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Modeling and sliding mode control based on inverse compensation of piezo-positioning system
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作者 LI Zhi-bin XIN Yuan-ze +1 位作者 ZHANG Jian-qiang SUN Chong-shang 《中国光学(中英文)》 北大核心 2025年第1期170-185,共16页
In order to enhance the control performance of piezo-positioning system,the influence of hysteresis characteristics and its compensation method are studied.Hammerstein model is used to represent the dynamic hysteresis... In order to enhance the control performance of piezo-positioning system,the influence of hysteresis characteristics and its compensation method are studied.Hammerstein model is used to represent the dynamic hysteresis nonlinear characteristics of piezo-positioning actuator.The static nonlinear part and dynamic linear part of the Hammerstein model are represented by models obtained through the Prandtl-Ishlinskii(PI)model and Hankel matrix system identification method,respectively.This model demonstrates good generalization capability for typical input frequencies below 200 Hz.A sliding mode inverse compensation tracking control strategy based on P-I inverse model and integral augmentation is proposed.Experimental results show that compared with PID inverse compensation control and sliding mode control without inverse compensation,the sliding mode inverse compensation control has a more ideal step response and no overshoot,moreover,the settling time is only 6.2 ms.In the frequency domain,the system closed-loop tracking bandwidth reaches 119.9 Hz,and the disturbance rejection bandwidth reaches 86.2 Hz.The proposed control strategy can effectively compensate the hysteresis nonlinearity,and improve the tracking accuracy and antidisturbance capability of piezo-positioning system. 展开更多
关键词 piezo-positioning system hysteresis nonlinearity Hammerstein model Prandtl-Ishlinskii(P-I)model system identification sliding mode control
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Robust design of sliding mode control for airship trajectory tracking with uncertainty and disturbance estimation 被引量:1
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作者 WASIM Muhammad ALI Ahsan +2 位作者 CHOUDHRY Mohammad Ahmad SHAIKH Inam Ul Hasan SALEEM Faisal 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2024年第1期242-258,共17页
The robotic airship can provide a promising aerostatic platform for many potential applications.These applications require a precise autonomous trajectory tracking control for airship.Airship has a nonlinear and uncer... The robotic airship can provide a promising aerostatic platform for many potential applications.These applications require a precise autonomous trajectory tracking control for airship.Airship has a nonlinear and uncertain dynamics.It is prone to wind disturbances that offer a challenge for a trajectory tracking control design.This paper addresses the airship trajectory tracking problem having time varying reference path.A lumped parameter estimation approach under model uncertainties and wind disturbances is opted against distributed parameters.It uses extended Kalman filter(EKF)for uncertainty and disturbance estimation.The estimated parameters are used by sliding mode controller(SMC)for ultimate control of airship trajectory tracking.This comprehensive algorithm,EKF based SMC(ESMC),is used as a robust solution to track airship trajectory.The proposed estimator provides the estimates of wind disturbances as well as model uncertainty due to the mass matrix variations and aerodynamic model inaccuracies.The stability and convergence of the proposed method are investigated using the Lyapunov stability analysis.The simulation results show that the proposed method efficiently tracks the desired trajectory.The method solves the stability,convergence,and chattering problem of SMC under model uncertainties and wind disturbances. 展开更多
关键词 AIRSHIP CHATTERING extended Kalman filter(EKF) model uncertainties estimation sliding mode controller(smc)
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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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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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Sliding Mode Controller Design for Position and Speed Control of Flight Simulator Servo System with Large Friction 被引量:21
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作者 Liu Jinkun & Er LianjieAutomatic Control Department, Beijing University of Aeronautics and Astronautics, Beijing 100083, P. R. China 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2003年第3期59-62,共4页
Flight simulator is an important device and a typical high-performance position and speed servo system used in the hardware-in-the-loop simulation of flight control system. Friction is the main nonlinear resistance in... Flight simulator is an important device and a typical high-performance position and speed servo system used in the hardware-in-the-loop simulation of flight control system. Friction is the main nonlinear resistance in the flight simulator servo system, especially in a low-speed state. Based on the description of dynamic and static models of a nonlinear Stribeck friction model, this paper puts forward sliding mode controller to overcome the friction, whose stability is 展开更多
关键词 sliding mode control Flight simulator Servo system Friction model.
