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Backstepping Control of Speed Sensorless Permanent Magnet Synchronous Motor Based on Slide Model Observer 被引量:10
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作者 Cai-Xue Chen Yun-Xiang Xie Yong-Hong Lan 《International Journal of Automation and computing》 EI CSCD 2015年第2期149-155,共7页
This paper presents a backstepping control method for speed sensorless permanent magnet synchronous motor based on slide model observer. First, a comprehensive dynamical model of the permanent magnet synchronous motor... This paper presents a backstepping control method for speed sensorless permanent magnet synchronous motor based on slide model observer. First, a comprehensive dynamical model of the permanent magnet synchronous motor(PMSM) in d-q frame and its space-state equation are established. The slide model control method is used to estimate the electromotive force of PMSM under static frame, while the position of rotor and its actual speed are estimated by using phase loop lock(PLL) method. Next,using Lyapunov stability theorem, the asymptotical stability condition of the slide model observer is presented. Furthermore, based on the backstepping control theory, the PMSM rotor speed and current tracking backstepping controllers are designed, because such controllers display excellent speed tracking and anti-disturbance performance. Finally, Matlab simulation results show that the slide model observer can not only estimate the rotor position and speed of the PMSM accurately, but also ensure the asymptotical stability of the system and effective adjustment of rotor speed and current. 展开更多
关键词 Permanent magnet synchronous motor(PMSM) slide model observer backstepping control speed sensorless alternating current(AC).
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Design of TakagiSugeno fuzzy model based nonlinear sliding model controller 被引量:1
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作者 Xu gong Chen Zengqiang Yuan Zhuzhi 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2005年第4期847-851,共5页
A design method is presented for Takagi-Sugeno (T-S) fuzzy model based nonlinear sliding model controller. First, the closed-loop fuzzy system is divided into a set of dominant local linear systems according to oper... A design method is presented for Takagi-Sugeno (T-S) fuzzy model based nonlinear sliding model controller. First, the closed-loop fuzzy system is divided into a set of dominant local linear systems according to operating sub-regions. In each sub-region the fuzzy system consists of nominal linear system and a group of interacting systems. Then the controller composed two parts is designed. One part is designed to control the nominal system, the other is designed to control the interacting systems with sliding mode theory. The proposed controller can improve the robusmess and gnarantee tracking performance of the fuzzy system. Stability is guaranteed without finding a common positive definite matrix. 展开更多
关键词 sliding model control fuzzy control T-S fuzzy model Lyapunov stability
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Decentralized model reference adaptive sliding mode control based on fuzzy model 被引量:4
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作者 Gu Haijun Zhang Tianping Shen Qikun 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2006年第1期182-186,192,共6页
A new design scheme of decentralized model reference adaptive sliding mode controller for a class of MIMO nonlinear systems with the high-order interconnections is propcsed. The design is based on the universal approx... A new design scheme of decentralized model reference adaptive sliding mode controller for a class of MIMO nonlinear systems with the high-order interconnections is propcsed. The design is based on the universal approximation capability of the Takagi - Seguno (T-S) fuzzy systems. Motivated by the principle of certainty equivalenteontrol, a decentralized adaptive controller is designed to achieve the tracking objective without computafion of the T-S fuzz ymodel. The approach does not require the upper bound of the uncertainty term to be known through some adaptive estimation. By theoretical analysis, the closed-loop fuzzy control system is proven to be globally stable in the sense that all signalsinvolved are bounded, with tracking errors converging to zero. Simulation results demonstrate the effectiveness of the approach. 展开更多
关键词 decentralized control model reference adaptive control sliding mode control fuzy model global stability.
