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Multicopter interception control based on visual servo and virtual tube in a cluttered environment
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作者 LYU Yangjie GAO Yan QI Guoyuan 《Journal of Systems Engineering and Electronics》 2025年第4期1094-1102,共9页
This paper presents a method of multicopter intercep-tion control based on visual servo and virtual tube in a cluttered environment.The proposed hybrid heuristic function improves the efficiency of the A*algorithm.The... This paper presents a method of multicopter intercep-tion control based on visual servo and virtual tube in a cluttered environment.The proposed hybrid heuristic function improves the efficiency of the A*algorithm.The revised objective function makes the virtual tube generating curve not only smooth but also close to the path points generated by the A*algorithm.In six dif-ferent simulation scenarios,the efficiency of the modified A*algorithm is 6.2%higher than that of the traditional A*algorithm.The efficiency of path planning and virtual tube planning is veri-fied by simulations.The effectiveness of interception control is verified by a software-in-loop(SIL)simulation. 展开更多
关键词 interception control visual servo virtual tube.
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Adaptive Robust Servo Control for Vertical Electric Stabilization System of Tank and Experimental Validation 被引量:2
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作者 Darui Lin Xiuye Wang +1 位作者 Yimin Wang Guolai Yang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第1期326-342,共17页
A tracking stability control problem for the vertical electric stabilization system of moving tank based on adaptive robust servo control is addressed.This paper mainly focuses on two types of possibly fast timevaryin... A tracking stability control problem for the vertical electric stabilization system of moving tank based on adaptive robust servo control is addressed.This paper mainly focuses on two types of possibly fast timevarying but bounded uncertainty within the vertical electric stabilization system:model parameter uncertainty and uncertain nonlinearity.First,the vertical electric stabilization system is constructed as an uncertain nonlinear dynamic system that can reflect the practical mechanics transfer process of the system.Second,the dynamical equation in the form of state space is established by designing the angular tracking error.Third,the comprehensive parameter of system uncertainty is designed to estimate the most conservative effects of uncertainty.Finally,an adaptive robust servo control which can effectively handle the combined effects of complex nonlinearity and uncertainty is proposed.The feasibility of the proposed control strategy under the practical physical condition is validated through the tests on the experimental platform.This paper pioneers the introduction of the internal nonlinearity and uncertainty of the vertical electric stabilization system into the settlement of the tracking stability control problem,and validates the advanced servo control strategy through experiment for the first time. 展开更多
关键词 Adaptive robust servo control Experimental validation Nonlinearity compensation System uncertainty Vertical electric stabilization system
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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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Fuzzy iterative learning control of electro-hydraulic servo system for SRM direct-drive volume control hydraulic press 被引量:18
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作者 郑建明 赵升吨 魏树国 《Journal of Central South University》 SCIE EI CAS 2010年第2期316-322,共7页
A new kind of volume control hydraulic press that combines the advantages of both hydraulic and SRM(switched reluctance motor) driving technology is developed.Considering that the serious dead zone and time-variant no... A new kind of volume control hydraulic press that combines the advantages of both hydraulic and SRM(switched reluctance motor) driving technology is developed.Considering that the serious dead zone and time-variant nonlinearity exist in the volume control electro-hydraulic servo system,the ILC(iterative learning control) method is applied to tracking the displacement curve of the hydraulic press slider.In order to improve the convergence speed and precision of ILC,a fuzzy ILC algorithm that utilizes the fuzzy strategy to adaptively adjust the iterative learning gains is put forward.The simulation and experimental researches are carried out to investigate the convergence speed and precision of the fuzzy ILC for hydraulic press slider position tracking.The results show that the fuzzy ILC can raise the iterative learning speed enormously,and realize the tracking control of slider displacement curve with rapid response speed and high control precision.In experiment,the maximum tracking error 0.02 V is achieved through 12 iterations only. 展开更多
关键词 hydraulic press volume control electro-hydraulic servo iterative learning control fuzzy control
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Learning-based force servoing control of a robot with vision in an unknown environment 被引量:2
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作者 XiaoNanfeng 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2004年第2期171-178,共8页
A learning-based control approach is presented for force servoing of a robot with vision in an unknown environment. Firstly, mapping relationships between image features of the servoing object and the joint angles of ... A learning-based control approach is presented for force servoing of a robot with vision in an unknown environment. Firstly, mapping relationships between image features of the servoing object and the joint angles of the robot are derived and learned by a neural network. Secondly, a learning controller based on the neural network is designed for the robot to trace the object. Thirdly, a discrete time impedance control law is obtained for the force servoing of the robot, the on-line learning algorithms for three neural networks are developed to adjust the impedance parameters of the robot in the unknown environment. Lastly, wiping experiments are carried out by using a 6 DOF industrial robot with a CCD camera and a force/torque sensor in its end effector, and the experimental results confirm the effecti veness of the approach. 展开更多
关键词 ROBOTICS force servoing vision control learning algorithm neural network.