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Backstepping sliding mode control for uncertain strict-feedback nonlinear systems using neural-network-based adaptive gain scheduling 被引量:13
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作者 YANG Yueneng YAN Ye 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2018年第3期580-586,共7页
A neural-network-based adaptive gain scheduling backstepping sliding mode control(NNAGS-BSMC) approach for a class of uncertain strict-feedback nonlinear system is proposed.First, the control problem of uncertain st... A neural-network-based adaptive gain scheduling backstepping sliding mode control(NNAGS-BSMC) approach for a class of uncertain strict-feedback nonlinear system is proposed.First, the control problem of uncertain strict-feedback nonlinear systems is formulated. Second, the detailed design of NNAGSBSMC is described. The sliding mode control(SMC) law is designed to track a referenced output via backstepping technique.To decrease chattering result from SMC, a radial basis function neural network(RBFNN) is employed to construct the NNAGSBSMC to facilitate adaptive gain scheduling, in which the gains are scheduled adaptively via neural network(NN), with sliding surface and its differential as NN inputs and the gains as NN outputs. Finally, the verification example is given to show the effectiveness and robustness of the proposed approach. Contrasting simulation results indicate that the NNAGS-BSMC decreases the chattering effectively and has better control performance against the BSMC. 展开更多
关键词 backstepping control sliding mode control(smc neural network(NN) strict-feedback system chattering decrease
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Neural network based adaptive sliding mode control of uncertain nonlinear systems 被引量:4
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作者 Ghania Debbache Noureddine Goléa 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2012年第1期119-128,共10页
The purpose of this paper is the design of neural network-based adaptive sliding mode controller for uncertain unknown nonlinear systems. A special architecture adaptive neural network, with hyperbolic tangent activat... The purpose of this paper is the design of neural network-based adaptive sliding mode controller for uncertain unknown nonlinear systems. A special architecture adaptive neural network, with hyperbolic tangent activation functions, is used to emulate the equivalent and switching control terms of the classic sliding mode control (SMC). Lyapunov stability theory is used to guarantee a uniform ultimate boundedness property for the tracking error, as well as of all other signals in the closed loop. In addition to keeping the stability and robustness properties of the SMC, the neural network-based adaptive sliding mode controller exhibits perfect rejection of faults arising during the system operating. Simulation studies are used to illustrate and clarify the theoretical results. 展开更多
关键词 nonlinear system neural network sliding mode con- trol (smc adaptive control stability robustness.
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Robust H∞ Control of Uncertain Switched Systems: a Sliding Mode Control Design 被引量:17
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作者 LIAN Jie ZHAO Jun 《自动化学报》 EI CSCD 北大核心 2009年第7期965-970,共6页
关键词 自动化系统 鲁棒分析 分析方法 滞后转换法
