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Adaptive fuzzy sliding mode control for robotic airship with model uncertainty and external disturbance 被引量:6
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作者 Yueneng Yang Jie Wu Wei Zheng 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2012年第2期250-255,共6页
An adaptive fuzzy sliding mode control (AFSMC) ap- proach is proposed for a robotic airship. First, the mathematical model of an airship is derived in the form of a nonlinear control system. Second, an AFSMC approac... An adaptive fuzzy sliding mode control (AFSMC) ap- proach is proposed for a robotic airship. First, the mathematical model of an airship is derived in the form of a nonlinear control system. Second, an AFSMC approach is proposed to design the attitude control system of airship, and the global stability of the closed-loop system is proved by using the Lyapunov stability theorem. Finally, simulation results verify the effectiveness and robustness of the proposed control approach in the presence of model uncertainties and external disturbances. 展开更多
关键词 flight control sliding mode fuzzy system adaptation law station keeping airship.
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Fuzzy robust sliding mode control of a class of uncertain systems 被引量:7
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作者 REN Li-tong 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第9期2296-2304,共9页
Aiming at a class of systems under parameter perturbations and unknown external disturbances, a method of fuzzy robust sliding mode control was proposed. Firstly, an integral sliding mode surface containing state feed... Aiming at a class of systems under parameter perturbations and unknown external disturbances, a method of fuzzy robust sliding mode control was proposed. Firstly, an integral sliding mode surface containing state feedback item was designed based on robust H∞ control theory. The robust state feedback control was utilized to substitute for the equivalent control of the traditional sliding mode control. Thus the robustness of systems sliding mode motion was improved even the initial states were unknown. Furthermore, when the upper bound of disturbance was unknown, the switching control logic was difficult to design, and the drawbacks of chattering in sliding mode control should also be considered simultaneously. To solve the above-mentioned problems, the fuzzy nonlinear method was applied to approximate the switching control term. Based on the Lyapunov stability theory, the parameter adaptive law which could guarantee the system stability was devised. The proposed control strategy could reduce the system chattering effectively. And the control input would not switch sharply, which improved the practicality of the sliding mode controller. Finally, simulation was conducted on system with parameter perturbations and unknown external disturbances. The result shows that the proposed method could enhance the approaching motion performance effectively. The chattering phenomenon is weakened, and the system possesses stronger robustness against parameter perturbations and external disturbances. 展开更多
关键词 uncertain systems robust control fuzzy sliding mode control CHATTERING
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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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Fuzzy sliding mode control guidance law with terminal impact angle and acceleration constraints 被引量:6
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作者 Qingchun Li Wensheng Zhang +1 位作者 Gang Han Yuan Xie 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2016年第3期664-679,共16页
In this paper, a novel fuzzy sliding mode control(FSMC) guidance law with terminal constraints of miss distance, impact angle and acceleration is presented for a constant speed missile against the stationary or slow... In this paper, a novel fuzzy sliding mode control(FSMC) guidance law with terminal constraints of miss distance, impact angle and acceleration is presented for a constant speed missile against the stationary or slowly moving target. The proposed guidance law combines the sliding mode control algorithm with a fuzzy logic control scheme for the lag-free system and the first-order lag system. Through using Lyapunov stability theory, we prove the sliding surface converges to zero in finite time. Furthermore, considering the uncertain information and system disturbances, the guidance gains are on-line optimized by fuzzy logic technique. Numerical simulations are performed to demonstrate the performance of the FSMC guidance law and the results illustrate the validity and effectiveness of the proposed guidance law. 展开更多
关键词 guidance law sliding mode control fuzzy logic impact angle
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Fuzzy-second order sliding mode control optimized by genetic algorithm applied in direct torque control of dual star induction motor 被引量:1
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作者 Ghoulemallah BOUKHALFA Sebti BELKACEM +1 位作者 Abdesselem CHIKHI Moufid BOUHENTALA 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第12期3974-3985,共12页