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Nominal Model-Based Sliding Mode Control with Backstepping for 3-Axis Flight Table 被引量:11
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作者 刘金琨 孙富春 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2006年第1期65-71,共7页
Based on nominal model, a novel global sliding mode controller (GSMC) with a new control scheme is proposed for a practical uncertain servo system. This control scheme consists of two combined controllers, One is th... Based on nominal model, a novel global sliding mode controller (GSMC) with a new control scheme is proposed for a practical uncertain servo system. This control scheme consists of two combined controllers, One is the global sliding mode controller for practical plant, the other is the integral backstepping controller for nominal model. Modeling error between practical plant and nominal model is used to design GSMC. The steady-state control accuracy can be guaranteed by the integral backstepping control law, and the global robustness can be obtained by GSMC. The stability of the proposed controller is proved according to the Lyapunov approach. The simulation results both of sine signal and step signal tracking for 3-axis flight table are investigated to show good position tracking performance and high robustness with respect to large and parameter changes over all the response time. 展开更多
关键词 nominal model sliding mode control backstepping control robust control 3-axis flight table
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Adaptive Robust Motion Trajectory Tracking Control of Pneumatic Cylinders with LuGre Model-based Friction Compensation 被引量:6
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作者 MENG Deyuan TAO Guoliang +1 位作者 LIU Hao ZHU Xiaocong 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第4期802-815,共14页
Friction compensation is particularly important for motion trajectory tracking control of pneumatic cylinders at low speed movement. However, most of the existing model-based friction compensation schemes use simple c... Friction compensation is particularly important for motion trajectory tracking control of pneumatic cylinders at low speed movement. However, most of the existing model-based friction compensation schemes use simple classical models, which are not enough to address applications with high-accuracy position requirements. Furthermore, the friction force in the cylinder is time-varying, and there exist rather severe unmodelled dynamics and unknown disturbances in the pneumatic system. To deal with these problems effectively, an adaptive robust controller with LuGre model-based dynamic friction compensation is constructed. The proposed controller employs on-line recursive least squares estimation(RLSE) to reduce the extent of parametric uncertainties, and utilizes the sliding mode control method to attenuate the effects of parameter estimation errors, unmodelled dynamics and disturbances. In addition, in order to realize LuGre model-based friction compensation, the modified dual-observer structure for estimating immeasurable friction internal state is developed. Therefore, a prescribed motion tracking transient performance and final tracking accuracy can be guaranteed. Since the system model uncertainties are unmatched, the recursive backstepping design technology is applied. In order to solve the conflicts between the sliding mode control design and the adaptive control design, the projection mapping is used to condition the RLSE algorithm so that the parameter estimates are kept within a known bounded convex set. Finally, the proposed controller is tested for tracking sinusoidal trajectories and smooth square trajectory under different loads and sudden disturbance. The testing results demonstrate that the achievable performance of the proposed controller is excellent and is much better than most other studies in literature. Especially when a 0.5 Hz sinusoidal trajectory is tracked, the maximum tracking error is 0.96 mm and the average tracking error is 0.45 mm. This paper constructs an adaptive robust controller which can compensate the friction force in the cylinder. 展开更多
关键词 servo-pneumatic system tracking control sliding mode control adaptive control LuGre model
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Characteristic Model-based Discrete-time Sliding Mode Control for Spacecraft with Variable Tilt of Flexible Structures 被引量:5
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作者 Lei Chen Yan Yan +1 位作者 Chaoxu Mu Changyin Sun 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI 2016年第1期42-50,共9页
In this paper, the finite-time attitude tracking control problem for the spacecrafts with variable tilt of flexible appendages in the conditions of exogenous disturbances and inertia uncertainties is addressed. First ... In this paper, the finite-time attitude tracking control problem for the spacecrafts with variable tilt of flexible appendages in the conditions of exogenous disturbances and inertia uncertainties is addressed. First the characteristic modeling method is applied to the problem of the spacecraft modeling. Second, a novel adaptive sliding mode surface is designed based on the characteristic model. Furthermore, a discrete-time sliding mode control (DTSMC) law, which makes the tracking error converge into a predefined bound in finite time, is proposed by employing the parameters of characteristic model associated with the sliding mode surface to provide better performances, robustness, faster response, and higher control precision. The designed DTSMC includes the adaptive control architecture and is chattering-free. Finally, digital simulations of a sun synchronous orbit satellite (SSOS) are presented to illustrate effectiveness of the control strategies as well as to verify the practical feasibility of the rapid maneuver mission. © 2014 Chinese Association of Automation. 展开更多
关键词 Flexible structures NAVIGATION ORBITS SPACECRAFT