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Modeling and controlling of a flexible hydraulic manipulator 被引量:2
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作者 李光 吴敏 《Journal of Central South University of Technology》 EI 2005年第5期578-583,共6页
A mathematical model was developed combining the dynamics of an Euler-Bernoulli beam, described by the assumed-mode method and hydraulic circuit dynamics. Only one matrix, termed drive Jacobian, was needed in the mode... A mathematical model was developed combining the dynamics of an Euler-Bernoulli beam, described by the assumed-mode method and hydraulic circuit dynamics. Only one matrix, termed drive Jacobian, was needed in the modeling of interaction between hydraulic circuit and flexible manipulator mechanism. Furthermore, a new robust controller based on mentioned above dynamic model was also considered to regulate both flexural vibrations and rigid body motion. The proposed controller combined sliding mode and backstepping techniques to deal with the nonlinear system with uncertainties. The sliding mode control was used to achieve an asymptotic joint angle and vibration regulation by providing a virtual force while the backstepping technique was used to regulate the spool position of a hydraulic valve to provide the required control force. Simulation results are presented to show the stabilizing effect and robustness of this control strategy. 展开更多
关键词 dynamic modeling flexible manipulator sliding mode control backstepping control hydraulic actuator
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Sliding mode control of three-phase AC/DC converters using exponential rate reaching law 被引量:1
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作者 JEERANANTASIN Narin NUNGAM Suksun 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2022年第1期210-221,共12页
Sliding mode control(SMC) becomes a common tool in designing robust nonlinear control systems, due to its inherent characteristics such as insensitivity to system uncertainties and fast dynamic response.Two modes are ... Sliding mode control(SMC) becomes a common tool in designing robust nonlinear control systems, due to its inherent characteristics such as insensitivity to system uncertainties and fast dynamic response.Two modes are involved in the SMC operation, namely reaching mode and sliding mode.In the reaching mode, the system state is forced to reach the sliding surface in a finite time.The major drawback of the SMC approach is the occurrence of chattering in the sliding mode, which is undesirable in most applications.Generally, the trade-off between chattering reduction and fast reaching time must be considered in the conventional SMC design.This paper proposes SMC design with a novel reaching law called the exponential rate reaching law(ERRL) to reduce chattering, and the control structure of the converter is designed based on the multiinput SMC that is applied to a three-phase AC/DC power converter.The simulation and experimental results show the effectiveness of the proposed technique. 展开更多
关键词 exponential rate reaching law(ERRL) multi-input sliding mode control(smc) chattering reduction three-phase AC-to-DC converter
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New adaptive quasi-sliding mode control for nonlinear discrete-time systems 被引量:11