The direct torque control of the dual star induction motor(DTC-DSIM) using conventional PI controllers is characterized by unsatisfactory performance, such as high ripples of torque and flux, and sensitivity to parame... The direct torque control of the dual star induction motor(DTC-DSIM) using conventional PI controllers is characterized by unsatisfactory performance, such as high ripples of torque and flux, and sensitivity to parametric variations. Among the most evoked control strategies adopted in this field to overcome these drawbacks presented in classical drive, it is worth mentioning the use of the second order sliding mode control(SOSMC) based on the super twisting algorithm(STA) combined with the fuzzy logic control(FSOSMC). In order to realize the optimal control performance, the FSOSMC parameters are adjusted using an optimization algorithm based on the genetic algorithm(GA). The performances of the envisaged control scheme, called G-FSOSMC, are investigated against G-SOSMC, G-PI and BBO-FSOSMC algorithms. The proposed controller scheme is efficient in reducing the torque and flux ripples, and successfully suppresses chattering. The effects of parametric uncertainties do not affect system performance. 展开更多
关键词 double star induction machine direct torque control fuzzy second order sliding mode control genetic algorithm biogeography based optimization algorithm
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Discrete sliding mode prediction control of uncertain switched systems
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作者 He Zhaolan Wang Mao Liu Shuhuan 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2009年第5期1065-1071,共7页
The robust stabilization problem for a class of uncertain discrete-time switched systems is presented. A predictive sliding mode control strategy is proposed, and a discrete-time reaching law is improved. By applying ... The robust stabilization problem for a class of uncertain discrete-time switched systems is presented. A predictive sliding mode control strategy is proposed, and a discrete-time reaching law is improved. By applying a predictive sliding surface and a reference trajectory, combining with the state feedback correction and rolling optimization method in the predictive control strategy, a predictive sliding mode controller is synthesized, which guarantees the asymptotic stability for the closed-loop systems. The designed control strategy has stronger robustness and chattering reduction property to conquer with the system uncertainties. In addition, a unique nonswitched sliding surface is designed. The reason is to avoid the repetitive jump of the trajectories of the state components of the closed-loop system between sliding surfaces because it might cause the possible instability. Finally, a numerical example is given to illustrate the effectiveness of the proposed theory. 展开更多
关键词 switched system sliding mode control predictive control rolling optimization.
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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 fuzzy sliding-mode control for T-S model based permanent magnet synchronous motor
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作者 张细政 王耀南 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2009年第S1期68-73,共6页
A fuzzy sliding-mode control (FSMC) scheme based on T-S fuzzy models was proposed for the permanent magnet synchronous motor (PMSM) drive system to solve the speed tracking problem. A T-S fuzzy model was firstly forme... A fuzzy sliding-mode control (FSMC) scheme based on T-S fuzzy models was proposed for the permanent magnet synchronous motor (PMSM) drive system to solve the speed tracking problem. A T-S fuzzy model was firstly formed to represent the nonlinear system of PMSM. For converting the tracking control into a stabilization problem, a new control design was proposed to define the internal desired states. Then, the FSMC controller for PMSM system with parameter variation and load disturbance was designed based on the fuzzy model. The performance of the proposed controller was verified by experimental results on PMSM system. The results show that the FSMC scheme can drive the dynamics of PMSM into a designated sliding surface in finite time and guarantee the property of asymptotical stability. The information of upper bound of modeling errors as well as perturbations is not required when using the FSMC controller. 展开更多
关键词 PERMANENT MAGNET SYNCHRONOUS motor (PMSM) uncertain T-S nonlinear systems sliding-mode control fuzzy sliding surfaces linear matrix INEQUALITIES (LMIs)
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Chattering analysis for discrete sliding mode control ofdistributed control systems 被引量:4
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作者 litong ren shousheng xie +2 位作者 yu zhang jingbo peng ledi zhang 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2016年第5期1096-1107,共12页
The chattering characteristic of sliding mode control isanalyzed when it is applied in distributed control systems (DCSs).For a DCS with random time delay and packet dropout, a discreteswitching system model with ti... The chattering characteristic of sliding mode control isanalyzed when it is applied in distributed control systems (DCSs).For a DCS with random time delay and packet dropout, a discreteswitching system model with time varying sampling period isconstructed based on the time delay system method. The reachinglaw based sliding mode controller is applied in the proposedsystem. The exponential stability condition in the form of linearmatrix inequality is figured out based on the multi-Lyaponov functionmethod. Then, the chattering characteristic is analyzed for theswitching system, and a chattering region related with time varyingsampling period and external disturbance is proposed. Finally, numericalexamples are given to illustrate the validity of the analysisresult. 展开更多
关键词 distributed control system sliding mode control switching system chattering analysis.
