受水流及自然风等干扰的问题,本文提出了一种基于自适应时延估计与超螺旋快速终端滑模的轨迹跟踪控制方法。首先通过手部位置点坐标变换方法,对欠驱动无人船数学模型进行状态扩展重新构建;然后采用自适应时延估计技术,估计无人船未知动力学模型部分及外部扰动,并设计超螺旋快速终端滑模控制策略补偿时延估计产生的误差,提高控制系统鲁棒性;最后,基于仿真分析与航行跟踪实验验证本研究控制方法可行性。在航行跟踪实验中,位置平均误差相比于PID算法、滑模算法及自适应时延估计滑模算法分别降低了35.1%、24.7%、20.8%,轨迹跟踪精度高。本文提出的控制方法不依赖动力学模型参数,可实现欠驱动无人船精准轨迹跟踪控制,且收敛速度快、鲁棒性高,为欠驱动无人船轨迹跟踪控制提供了可供借鉴的方法。 展开更多
关键词 欠驱动无人船 自适应时延估计 超螺旋快速终端滑模控制 轨迹跟踪控制
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异步电机调速系统低速控制策略研究
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作者 郭栋 杨子 +1 位作者 王巍 黄磊 《控制工程》 北大核心 2025年第4期621-627,共7页
为了提升异步电机控制系统的动态性能,提出了一种基于内模控制与模糊滑模控制的联合控制策略。首先,通过分数阶函数对二自由度内模控制器进行改进,实现了控制器的抗扰动性能和跟踪性能分离处理。然后,考虑电机在低速运行时对外部扰动较... 为了提升异步电机控制系统的动态性能,提出了一种基于内模控制与模糊滑模控制的联合控制策略。首先,通过分数阶函数对二自由度内模控制器进行改进,实现了控制器的抗扰动性能和跟踪性能分离处理。然后,考虑电机在低速运行时对外部扰动较为敏感,设计了基于双曲正切函数与Fal函数的负载扰动观测器,对负载扰动进行实时估计,并将估计值补偿到滑模控制器中。最后,为了进一步克服低速状态下滑模控制器的抖振问题,改进了非奇异快速终端滑模面,同时根据模糊控制原理对指数趋近律的参数进行实时选取。仿真结果表明,所提控制策略可以提高异步电机在低速运行状态下的跟踪性能与抗扰动性能。 展开更多
关键词 内模控制 负载扰动观测器 非奇异快速终端滑模 模糊滑模控制 硬件在环
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考虑输入饱和的机械臂积分快速终端滑模控制
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作者 王杰 沈艳霞 《控制工程》 北大核心 2025年第7期1241-1250,共10页
针对机械臂系统存在未建模部分、摩擦力、外加扰动的问题,提出了一种考虑输入饱和的积分快速终端滑模控制方法,用于各关节角的轨迹跟踪控制。首先,建立机械臂模型,将未建模部分、摩擦力、外加扰动、输入饱和误差看作集中扰动;其次,设计... 针对机械臂系统存在未建模部分、摩擦力、外加扰动的问题,提出了一种考虑输入饱和的积分快速终端滑模控制方法,用于各关节角的轨迹跟踪控制。首先,建立机械臂模型,将未建模部分、摩擦力、外加扰动、输入饱和误差看作集中扰动;其次,设计了一种固定时间收敛的扩张高增益观测器对集中扰动进行估计,解决了传统扩张高增益观测器的估计误差在初始时刻存在峰值和只能渐近稳定的问题;再次,将积分滑模控制与快速终端滑模控制相结合,利用反步法完成积分快速终端滑模控制器的设计,通过观测器所估计的集中扰动削减控制输出的抖振;最后,对所提观测器与控制方法进行仿真实验。仿真结果表明,所提观测器能够精确估计集中扰动,所提控制方法能够提高机械臂系统的轨迹跟踪速度和精度,同时在考虑输入饱和的情况下保证了机械臂系统的安全性。 展开更多
关键词 机械臂 输入饱和 扩张观测器 反步法 积分快速终端滑模控制
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基于自适应滑模的四轮移动机器人轨迹跟踪控制
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作者 郭磊 张雨晴 宋原 《郑州大学学报(工学版)》 北大核心 2025年第3期11-18,共8页