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作者 Wang Weihong1,2 & Hou Zhongsheng3 1. School of Tra?c and Transportation, Beijing Jiaotong Univ., Beijing 100044, P. R. China 2. Dept. of Automation, Taiyuan Univ. of Science & Technology, Taiyuan 030024, P. R. China 3. Advanced Control Systems Lab, School of Electronics and Information Engineering, Beijing Jiaotong Univ., Beijing 100044, P. R. China 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2008年第1期154-160,共7页
A new adaptive quasi-sliding mode control algorithm is developed for a class of nonlinear discrete-time systems, which is especially useful for nonlinear systems with vaguely known dynamics. This design is model-free,... A new adaptive quasi-sliding mode control algorithm is developed for a class of nonlinear discrete-time systems, which is especially useful for nonlinear systems with vaguely known dynamics. This design is model-free, and is based directly on pseudo-partial-derivatives derived on-line from the input and output information of the system using an improved recursive projection type of identification algorithm. The theoretical analysis and simulation results show that the adaptive quasi-sliding mode control system is stable and convergent. 展开更多
关键词 quasi-sliding mode control adaptive control model-free control pseudo-partial-derivative
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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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Sliding mode control of solid state transformer using a three-level hysteresis function
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作者 刘宝龙 査亚兵 张涛 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第8期2063-2074,共12页
The solid state transformer(SST) can be viewed as an energy router in energy internet. This work presents sliding mode control(SMC) to improve dynamic state and steady state performance of a three-stage(rectifier stag... The solid state transformer(SST) can be viewed as an energy router in energy internet. This work presents sliding mode control(SMC) to improve dynamic state and steady state performance of a three-stage(rectifier stage, isolated stage and inverter stage) SST for energy internet. SMC with three-level hysteresis sliding functions is presented to control the input current of rectifier stage and output voltage of inverter stage to improve the robustness under external disturbance and parametric uncertainties and reduce the switching frequency. A modified feedback linearization technique using isolated stage simplified model is presented to achieve satisfactory regulation of output voltage of the isolated stage. The system is tested for steady state operation, reactive power control, dynamic load change and voltage sag simulations, respectively. The switching model of SST is implemented in Matlab/ Simulink to verify the SST control algorithms. 展开更多
关键词 solid state transformer(SST) energy internet sliding mode control(smc feedback linearization three-level hysteresis
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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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无铁心管状永磁直线电机多分辨率鲁棒性模型预测推力控制
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作者 徐磊 陈楠 +3 位作者 朱孝勇 范志祥 张超 孟盛龙 《电机与控制学报》 北大核心 2025年第6期101-112,共12页