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Compensation for secondary uncertainty in electro-hydraulic servo system by gain adaptive sliding mode variable structure control 被引量:11
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作者 张友旺 桂卫华 《Journal of Central South University of Technology》 EI 2008年第2期256-263,共8页
Based on consideration of the differential relations between the immeasurable variables and measurable variables in electro-hydraulic servo system,adaptive dynamic recurrent fuzzy neural networks(ADRFNNs) were employe... Based on consideration of the differential relations between the immeasurable variables and measurable variables in electro-hydraulic servo system,adaptive dynamic recurrent fuzzy neural networks(ADRFNNs) were employed to identify the primary uncertainty and the mathematic model of the system was turned into an equivalent linear model with terms of secondary uncertainty.At the same time,gain adaptive sliding mode variable structure control(GASMVSC) was employed to synthesize the control effort.The results show that the unrealization problem caused by some system's immeasurable state variables in traditional fuzzy neural networks(TFNN) taking all state variables as its inputs is overcome.On the other hand,the identification by the ADRFNNs online with high accuracy and the adaptive function of the correction term's gain in the GASMVSC make the system possess strong robustness and improved steady accuracy,and the chattering phenomenon of the control effort is also suppressed effectively. 展开更多
关键词 electro-hydraulic servo system adaptive dynamic recurrent fuzzy neural network(ADRFNN) gain adaptive slidingmode variable structure control(GASMVSC) secondary uncertainty
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Control strategy for pneumatic rotary position servo systems based on feed forward compensation pole-placement self-tuning method 被引量:2
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作者 毛新涛 杨庆俊 +1 位作者 吴晋军 包钢 《Journal of Central South University》 SCIE EI CAS 2009年第4期608-613,共6页
The pneumatic rotary position system, in which an electro-pneumatic proportional flow valve controled a rotary cylinder, was studied, and its mathematical model was built. The model indicated that the controlled pneum... The pneumatic rotary position system, in which an electro-pneumatic proportional flow valve controled a rotary cylinder, was studied, and its mathematical model was built. The model indicated that the controlled pneumatic system had disadvantages such as inherent non-linearity and variations of system parameters with working points. In order to improve the dynamic performance of the system, feed forward compensation self-tuning pole-placement strategy was adopted to place the poles of the system in a desired position in real time, and a recursive least square method with fixed forgetting factors was also used in the parameter estimation. Experimental results show that the steady state error of the pneumatic rotary position system is within 3% and the identified system parameters can be converged in 5 s. Under different loads, the controlled system has an excellent tracking performance and robustness of anti-disturbance. 展开更多
关键词 pneumatic servo system adaptive control parameter identification POLE-PLACEMENT
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Parameterized design of nonlinear feedback controllers for servo positioning systems 被引量:1
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作者 Cheng Guoyang Jin Wenguang 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2006年第3期593-599,共7页
To achieve fast, smooth and accurate set point tracking in servo positioning systems, a parameterized design of nonlinear feedback controllers is presented, based on a so-called composite nonlinear feedback (CNF) co... To achieve fast, smooth and accurate set point tracking in servo positioning systems, a parameterized design of nonlinear feedback controllers is presented, based on a so-called composite nonlinear feedback (CNF) control technique. The controller designed here consists of a linear feedback part and a nonlinear part. The linear part is responsible for stability and fast response of the closed-loop system. The nonlinear part serves to increase the damping ratio of closed-loop poles as the controlled output approaches the target reference. The CNF control brings together the good points of both the small and the large damping ratio cases, by continuously scheduling the damping ratio of the dominant closed-loop poles and thus has the capability for superior transient performance, i.e. a fast output response with low overshoot. In the presence of constant disturbances, an integral action is included so as to remove the static bias. An explicitly parameterized controller is derived for servo positioning systems characterized by second-order model. Practical application in a micro hard disk drive servo system is then presented, together with some discussion of the rationale and characteristics of such design. Simulation and experimental results demonstrate the effectiveness of this control design methodology. 展开更多
关键词 control systems nonlinear feedback parameterized design servo tracking disturbance.