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Adaptive Fuzzy Control for a Class of MIMO Nonlinear Systems with Unknown Dead-zones 被引量:14
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作者 ZHANG Tian-Ping YI Yang 《自动化学报》 EI CSCD 北大核心 2007年第1期96-100,共5页
A design scheme of adaptive fuzzy controller for a class of uncertain MIMO nonlinear systems with unknown dead-zones and a triangular control structure is proposed in this pa-per.The design is based on the principle o... A design scheme of adaptive fuzzy controller for a class of uncertain MIMO nonlinear systems with unknown dead-zones and a triangular control structure is proposed in this pa-per.The design is based on the principle of sliding mode control and the property of Nussbaum function.The approach does not require a priori knowledge of the signs of the control gains and the upper bounds and lower bounds of dead-zone parameters to be known a priori.By introducing the integral-type Lyapunov function and adopting the adaptive compensation term of the upper bound of the optimal approximation error and the dead-zone disturbance,the closed-loop control system is proved to be semi-globally stable in the sense that all signals involved are bounded,with tracking errors converging to zero. 展开更多
关键词 DEAD-ZONE fuzzy control adaptive control sliding mode control Nussbaum function
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Integrated guidance and control of guided projectile with multiple constraints based on fuzzy adaptive and dynamic surface 被引量:8
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作者 Shang Jiang Fu-qing Tian +1 位作者 Shi-yan Sun Wei-ge Liang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2020年第6期1130-1141,共12页
Based on fuzzy adaptive and dynamic surface(FADS),an integrated guidance and control(IGC)approach was proposed for large caliber naval gun guided projectile,which was robust to target maneuver,canard dynamic character... Based on fuzzy adaptive and dynamic surface(FADS),an integrated guidance and control(IGC)approach was proposed for large caliber naval gun guided projectile,which was robust to target maneuver,canard dynamic characteristics,and multiple constraints,such as impact angle,limited measurement of line of sight(LOS)angle rate and nonlinear saturation of canard deflection.Initially,a strict feedback cascade model of IGC in longitudinal plane was established,and extended state observer(ESO)was designed to estimate LOS angle rate and uncertain disturbances with unknown boundary inside and outside of system,including aerodynamic parameters perturbation,target maneuver and model errors.Secondly,aiming at zeroing LOS angle tracking error and LOS angle rate in finite time,a nonsingular terminal sliding mode(NTSM)was designed with adaptive exponential reaching law.Furthermore,combining with dynamic surface,which prevented the complex differential of virtual control laws,the fuzzy adaptive systems were designed to approximate observation errors of uncertain disturbances and to reduce chatter of