针对无铁心管状永磁同步直线(IT-PMSL)电机电流谐波和变摩擦力等扰动引起的推力和速度脉动问题,提出一种多分辨率鲁棒性模型预测推力控制策略。首先,考虑可变摩擦力影响,推导IT-PMSL电机的数学模型,分析该电机位置-速度-反电动势畸变影... 针对无铁心管状永磁同步直线(IT-PMSL)电机电流谐波和变摩擦力等扰动引起的推力和速度脉动问题,提出一种多分辨率鲁棒性模型预测推力控制策略。首先,考虑可变摩擦力影响,推导IT-PMSL电机的数学模型,分析该电机位置-速度-反电动势畸变影响规律。在此基础上,引入超螺旋滑模自适应律,搭建一种多分辨率磁链预测模型,在不同速度和位置下对IT-PMSL电机永磁磁链值进行计算,提高磁链计算速度和准确性的同时有效减小控制系统的计算负担,进而实现磁链和推力的在线预测。接着,利用载荷角构造无权重系数的价值函数,避免价值函数的影响,有效提高模型预测推力控制的鲁棒性。最后,搭建IT-PMSL电机驱动控制系统,通过仿真和实验验证所提多分辨率模型预测推力控制的有效性。 展开更多
关键词 无铁心管状直线电机 永磁电机 多分辨率 磁链预测模型 模型预测推力控制 超螺旋滑模自适应律
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港口重载AGV转向稳定性容错控制策略
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作者 刘璇 刘玉卿 +2 位作者 王子航 张明路 张建华 《计算机集成制造系统》 北大核心 2025年第1期47-55,共9页
针对四轮独立驱动与转向(4WID-4WIS)型港口重载自动导引车(AGV)常见的驱动电机失效情况,提出了三层控制结构的容错控制策略来进行转向稳定性容错控制。上层控制模块设计为模型预测控制器(MPC)与PI车速跟随控制器,实现港口AGV的路径跟踪... 针对四轮独立驱动与转向(4WID-4WIS)型港口重载自动导引车(AGV)常见的驱动电机失效情况,提出了三层控制结构的容错控制策略来进行转向稳定性容错控制。上层控制模块设计为模型预测控制器(MPC)与PI车速跟随控制器,实现港口AGV的路径跟踪;中层控制模块设计为横摆角速度、质心侧偏角RBF神经网络鲁棒滑模控制器,用来计算出最佳附加横摆力矩;下层控制模块设计为失效分配策略,对力矩进行重新分配。最后,搭建了CarMaker测试平台,通过实验验证了容错控制策略的有效性与优越性。 展开更多
关键词 港口重载AGV 模型预测控制器 PI车速跟随控制器 RBF神经网络 滑模控制 失效分配
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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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Mecanum轮全向AGV轨迹跟踪级联控制器设计
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作者 文生平 苏毅龙 瞿弘毅 《华南理工大学学报(自然科学版)》 北大核心 2025年第1期49-61,共13页
针对四Mecanum轮驱动的自动导引车(AGV)的轨迹跟踪控制问题,设计了一种模型预测控制(MPC)和自适应滑模控制(SMC)级联的控制器,来改善控制精度和稳定性,提高控制过程的层次性、针对性和有效性。在运动学层面,建立了AGV轨迹跟踪误差模型,... 针对四Mecanum轮驱动的自动导引车(AGV)的轨迹跟踪控制问题,设计了一种模型预测控制(MPC)和自适应滑模控制(SMC)级联的控制器,来改善控制精度和稳定性,提高控制过程的层次性、针对性和有效性。在运动学层面,建立了AGV轨迹跟踪误差模型,将其转化为二次规划问题,并加入约束条件,配合模型预测控制的滚动优化来在线求解二次规划的最优解,将AGV位姿误差转化为轮子转速的期望输出;在动力学层面,采用滑模控制得到轮子的输出力矩,实现轮子对期望转速的跟踪,引入具有快速准确逼近能力的极限学习机(ELM)神经网络对模型不确定性和未知干扰进行在线观测,并与滑模控制相结合自适应抵消干扰,进一步提高控制器的鲁棒性。在余弦扰动和脉冲干扰下对控制器进行仿真验证,并将结果与PID控制结果进行对比,发现MPC+SMC级联控制器的跟踪效果具有明显优势;与采用径向基函数(RBF)神经网络观测的级联控制器的对比表明,采用ELM观测器的控制器对干扰的鲁棒性更强,在各转速条件下与干扰曲线的拟合度均超过95%,其跟踪误差在多项指标上相比其他方法小1个数量级,最大位置偏差仅为毫米级。轨迹跟踪样机实验结果验证了该控制器的实用性和可行性。 展开更多
关键词 MECANUM轮 轨迹跟踪 模型预测控制 滑模控制 极限学习机
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基于变指数滑模的三相混合变流器模型预测电流控制研究
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作者 马辉 陈伟涛 +2 位作者 余本领 赵军波 席磊 《电机与控制学报》 北大核心 2025年第7期75-84,共10页
为降低三相混合变流器输入电流畸变率并提高系统对负载变化的鲁棒性,提出一种基于变指数趋近律滑模控制的模型预测电流控制方法。首先,在无源变流器前端串联滤波电感,以抑制总输入电流中的周期性畸变。其次,基于系统数学模型,为电压外... 为降低三相混合变流器输入电流畸变率并提高系统对负载变化的鲁棒性,提出一种基于变指数趋近律滑模控制的模型预测电流控制方法。首先,在无源变流器前端串联滤波电感,以抑制总输入电流中的周期性畸变。其次,基于系统数学模型,为电压外环设计变指数趋近律滑模控制器,显著提升了系统应对负载扰动的鲁棒性。在内环控制中,为有源变流器设计了快速最优三矢量模型预测控制器,仅需两次寻优即可确定最优矢量组合,大幅降低了计算复杂度;为无源变流器设计了一种基于三阶扩展状态观测器的输入电压观测方法,减少了传感器使用数量,同时有效提升了输入电流质量。最后,将有源变流器的预测目标设定为总输入电流,实现了三相混合变流器总输入电流的高质量控制。 展开更多
关键词 三相混合变流器 模型预测控制 滑模控制 变指数趋近律 电流畸变
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基于离散空间矢量调制的PMSM模型预测电流控制
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作者 赵希梅 王海朋 金鸿雁 《电机与控制学报》 北大核心 2025年第3期50-58,73,共10页
针对永磁同步电动机(PMSM)采用传统有限集模型预测控制时存在稳态电流脉动大及电机参数失配导致的性能下降问题,提出基于离散空间矢量调制(DSVM)的模型预测电流控制方法。首先,采用在DSVM基础上进一步扩展电压矢量的方式来减小稳态电流... 针对永磁同步电动机(PMSM)采用传统有限集模型预测控制时存在稳态电流脉动大及电机参数失配导致的性能下降问题,提出基于离散空间矢量调制(DSVM)的模型预测电流控制方法。首先,采用在DSVM基础上进一步扩展电压矢量的方式来减小稳态电流脉动,同时鉴于DSVM可能带来的计算量问题,利用估计最优电压矢量位置来减小计算负担,此外采用一种双周期的电压排列顺序来固定开关频率;其次,针对系统中存在的参数失配问题,采用滑模扰动观测器将系统参数失配造成的扰动补偿到电流预测模块,使得在电机参数失配的条件下也能获取准确的电流预测值,从而选取最优电压矢量;最后,通过DSVM和滑模扰动观测器相结合的方式,提高系统稳态性能的同时增强了系统参数的鲁棒性。仿真实验结果验证了该方法的有效性。 展开更多
关键词 永磁同步电动机 模型预测控制 离散空间矢量调制 参数失配 滑模扰动观测器
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