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High precise control method for a new type of Piezoelectric electro-hydraulic servo valve 被引量:2
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作者 周淼磊 田彦涛 +1 位作者 高巍 杨志刚 《Journal of Central South University of Technology》 EI 2007年第6期832-837,共6页
A new type of piezoelectric electro-hydraulic servo valve system was proposed. And then multilayer piezoelectric actuator based on new piezoelectric ceramic material was used as the electricity-machine converter of th... A new type of piezoelectric electro-hydraulic servo valve system was proposed. And then multilayer piezoelectric actuator based on new piezoelectric ceramic material was used as the electricity-machine converter of the proposed piezoelectric electro-hydraulic servo valve. The proposed piezoelectric electro-hydraulic servo valve has ascendant performance compared with conventional ones. But the system is of high nonlinearity and uncertainty, it cannot achieve favorable control performance by conventional control method. To develop an efficient way to control piezoelectric electro-hydraulic servo valve system, a high-precise fuzzy control method with hysteresis nonlinear model in feedforward loop was proposed. The control method is separated into two parts: a feedforward loop with Preisach hysteresis nonlinear model and a feedback loop with high-precise fuzzy control. Experimental results show that the hysteresis loop and the maximum output hysteresis by the PID control method are 4.22% and 2.11 μm, respectively; the hysteresis loop and the maximum output hysteresis by the proposed control method respectively are 0.74% and 0.37 μm, respectively; the maximum tracking error by the PID control method for sine wave reference signal is about 5.02%, the maximum tracking error by the proposed control method for sine wave reference signal is about 0.85%. 展开更多
关键词 piezoelectric electro-hydraulic servo valve hysteresis nonlinearity Preisach model fuzzy control
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Research on improved active disturbance rejection control of continuous rotary motor electro-hydraulic servo system 被引量:7
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作者 WANG Xiao-jing FENG Ya-ming SUN Yu-wei 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第12期3733-3743,共11页
In order to meet the precision requirements and tracking performance of the continuous rotary motor electro-hydraulic servo system under unknown strong non-linear and uncertain strong disturbance factors,such as dynam... In order to meet the precision requirements and tracking performance of the continuous rotary motor electro-hydraulic servo system under unknown strong non-linear and uncertain strong disturbance factors,such as dynamic uncertainty and parameter perturbation,an improved active disturbance rejection control(ADRC)strategy was proposed.The state space model of the fifth order closed-loop system was established based on the principle of valve-controlled hydraulic motor.Then the three parts of ADRC were improved by parameter perturbation and external disturbance;the fast tracking differentiator was introduced into linear and non-linear combinations;the nonlinear state error feedback was proposed using synovial control;the extended state observer was determined by nonlinear compensation.In addition,the grey wolf algorithm was used to set the parameters of the three parts.The simulation and experimental results show that the improved ADRC can realize the system frequency 12 Hz when the tracking accuracy and response speed meet the requirements of double ten indexes,which lay foundation for the motor application. 展开更多