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Robust Modeling, Sliding-Mode Controller, and Simulation of an Underactuated ROV Under Parametric Uncertainties and Disturbances 被引量:2
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作者 Mostafa Eslami Cheng Siong Chin Amin Nobakhti 《Journal of Marine Science and Application》 CSCD 2019年第2期213-227,共15页
A dynamic model of a remotely operated vehicle(ROV)is developed.The hydrodynamic damping coefficients are estimated using a semi-predictive approach and computational fluid dynamic software ANSYS-CFX?and WAMIT?.A slid... A dynamic model of a remotely operated vehicle(ROV)is developed.The hydrodynamic damping coefficients are estimated using a semi-predictive approach and computational fluid dynamic software ANSYS-CFX?and WAMIT?.A sliding-mode controller(SMC)is then designed for the ROV model.The controller is subsequently robustified against modeling uncertainties,disturbances,and measurement errors.It is shown that when the system is subjected to bounded uncertainties,the SMC will preserve stability and tracking response.The paper ends with simulation results for a variety of conditions such as disturbances and parametric uncertainties. 展开更多
关键词 Remotely operated vehicle ROBUST modelING Sliding-mode control Simulation Disturbances PARAMETRIC UNCERTAINTIES
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Fixed-time adaptive model reference sliding mode control for an air-to-ground missile 被引量:14
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作者 Liang ZHANG Changzhu WEI +1 位作者 Rong WU Naigang CUI 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2019年第5期1268-1280,共13页
This paper addresses the fixed-time adaptive model reference sliding mode control for an air-to-ground missile associated with large speed ranges, mismatched disturbances and un-modeled dynamics. Firstly, a sliding mo... This paper addresses the fixed-time adaptive model reference sliding mode control for an air-to-ground missile associated with large speed ranges, mismatched disturbances and un-modeled dynamics. Firstly, a sliding mode surface is developed by the tracking error of the state equation and the model reference state equation with respect to the air-to-ground missile. More specifically,a novel fixed-time adaptive reaching law is presented. Subsequently, the mismatched disturbances and the un-modeled dynamics are treated as the model errors of the state equation. These model errors are estimated by means of a fixed-time disturbance observer, and they are also utilized to compensate the proposed controller. Therefore, the fixed-time controller is obtained by an adaptive reaching law and a fixed-time disturbance observer. Closed-loop stability of the proposed controller is established. Finally, simulation results including Monte Carlo simulations, nonlinear six-DegreeOf-Freedom(6-DOF) simulations and different ranges are presented to demonstrate the efficacy of the proposed control scheme. 展开更多
关键词 ADAPTIVE controller Air-to-ground MISSILE Fixed-time ADAPTIVE REACHING law Fixed-time disturbance observer model REFERENCE SLIDING mode control
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Dynamics modeling and control of a transport aircraft for ultra-low altitude airdrop 被引量:25
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作者 Liu Ri Sun Xiuxia Dong Wenhan 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2015年第2期478-487,共10页
The nonlinear aircraft model with heavy cargo moving inside is derived by using the sep- aration body method, which can describe the influence of the moving cargo on the aircraft attitude and altitude accurately. Furt... The nonlinear aircraft model with heavy cargo moving inside is derived by using the sep- aration body method, which can describe the influence of the moving cargo on the aircraft attitude and altitude accurately. Furthermore, the nonlinear system is decoupled and linearized through the input^utput feedback linearization method. On this basis, an iterative quasi-sliding mode (SM) flight controller for speed and pitch angle control is proposed. At the first-level SM, a global dynamic switching function is introduced thus eliminating the reaching phase of the sliding motion. At the second-level SM, a nonlinear function with the property of "smaUer errors correspond to bigger gains and bigger errors correspond to saturated gains" is designed to form an integral sliding manifold, and the overcompensation of the integral term to big errors is weakened. Lyapunov- based analysis shows that the controller with strong robustness can reject both constant and time-varying model uncertainties. The performance of the proposed control strategy is verified in a maximum load airdrop mission. 展开更多
关键词 Dynamics modeling Feedback liaearization Flight control Nonlinear system Sliding mode control UNCERTAINTY
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Sliding Mode Control Design via Reduced Order Model Approach 被引量:2
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作者 B.Bandyopadhyay Alemayehu G/Egziabher Abera +1 位作者 S.Janardhanan Victor Sreeram 《International Journal of Automation and computing》 EI 2007年第4期329-334,共6页
This paper presents a design of continuous-time sliding mode control for the higher order systems via reduced order model. It is shown that a continuous-time sliding mode control designed for the reduced order model g... This paper presents a design of continuous-time sliding mode control for the higher order systems via reduced order model. It is shown that a continuous-time sliding mode control designed for the reduced order model gives similar performance for thc higher order system. The method is illustrated by numerical examples. The paper also introduces a technique for design of a sliding surface such that the system satisfies a cost-optimality condition when on the sliding surface. 展开更多
关键词 Sliding mode control order reduction reduced order model higher order system optimal control.