针对滑模控制中具有未知界的非匹配不确定性的估计与补偿问题,提出了一种适用于四轮移动机器人的非奇异终端滑模控制器,不需要已知界的不确定性的先验知识。为了保证滑模面的存在性,引入高斯过程回归对非匹配不确定性进行在线估计,一方... 针对滑模控制中具有未知界的非匹配不确定性的估计与补偿问题,提出了一种适用于四轮移动机器人的非奇异终端滑模控制器,不需要已知界的不确定性的先验知识。为了保证滑模面的存在性,引入高斯过程回归对非匹配不确定性进行在线估计,一方面避免采用高增益的控制,从而减小了控制量抖振;另一方面,通过高斯过程回归的估计结果对系统的不确定性进行补偿,从而提高了基于模型的滑模控制器的适应性。基于近端策略优化(PPO)算法设计了一种自适应终端滑模控制器,通过控制精度和控制输入的抖振幅度来构建奖励函数,以此对滑模控制器的参数进行自适应调整,从而减小抖振并提高跟踪精度。通过李雅普诺夫稳定性分析证明了非奇异终端滑模控制器的稳定性,基于数值仿真实验验证了所设计控制器的有效性。结果表明:与传统的终端滑模相比,所提出的自适应终端滑模控制器在保持较高控制精度的同时,抖振振幅减小了90%,优于传统的控制方法。 展开更多
关键词 四轮移动机器人 轨迹跟踪 终端滑模控制 自适应滑模控制 高斯过程回归 强化学习
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复杂工况下ASR/DYC的切换控制设计
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作者 丁世宏 吴嘉伦 +1 位作者 刘陆 马莉 《重庆理工大学学报(自然科学)》 北大核心 2025年第7期43-52,共10页
为了避免复杂工况下车辆转向时发生轮胎打滑,设计了一种新型的直接横摆力矩(DYC)和驱动防滑(ASR)控制器切换设计方案。基于车辆模型和轮胎动力学模型建立了DYC和ASR模型。分别设计了基于非奇异终端滑模的ASR控制器和基于一阶滑模的DYC... 为了避免复杂工况下车辆转向时发生轮胎打滑,设计了一种新型的直接横摆力矩(DYC)和驱动防滑(ASR)控制器切换设计方案。基于车辆模型和轮胎动力学模型建立了DYC和ASR模型。分别设计了基于非奇异终端滑模的ASR控制器和基于一阶滑模的DYC控制器。提出一种新型的DYC和ASR的切换控制方案,以快速引导车辆在复杂工况下保证车轮不发生打滑。仿真结果表明:相较于没有ASR控制器切换下的DYC系统,在复杂工况下最快能在0.2 s内稳定滑移率至安全阈值,超调不超过2%,上下误差不超过5%,所设计的DYC和ASR控制器及切换控制方案能够在正弦工况、鱼钩工况及复杂工况下保证车辆运行的稳定性。 展开更多
关键词 DYC ASR 终端滑模 切换控制
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特种车辆起竖系统的干扰观测反步终端滑模控制
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作者 王莉娜 邱常卿 +1 位作者 王昊 杭杰 《北京理工大学学报》 北大核心 2025年第4期409-417,共9页
针对多级缸液压起竖系统运行过程中存在的未建模动态、参数摄动等造成的复合干扰问题,提出一种基于非线性干扰观测器(NDO)的反步终端滑模控制策略.将系统模型的未知部分和外部干扰视为集总扰动,设计非线性干扰观测器对系统的集总扰动进... 针对多级缸液压起竖系统运行过程中存在的未建模动态、参数摄动等造成的复合干扰问题,提出一种基于非线性干扰观测器(NDO)的反步终端滑模控制策略.将系统模型的未知部分和外部干扰视为集总扰动,设计非线性干扰观测器对系统的集总扰动进行观测,并基于观测值设计反步终端滑模控制器.对所提出控制方法的稳定性进行了证明.通过Matlab/Simulink仿真,与传统滑模控制器、基于干扰观测器的传统滑模控制器的控制效果进行了对比和分析.仿真结果表明:所提出方法能有效提升液压起竖系统运行过程中多级液压缸的位移跟踪性能,受到扰动时,位移跟踪误差能快速趋近于0,表现出良好的跟踪鲁棒性. 展开更多
关键词 阀控缸 复合扰动 非线性干扰观测器 终端滑模控制 位移跟踪控制
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