关键词 continuous rotary electro-hydraulic servo motor active disturbance rejection control(ADRC) fast tracking differentiator(TD) non-linear state error feedback(NLSEF) extended state observer(ESO) grey wolf algorithm
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Predictive Control for Visual Servo Stabilization of Nonholonomic Mobile Robots 被引量:5
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作者 CAO Zheng-Cai YIN Long-Jie +1 位作者 FU Yi-Li LIU Tian-Long 《自动化学报》 EI CSCD 北大核心 2013年第8期1238-1245,共8页
活动机器人获得了的 nonholonomic 的视觉伺服稳定广泛的注意。当前,这个问题的解决方案不管多么不认为可见性限制和致动器是限制,因此设计控制器是困难的在实际申请认识到令人满意的性能。在这份报纸,为一个活动机器人的视觉伺服稳... 活动机器人获得了的 nonholonomic 的视觉伺服稳定广泛的注意。当前,这个问题的解决方案不管多么不认为可见性限制和致动器是限制,因此设计控制器是困难的在实际申请认识到令人满意的性能。在这份报纸,为一个活动机器人的视觉伺服稳定的一个预兆的控制器被介绍。第一,利用产生速度的命令的一个运动学的预兆的稳定控制器被介绍。然后,来临以便 asymptotically 做活动机器人的实际速度到需要的,一个动态预兆的控制器被设计。建议预兆的控制器能容易处理限制。最后,几模拟被执行,并且结果说明建议控制计划是有效的解决视觉伺服稳定问题。 展开更多
关键词 非完整移动机器人 稳定化控制器 预测控制器 视觉伺服 生成速度 运动预测 稳定问题 控制方案
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Satisfactory PI-P Controller Design for High-order Servo System
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作者 马建伟 郭治 吴钦 《Defence Technology(防务技术)》 SCIE EI CAS 2005年第2期196-200,共5页
The paper presents an output feedback controller design method for high-order servo system with the constraints of multiple indices by using satisfactory control theory. The control strategy is to convert transfer-fun... The paper presents an output feedback controller design method for high-order servo system with the constraints of multiple indices by using satisfactory control theory. The control strategy is to convert transfer-function form of two-loop servo system into state-space form and assign the system poles in the specified region and H_∞ attenuation degree in the given range with the Riccati matrix inequality so that the closed-loop system has good dynamics and robust quality. A numeric example is given to show the effectiveness of the proposed approach. 展开更多
关键词 HIGH-ORDER servo system satisfactory control PI-P controlLER RICCATI matrix inequality
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Zero phase error control based on neural compensation for flight simulator servo system
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作者 Liu Jinkun He Peng Er Lianjie 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2006年第4期793-797,共5页
Using the future desired input value, zero phase error controller enables the overall system's frequency response exhibit zero phase shift for all frequencies and a small gain error at low frequency range, and based ... Using the future desired input value, zero phase error controller enables the overall system's frequency response exhibit zero phase shift for all frequencies and a small gain error at low frequency range, and based on this, a new algorithm is presented to design the feedforward controller. However, zero phase error controller is only suitable for certain linear system. To reduce the tracking error and improve robustness, the design of the proposed feedforward controller uses a neural compensation based on diagonal recurrent neural network. Simulation and real-time control results for flight simulator servo system show the effectiveness of the proposed approach. 展开更多
关键词 zero phase error servo system neural network robust control flight simulator.