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Modeling and Robust Backstepping Sliding Mode Control with Adaptive RBFNN for a Novel Coaxial Eight-rotor UAV 被引量:14
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作者 Cheng Peng Yue Bai +3 位作者 Xun Gong Qingjia Gao Changjun Zhao Yantao Tian 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI 2015年第1期56-64,共9页
This paper focuses on the robust attitude control of a novel coaxial eight-rotor unmanned aerial vehicles (UAV) which has higher drive capability as well as greater robustness against disturbances than quad-rotor UAV.... This paper focuses on the robust attitude control of a novel coaxial eight-rotor unmanned aerial vehicles (UAV) which has higher drive capability as well as greater robustness against disturbances than quad-rotor UAV. The dynamical and kinematical model for the coaxial eight-rotor UAV is developed, which has never been proposed before. A robust backstepping sliding mode controller (BSMC) with adaptive radial basis function neural network (RBFNN) is proposed to control the attitude of the eightrotor UAV in the presence of model uncertainties and external disturbances. The combinative method of backstepping control and sliding mode control has improved robustness and simplified design procedure benefiting from the advantages of both controllers. The adaptive RBFNN as the uncertainty observer can effectively estimate the lumped uncertainties without the knowledge of their bounds for the eight-rotor UAV. Additionally, the adaptive learning algorithm, which can learn the parameters of RBFNN online and compensate the approximation error, is derived using Lyapunov stability theorem. And then the uniformly ultimate stability of the eight-rotor system is proved. Finally, simulation results demonstrate the validity of the proposed robust control method adopted in the novel coaxial eight-rotor UAV in the case of model uncertainties and external disturbances. © 2014 Chinese Association of Automation. 展开更多
关键词 Adaptive control systems Aircraft control Approximation algorithms Attitude control BACKSTEPPING controllers Functions Learning algorithms Radial basis function networks Robust control Robustness (control systems) Sliding mode control Uncertainty analysis
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Robust Adaptive Gain Higher Order Sliding Mode Observer Based Control-constrained Nonlinear Model Predictive Control for Spacecraft Formation Flying 被引量:10
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作者 Ranjith Ravindranathan Nair Laxmidhar Behera 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2018年第1期367-381,共15页