control law.Finally,the adaptive Nussbaum gain function was introduced to compensate nonlinear saturation of canard deflection.The LOS angle tracking error and LOS angle rate were convergent in finite time and whole system states were uniform ultimately bounded,rigorously proven by Lyapunov stability theory.Hardware-in-the-loop simulation(HILS)and digital simulation experiments both showed FADS provided guided projectile with good guidance performance while striking targets with different maneuvering forms. 展开更多
关键词 Integrated guidance and control Multiple constraints fuzzy adaptive Dynamic surface Nonsingular terminal sliding mode Extended state observer
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Linearization of T-S fuzzy systems and robust H_∞ control 被引量:4
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作者 YOON Tae-Sung 王法广 +2 位作者 PARK Seung-Kyu KWAK Gun-Pyong AHN Ho-Kyun 《Journal of Central South University》 SCIE EI CAS 2011年第1期140-145,共6页
Takagi-Sugeno(T-S) fuzzy model is difficult to be linearized because of membership functions included.So,novel T-S fuzzy state transformation and T-S fuzzy feedback are proposed for the linearization of T-S fuzzy syst... Takagi-Sugeno(T-S) fuzzy model is difficult to be linearized because of membership functions included.So,novel T-S fuzzy state transformation and T-S fuzzy feedback are proposed for the linearization of T-S fuzzy system.The novel T-S fuzzy state transformation is the fuzzy combination of local linear transformation which transforms local linear models in the T-S fuzzy model into the local linear controllable canonical models.The fuzzy combination of local linear controllable canonical model gives controllable canonical T-S fuzzy model and then nonlinear feedback is obtained easily.After the linearization of T-S fuzzy model,a robust H∞ controller with the robustness of sliding model control(SMC) is designed.As a result,controlled T-S fuzzy system shows the performance of H∞ control and the robustness of SMC. 展开更多
关键词 T-S fuzzy control LINEARIZATION H∞ control sliding mode control
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油电混合-机液复合动力传动系统模式切换协调控制 被引量:1
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作者 朱镇 张勤博 +2 位作者 张宏伟 王德海 陈龙 《西安交通大学学报》 北大核心 2025年第6期185-197,共13页
针对车辆动力传动系统模式切换过程中平稳性不足的问题,设计了一款油电混合-机液复合动力传动系统,将电机和发动机集成作为双动力源,通过机械-液压复合传动装置实现高效动力传递。研究从构型设计和动力传动模式分析入手,分别建立动力系... 针对车辆动力传动系统模式切换过程中平稳性不足的问题,设计了一款油电混合-机液复合动力传动系统,将电机和发动机集成作为双动力源,通过机械-液压复合传动装置实现高效动力传递。研究从构型设计和动力传动模式分析入手,分别建立动力系统、传动系统、切换元件及整车动力传动系统的等效动力学模型,以电机低档切换至混合动力转矩耦合这一复杂过程为典型研究对象,建立物理模型,设计模糊比例、积分、微分(PID)控制器以调节电机转速,结合正交试验法优化切换元件的切换时序,实现电机与切换元件的复合控制。仿真结果表明:优化后的系统显著改善了模式切换的平稳性,输出轴的最大冲击度由11.4188m/s^(3)降低至8.1127m/s^(3),转矩波动系数由4.771减小至3.874,转速波动幅度由17.1186%降低至2.3500%,切换时间由1.5s缩短至0.7s。硬件在环(HIL)测试实验进一步验证了该控制策略在不同模式切换及复杂工况条件下均能表现出良好的适用性和稳定性。 展开更多
关键词 动力传动系统 切换元件 模式切换 模糊PID控制 正交试验
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双电机线控转向系统协调驱动控制研究 被引量:1
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作者 刘军 王怡凡 +1 位作者 顾洪钢 杨紫燕 《重庆理工大学学报(自然科学)》 北大核心 2025年第1期19-26,共8页