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Design of PID Controllers of Anti-aircraft Artillery Servo System with Multiple Performance Specifications
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作者 李银伢 盛安冬 王远钢 《Defence Technology(防务技术)》 SCIE EI CAS 2007年第3期185-190,共6页
A novel design method for determining the proportional-integral-derivative(PID) controller gains of an anti-aircraft artillery servo system with multiple performance specifications based on a particle swarm optimizati... A novel design method for determining the proportional-integral-derivative(PID) controller gains of an anti-aircraft artillery servo system with multiple performance specifications based on a particle swarm optimization (PSO) algorithm is proposed. First, a performance criterion evolution function combined with the system maximum displacement settling time, rise time, overshoot, steady state error, constant velocity tracking error and sine wave tracking error is defined. Second, the optimization problem of PID controller parameters and the searching procedure of PSO algorithm are constructed. Finally, the optimal or near optimal PID controller parameters are fast and easily obtained by solving the above optimization problem on the given controller parameter space following the PSO searching procedure. The simulation results show the effectiveness of the proposed controllers. 展开更多
关键词 自动控制技术 伺服系统 PID控制 粒子群最优化
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Application of simple adaptive control to water hydraulic servo cylinder system
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作者 Tsuyoshi YAMADA Kazuhisa ITO +1 位作者 Shigeru IKEO Masaharu NISHIMURA 《材料与冶金学报》 CAS 2010年第4期300-303,共4页
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农用机器人底盘控制系统的设计 被引量:1
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作者 张艳兵 徐鹏跃 +1 位作者 李卓 张洪强 《农机化研究》 北大核心 2025年第6期208-213,共6页
农用机器人可以执行农业种植、收割、施肥、喷洒农药、除草和土壤分析等生产活动,能够显著提高农业生产的效率。农用机器人的底盘可以保证在不平坦的地形和复杂的障碍物中自由移动,其稳定性、灵活性和可靠性直接影响机器人的导航能力和... 农用机器人可以执行农业种植、收割、施肥、喷洒农药、除草和土壤分析等生产活动,能够显著提高农业生产的效率。农用机器人的底盘可以保证在不平坦的地形和复杂的障碍物中自由移动,其稳定性、灵活性和可靠性直接影响机器人的导航能力和任务执行效率。为了进一步促进农用机器人的智能化和高效化,基于CANopen通讯协议与伺服电机驱动通信,设计了一套完整、高效的运动控制算法,保证农业机器人底盘可以在田间灵活、高效地移动,实现了多种运动方式,并保证底盘能在复杂的施工环境中灵活移动。田间测试表明:在不同的农田环境中,底盘能够灵活地适应地形和避开障碍物,实现了多种运动方式的转换,并高效地完成农业生产任务。 展开更多
关键词 农用机器人 底盘控制系统 CANopen通讯协议 伺服电机驱动通信 运动控制算法
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火箭电液伺服机构在过载环境下的伺服阀零偏特性研究
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作者 孙毅 王增 +2 位作者 王建军 曲颖 张磊 《机床与液压》 北大核心 2025年第14期144-148,共5页