This work deals with the development of a decentralized optimal control algorithm, along with a robust observer,for the relative motion control of spacecraft in leader-follower based formation. An adaptive gain higher... This work deals with the development of a decentralized optimal control algorithm, along with a robust observer,for the relative motion control of spacecraft in leader-follower based formation. An adaptive gain higher order sliding mode observer has been proposed to estimate the velocity as well as unmeasured disturbances from the noisy position measurements.A differentiator structure containing the Lipschitz constant and Lebesgue measurable control input, is utilized for obtaining the estimates. Adaptive tuning algorithms are derived based on Lyapunov stability theory, for updating the observer gains,which will give enough flexibility in the choice of initial estimates.Moreover, it may help to cope with unexpected state jerks. The trajectory tracking problem is formulated as a finite horizon optimal control problem, which is solved online. The control constraints are incorporated by using a nonquadratic performance functional. An adaptive update law has been derived for tuning the step size in the optimization algorithm, which may help to improve the convergence speed. Moreover, it is an attractive alternative to the heuristic choice of step size for diverse operating conditions. The disturbance as well as state estimates from the higher order sliding mode observer are utilized by the plant output prediction model, which will improve the overall performance of the controller. The nonlinear dynamics defined in leader fixed Euler-Hill frame has been considered for the present work and the reference trajectories are generated using Hill-Clohessy-Wiltshire equations of unperturbed motion. The simulation results based on rigorous perturbation analysis are presented to confirm the robustness of the proposed approach. 展开更多
关键词 Adaptive gain higher order sliding mode observer leader-follower formation nonlinear model predictive control spacecraft formation flying tracking control
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Adaptive high precision position control of servo actuator with friction compensation using LuGre model 被引量:1
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作者 邵志宇 方东洋 张晓东 《Journal of Beijing Institute of Technology》 EI CAS 2011年第1期105-110,共6页