选择双电机线控转向(steer-by-wire,SBW)系统作为研究对象,针对负载扰动、参数摄动以及双电机耦合等因素导致的双电机SBW系统跟踪与同步性能差的问题,提出一种基于自抗扰控制与滑模交叉耦合控制的双电机协调驱动控制策略。分析了双电机... 选择双电机线控转向(steer-by-wire,SBW)系统作为研究对象,针对负载扰动、参数摄动以及双电机耦合等因素导致的双电机SBW系统跟踪与同步性能差的问题,提出一种基于自抗扰控制与滑模交叉耦合控制的双电机协调驱动控制策略。分析了双电机SBW系统的结构和工作机理,建立了该系统动力学模型。设计了一个二阶自抗扰控制器用于电机位置控制,整合电机控制的位置、速度环,解决传统电机位置控制中速度参数不可调节的问题。为了进一步提高二阶自抗扰控制器在系统状态变化时的控制效果,利用模糊神经网络算法动态优化控制器参数,增强控制系统的自适应能力。同时,基于交叉耦合控制思想,采用滑模控制算法设计了滑模速度协调控制器解决双电机系统的不同步问题。最后,基于Carsim-Simulink联合仿真平台进行了仿真分析,证明了所提控制策略的有效性。 展开更多
关键词 线控转向 自抗扰控制 模糊神经网络 滑模控制 交叉耦合控制
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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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仿生机器鱼精确俯仰运动与深度控制
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作者 李宗刚 王治平 +1 位作者 夏广庆 康会峰 《船舶力学》 北大核心 2025年第9期1407-1422,共16页
针对3自由度胸鳍、柔性身体与尾鳍协同推进步态控制参数繁多、动力学建模不精确问题,设计了一种基于模糊自适应的滑模方法控制仿生机器鱼精确俯仰运动。首先,基于给定的3自由度胸鳍与柔性身体协同推进运动规律,通过最小二乘法利用CFD数... 针对3自由度胸鳍、柔性身体与尾鳍协同推进步态控制参数繁多、动力学建模不精确问题,设计了一种基于模糊自适应的滑模方法控制仿生机器鱼精确俯仰运动。首先,基于给定的3自由度胸鳍与柔性身体协同推进运动规律,通过最小二乘法利用CFD数值模拟建立了鱼体推力/力矩与胸鳍拍翼旋转相位差和柔性身体波动频率之间的关系。其次,以当前和期望深度水平面为渐近面的光滑曲线为期望运动轨迹,利用所设计模糊自适应滑模控制器实现机器鱼自由俯仰运动,其中采用模糊控制器分析计算模糊控制规则自适应律,实时补偿机器鱼运动时动力学模型的不确定项和水流干扰项,并结合滑模控制器减小系统抖振实现轨迹精确跟踪。最后,仿真和水池实验结果表明,机器鱼能够快速、平稳地在不同深度之间进行游动,其运动轨迹光滑,最大深度偏差仅为0.08 m,稳态误差保持在0.04 m以内,从而验证了所提方法的有效性。 展开更多
关键词 仿生机器鱼 CFD数值模拟 模糊自适应控制 滑模控制 定深运动
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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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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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基于模糊变增益的直线磁力驱动系统超螺旋滑模控制
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作者 孙凤 代雪飞 +5 位作者 赵川 王鑫 裴文哲 金俊杰 徐方超 周冉 《西南交通大学学报》 北大核心 2025年第4期1003-1012,共10页
针对直线磁力驱动系统的位置跟踪精度易受外部扰动等不确定因素影响以及滑模控制中的抖振问题,提出一种基于模糊变增益的超螺旋滑模控制策略.首先,介绍直线磁力驱动系统的工作原理,建立含扰动的直线磁力驱动系统数学模型;其次,使用超螺... 针对直线磁力驱动系统的位置跟踪精度易受外部扰动等不确定因素影响以及滑模控制中的抖振问题,提出一种基于模糊变增益的超螺旋滑模控制策略.首先,介绍直线磁力驱动系统的工作原理,建立含扰动的直线磁力驱动系统数学模型;其次,使用超螺旋滑模算法设计速度控制器,实现系统精确、快速的收敛,并通过Lyapunov函数证明系统稳定性,进一步地,使用模糊算法对超螺旋滑模增益进行自适应调节;最后,对所提复合控制方法进行实验验证.结果表明:基于模糊变增益的超螺旋滑模控制位置跟踪精度高,响应速度快;相对于超螺旋滑模控制,阶跃位置跟踪响应时间缩短28%,稳态误差从3μm减小到1μm,并且没有抖振现象;正弦位置跟踪相位差减小13%,位置跟踪精度提升14%;方波位置跟踪有更好的动态性能;施加扰动后,系统到达稳态时间减小13%,受到负载之后的延迟时间减小80%,抗扰性能大幅提升. 展开更多
关键词 直线磁力驱动系统 超螺旋滑模控制 模糊控制 自适应增益 高精度位置跟踪
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电动汽车液压ABS滑模变结构模糊PID控制设计
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作者 张杰飞 张昊 《机械设计与制造》 北大核心 2025年第4期237-240,245,共5页
为了进一步提高汽车防抱死制动系统(ABS)控制效率和运行平稳性,设计了一种电动汽车液压ABS滑模变结构模糊PID控制方法。在分析液压ABS系统的组成的基础上,构建ABS滑模变结构控制器。在MATLAB/SIMULINK平台建立了模糊PID的控制系统,分别... 为了进一步提高汽车防抱死制动系统(ABS)控制效率和运行平稳性,设计了一种电动汽车液压ABS滑模变结构模糊PID控制方法。在分析液压ABS系统的组成的基础上,构建ABS滑模变结构控制器。在MATLAB/SIMULINK平台建立了模糊PID的控制系统,分别从不同高低附着系数路面以及不同负载工况两方面开展仿真分析。研究结果表明:当路面属于高附着系数时,模糊PID控制后滑移率达到了一个合适的范围,车辆获得了最大制动强度,极大缩短制动距离。在(60~20)km/h范围内进行制动时,轴间滑模控制能够与前后轴制动力分配高效匹配,制动效果理想。处于高-低附路面工况下时,模糊PID控制模式比常规制动与ABS滑模制动性能更优。模糊PID制动快速达到了稳定制动状态。 展开更多
关键词 ABS控制 模糊PID MATLAB平台 滑模变结构
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