现役运载火箭多采用伺服阀控电液伺服机构完成火箭发动机的推力矢量控制,阀控伺服机构能够在毫秒级的时间内响应控制指令,确保火箭飞行过程中的姿态稳定和轨道调整的准确性。然而,某些高加速与机动能力强的过载环境会导致伺服阀出现工... 现役运载火箭多采用伺服阀控电液伺服机构完成火箭发动机的推力矢量控制,阀控伺服机构能够在毫秒级的时间内响应控制指令,确保火箭飞行过程中的姿态稳定和轨道调整的准确性。然而,某些高加速与机动能力强的过载环境会导致伺服阀出现工作零位漂移或零偏电流增大的故障,影响火箭飞行控制的精度和稳定性。基于此,对某火箭电液伺服机构配套伺服阀在过载环境下进行零偏特性分析。对伺服阀前置级和功率级的受力开展理论分析,得到过载大小和方向对伺服阀零偏电流的影响规律;然后设计伺服阀的过载试验方案,采集伺服阀在不同过载条件下的零偏电流并进行对比,通过试验验证了理论分析的正确性。结果表明:仅当过载方向与伺服阀阀芯轴向一致时,伺服阀零偏电流受到的干扰最大,此时来自伺服阀挡板的转动力矩在过载力的作用下增加,并且其增加量与过载加速度成正比,阀芯所受过载力对伺服阀零偏电流的影响很小;当过载方向位于伺服阀阀芯轴向的垂直方向(即纵向或法向)时,能够有效避免过载环境对伺服阀零偏电流的影响,可以合理设置伺服机构的安装方向,避免过载方向与伺服阀阀芯轴向一致,以保障火箭伺服的控制精度。 展开更多
关键词 过载方向 伺服阀 零偏电流 控制精度
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智能伺服压机控制系统的设计与试验
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作者 刘帅 高自成 +1 位作者 张涛哲 彭禹 《机床与液压》 北大核心 2025年第14期112-116,共5页
针对传统压机结构复杂、精度低和效率低等问题,采用SolidWorks建模软件设计一台结构简单、操作便捷、自动化程度高、安全性能好和生产效率高的智能伺服压机;开发一种基于PC运动控制技术和现场实时以太网总线技术的控制系统,通过控制界... 针对传统压机结构复杂、精度低和效率低等问题,采用SolidWorks建模软件设计一台结构简单、操作便捷、自动化程度高、安全性能好和生产效率高的智能伺服压机;开发一种基于PC运动控制技术和现场实时以太网总线技术的控制系统,通过控制界面对整个运行过程进行实时监控。该系统具有压机常用的各种工艺流程程序块,可以灵活选用,完成各种复杂的工艺流程。对该系统的工作原理、硬件组成和软件设计进行了分析及试验。结果表明:智能伺服压机系统运行稳定、精度高且操作简单,软件误差平均值为-17.9 N,实际测量误差平均值为20.6 N,压力精度均在±0.3%FS(即±90 N)之内,符合压力精度要求;最大正向定位误差为5μm,平均误差为2.1μm,重复性为1.7×10^(-5);最大反向定位误差为6μm,平均误差为2.7μm,重复性为1.26×10^(-5),最大定位误差和重复性均符合压机重复定位精度的要求。 展开更多
关键词 智能伺服压机 控制系统 精度
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压力机多轴同步驱动的虚拟轴改进型偏差耦合控制方法
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作者 王勇 邢亮 +3 位作者 吴焱明 胡延平 胡火根 方唐利 《合肥工业大学学报(自然科学版)》 北大核心 2025年第4期462-468,共7页
为实现多轴伺服驱动压力机的同步控制,文章基于传统偏差耦合控制提出一种虚拟轴改进型偏差耦合同步控制方法,并搭建同步控制实验平台进行现场验证。基于压力机结构和控制模型实现模糊比例积分微分(proportional integral derivative,PID... 为实现多轴伺服驱动压力机的同步控制,文章基于传统偏差耦合控制提出一种虚拟轴改进型偏差耦合同步控制方法,并搭建同步控制实验平台进行现场验证。基于压力机结构和控制模型实现模糊比例积分微分(proportional integral derivative,PID)位置跟踪控制;在传统偏差耦合控制结构中添加评价误差模块,搭建一种改进型偏差耦合同步控制方法,提高同步系统的抗扰动能力和同步精度;将虚拟轴引入改进型偏差耦合控制结构中,从而解除多轴间的直接耦合关系,简化改进型同步位移补偿结构。实验结果表明,该方法有效提高了压力机同步抗扰动能力和稳态同步精度。 展开更多
关键词 伺服压力机 多轴同步控制 偏差耦合 同步误差 虚拟轴
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基于模型预测控制的高精度混合视觉伺服机械臂控制方法
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作者 刘新 王辉 《中南大学学报(自然科学版)》 北大核心 2025年第6期2266-2277,共12页
机械臂在各领域应用广泛,其控制系统对精度与稳定性方面的要求日益增加,然而,传统控制方法在复杂动态环境中的适应性不强。针对这一问题,本文提出一种基于模型预测控制的机械臂混合视觉伺服控制方法。首先,通过对混合视觉伺服系统进行建... 机械臂在各领域应用广泛,其控制系统对精度与稳定性方面的要求日益增加,然而,传统控制方法在复杂动态环境中的适应性不强。针对这一问题,本文提出一种基于模型预测控制的机械臂混合视觉伺服控制方法。首先,通过对混合视觉伺服系统进行建模,分析系统误差函数中旋转部分和平移部分的动态变化特性,推导误差与相机速度之间的关联关系模型。其次,提出一种基于模型预测控制的机械臂控制方法,通过结合系统误差和相机速度信息构建状态空间模型,实时预测系统的未来动态并优化控制输入,实现误差补偿和快速收敛。最后,在ViSP仿真平台和实物运动控制平台上分别进行验证。研究结果表明:与传统控制方法相比,所提出的方法有效降低了稳态误差,提高了控制精度,特别是在动态复杂环境中具有更强的抗干扰能力和适应性。 展开更多
关键词 机械臂 混合视觉伺服 模型预测控制 状态空间模型 最优控制
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