Adaptive control of servo actuator with nonlinear friction compensation is addressed. LuGre dynamic friction model is adopted to characterize the nonlinear friction and a new kind of slid ing mode observer is designe... Adaptive control of servo actuator with nonlinear friction compensation is addressed. LuGre dynamic friction model is adopted to characterize the nonlinear friction and a new kind of slid ing mode observer is designed to estimate the internal immeasurable state of LuGre model. Based on the estimated friction state, adaptive laws are designed to identify the unknown model parameters and the external disturbances, and the system stability and asymptotic trajectory tracking perform ance are guaranteed by Lyapunov function. The position tracking performance is verified by the ex perimental results. 展开更多
关键词 adaptive control position tracking servo actuator LuGre friction model sliding modeobserver
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双有源桥DC-DC变换器电压及电流的非线性积分滑模控制策略
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作者 曾进辉 张长威 +2 位作者 曹斌 余雪萍 邹彬 《电力自动化设备》 北大核心 2025年第3期131-139,共9页
针对应用于电池储能系统与直流母线互联的双有源桥DC-DC变换器,提出用于直流电压及充电电流控制的非线性积分滑模控制策略。根据开关函数的傅里叶级数,在单移相控制下建立变换器输出电压及储能电池充电电流的状态空间模型。引入误差缩... 针对应用于电池储能系统与直流母线互联的双有源桥DC-DC变换器,提出用于直流电压及充电电流控制的非线性积分滑模控制策略。根据开关函数的傅里叶级数,在单移相控制下建立变换器输出电压及储能电池充电电流的状态空间模型。引入误差缩放因子,将一类具有“小误差放大,大误差饱和”功能的光滑非线性饱和函数与滑模控制相结合,设计输出电压和充电电流的非线性积分滑模控制器。该控制策略可以有效改善系统的动态响应性能,快速跟踪参考变化,没有超调或下冲,稳态误差为0,而且该控制策略能够在输入或负载突变时有效保持系统原状态的稳定。设计的控制器控制模型简单,仅需要1个积分器,在保留传统积分滑模控制优点的同时,其误差缩放因子可调节系统的动态及稳态响应性能,避免因积分饱和而出现超调现象。搭建仿真模型和实验平台,验证了所提控制策略的有效性。 展开更多
关键词 双有源桥变换器 状态空间模型 滑模控制 电压及电流控制 参考跟踪
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基于模型解耦的Buck变换器滑模控制 被引量:1
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作者 王艳敏 张涵清 +1 位作者 吴文谊 董志华 《华中科技大学学报(自然科学版)》 北大核心 2025年第1期42-47,71,共7页
针对Buck变换器多以电压控制型为主、控制性能受制于电路非线性的问题,提出一种基于模型解耦的滑模(sliding mode,SM)控制方法,以提高其输出电能品质.基于基尔霍夫电路定理,建立Buck变换器导通/关断两种情况下的统一数学模型,基于SM等... 针对Buck变换器多以电压控制型为主、控制性能受制于电路非线性的问题,提出一种基于模型解耦的滑模(sliding mode,SM)控制方法,以提高其输出电能品质.基于基尔霍夫电路定理,建立Buck变换器导通/关断两种情况下的统一数学模型,基于SM等效控制原理,给出传统电压控制器的设计.区别于先模型解耦再设计控制器的常规做法,仍以变换器电压作为控制量,构造二层结构滑模面,可间接将电流纳入SM控制器作用下;之后,基于输出重定义方法,再将系统模型解耦为输入输出子系统和零动态子系统,使得变换器输出电能品质的控制问题转化为输入输出子系统的稳定性控制,并分四种情况推导出控制器参数与系统稳定性的约束关系.仿真结果表明,所提方法可显著提高变换器的响应速度和稳态性能,更具应用价值. 展开更多
关键词 滑模控制 直流变换器 二层滑模面 模型解耦 稳态性能
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多电源接入的电网运行无功电压综合自动控制
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作者 毕圆圆 《电气自动化》 2025年第2期75-78,共4页
多电源接入会导致电网负荷波动,影响逆变环节直流母线电压质量,进而降低并网电流的谐波畸变率,使系统并网成功率下降。针对这一问题,提出了一种基于无功电压控制的自适应改进滑模控制策略。策略融合了扰动估计观测器和自适应滑模控制,... 多电源接入会导致电网负荷波动,影响逆变环节直流母线电压质量,进而降低并网电流的谐波畸变率,使系统并网成功率下降。针对这一问题,提出了一种基于无功电压控制的自适应改进滑模控制策略。策略融合了扰动估计观测器和自适应滑模控制,利用无功电压特性实时估计系统扰动,提高系统的扰动观测能力。同时,设计自适应滑模策略对估计扰动进行实时抵消,增强系统的抗扰性。引入深度确定性策略,自适应整定滑模控制参数,通过频域理论分析优化参数设置,确保系统在稳态和暂态下都表现优异。在MATLAB/Simulink平台搭建了电网逆变环节的仿真模型,模拟多电源接入条件下的工况,验证了所提控制策略的有效性。所提策略不仅使系统在电源容量增加时仍具有较好的电压质量和较小的电压波形畸变率,而且为系统进行并网和保障安全运行提供了重要保障。 展开更多
关键词 多电源接入 无功控制 滑模控制 电压质量 抗扰性
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基于GA-PSO优化的汽车轨迹跟踪和稳定性协同控制
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作者 田韶鹏 吴思沛 王龙 《重庆理工大学学报(自然科学)》 北大核心 2025年第5期10-19,共10页
针对恶劣工况下汽车轨迹跟踪控制的精度和稳定性问题,提出一种基于分层控制策略的解决方案。上层轨迹跟踪控制器和下层直接横摆力矩控制器分别基于模型预测控制(model predictive control,MPC)和滑模控制(sliding mode control,SMC)实现... 针对恶劣工况下汽车轨迹跟踪控制的精度和稳定性问题,提出一种基于分层控制策略的解决方案。上层轨迹跟踪控制器和下层直接横摆力矩控制器分别基于模型预测控制(model predictive control,MPC)和滑模控制(sliding mode control,SMC)实现;通过遗传粒子群优化算法(GA-PSO)优化不同车速和路面附着系数下的控制器参数,得到适用于不同驾驶条件的最佳控制器时域和控制参数;基于此设计协同控制器,进一步改善了轨迹跟踪的准确性和稳定性。为验证策略有效性,在CarSim-Simulink联合仿真平台进行仿真实验。仿真结果表明:所提出控制策略能显著提升追踪效果和横摆稳定性,平均横向误差分别减少89.9%、46.4%和43.3%。 展开更多
关键词 智能车辆 轨迹跟踪 稳定性控制 模型预测控制 滑模控制 遗传粒子群算法
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多轴转向车辆非线性系统模糊T-S滑模控制
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作者 王吉华 魏民祥 +1 位作者 刘露 尤彦彦 《山东理工大学学报(自然科学版)》 2025年第6期50-56,共7页
针对多轴转向车辆的非线性、不确定性和外界干扰,提出在模糊T-S建模基础上使用滑模控制算法。将多轴转向车辆非线性模型的模糊T-S模型表示为不确定形式,并采用极点配置法、单位向量控制形式和Lyapunov稳定性理论,设计多轴转向车辆非线... 针对多轴转向车辆的非线性、不确定性和外界干扰,提出在模糊T-S建模基础上使用滑模控制算法。将多轴转向车辆非线性模型的模糊T-S模型表示为不确定形式,并采用极点配置法、单位向量控制形式和Lyapunov稳定性理论,设计多轴转向车辆非线性系统的滑模控制器。通过对某三轴转向车辆进行控制仿真,证明该控制算法能有效改善多轴转向车辆的操纵稳定性,较好地避免非线性和不确定性等外界干扰的影响。 展开更多
关键词 多轴转向车辆 滑模控制 非线性模型 模糊T-S模型
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永磁同步电机控制策略综述
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作者 汪华章 何涛 +2 位作者 刘鲲鹏 郭睿智 陈宁 《西南民族大学学报(自然科学版)》 2025年第2期177-192,共16页
永磁同步电机(Permanent Magnet Synchronous Motor,PMSM)以高效率、高功率密度和优良的控制性能,在工业和民用领域获得了广泛应用.因对PMSM应用要求的不断提高,PMSM相关技术也在持续而快速地发展.详细介绍了PMSM的控制策略,涵盖了基本... 永磁同步电机(Permanent Magnet Synchronous Motor,PMSM)以高效率、高功率密度和优良的控制性能,在工业和民用领域获得了广泛应用.因对PMSM应用要求的不断提高,PMSM相关技术也在持续而快速地发展.详细介绍了PMSM的控制策略,涵盖了基本控制算法、闭环控制策略以及无位置传感器控制技术.简述PMSM控制策略的工作流程与在系统中发挥的作用,以及众多学者针对控制策略的各项不足进行的多样改进.通过对这些控制策略的深入分析,总结出PMSM控制领域的发展现状和当前所面临的挑战,并展望未来的发展趋势与主要的研究热点. 展开更多
关键词 永磁同步电机 矢量控制 滑模控制 模型预测控制 无传感器控制 高频信号注入法
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基于生物启发模型的欠驱动AUV协同编队终端滑模控制
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作者 李志豪 董早鹏 +2 位作者 刘伟 盛金亮 孙蓬勃 《中国舰船研究》 北大核心 2025年第4期262-271,共10页
[目的]针对存在外界环境干扰以及模型不确定的欠驱动AUV协同编队轨迹跟踪控制问题,提出一种基于生物启发模型的终端滑模(BFTSMC)编队控制方法。[方法]首先,利用微分跟踪器平滑领航艇的艏向角,通过领航—跟随者的编队控制方法生成跟随艇... [目的]针对存在外界环境干扰以及模型不确定的欠驱动AUV协同编队轨迹跟踪控制问题,提出一种基于生物启发模型的终端滑模(BFTSMC)编队控制方法。[方法]首先,利用微分跟踪器平滑领航艇的艏向角,通过领航—跟随者的编队控制方法生成跟随艇的期望轨迹;其次利用反步法推导出虚拟期望速度以镇定AUV的位置误差,并采用生物启发模型,对虚拟速度控制律进行平滑处理,减少前期系统的抖振和降低对控制器的计算复杂程度;然后设计基于反正切函数的固定时间非奇异终端滑模控制器,使得整个编队系统更快收敛;最后为了减少外界环境干扰和模型不确定性带来的复合干扰,采用基于最小学习参数法的神经网络(MLP-RBF)进行补偿。[结果]相比于积分滑模控制,所提出的控制方法可使整个AUV编队系统更快、更精确地跟踪上参考轨迹。[结论]所设计的编队控制算法能够实现对AUV的三维轨迹跟踪。 展开更多
关键词 自主水下航行器 领航—跟随者法 生物启发模型 神经网络 滑模控制 编队控制
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