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Disturbances rejection optimization based on improved two-degree-of-freedom LADRC for permanent magnet synchronous motor systems
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作者 Chenggang Wang Jianhu Yan +2 位作者 Wenlong Li Liang Shan Le Sun 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期518-531,共14页
Permanent magnet synchronous motor(PMSM)speed control systems with conventional linear active disturbance rejection control(CLADRC)strategy encounter issues regarding the coupling between dynamic response and disturba... Permanent magnet synchronous motor(PMSM)speed control systems with conventional linear active disturbance rejection control(CLADRC)strategy encounter issues regarding the coupling between dynamic response and disturbance suppression and have poor performance in suppressing complex nonlinear disturbances.In order to address these issues,this paper proposes an improved two-degree-of-freedom LADRC(TDOF-LADRC)strategy,which can enhance the disturbance rejection performance of the system while decoupling entirely the system's dynamic and anti-disturbance performance to boost the system robustness and simplify controller parameter tuning.PMSM models that consider total disturbances are developed to design the TDOF-LADRC speed controller accurately.Moreover,to evaluate the control performance of the TDOF-LADRC strategy,its stability is proven,and the influence of each controller parameter on the system control performance is analyzed.Based on it,a comparison is made between the disturbance observation ability and anti-disturbance performance of TDOF-LADRC and CLADRC to prove the superiority of TDOF-LADRC in rejecting disturbances.Finally,experiments are performed on a 750 W PMSM experimental platform,and the results demonstrate that the proposed TDOF-LADRC exhibits the properties of two degrees of freedom and improves the disturbance rejection performance of the PMSM system. 展开更多
关键词 Permanent magnet synchronous motor(PMSM) active disturbance rejection control(adrc) Disturbance observer Two-degree-of-freedom control ANTI-DISTURBANCE
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Active disturbance rejection control on first-order plant 被引量:21
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作者 Ruiguang Yang Mingwei Sun Zengqiang Chen 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2011年第1期95-102,共8页
Conventional PI control encounters some problems when dealing with large lag process in the presence of parameter uncertainties.For the typical first-order process,an observerbased linear active disturbance rejection ... Conventional PI control encounters some problems when dealing with large lag process in the presence of parameter uncertainties.For the typical first-order process,an observerbased linear active disturbance rejection control(LADRC) scheme is presented to cope with the difficulties,and a reduced-order observer scheme is proposed further.Some quantitative dynamic results with regard to non-overshoot characteristics are obtained.Finally,the performance boundaries of LADRC and PI control are explicitly compared with each other,which shows that the former is more superior in most cases. 展开更多
关键词 active disturbance rejection control(adrc first-order process dynamic performance non-overshoot.
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Research on improved active disturbance rejection control of continuous rotary motor electro-hydraulic servo system 被引量:5
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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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Active Disturbance Rejection Control for a Multiple-Flexible-Link Manipulator 被引量:1
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作者 Yanfang Liu Hong Liu Yao Meng 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2018年第1期18-28,共11页
The control problem of multiple-flexible-link manipulators( MFLMs) is studied in this paper.The dynamic model of MFLM is derived and separated into two-time scale by utilizing the singular perturbation technique. The ... The control problem of multiple-flexible-link manipulators( MFLMs) is studied in this paper.The dynamic model of MFLM is derived and separated into two-time scale by utilizing the singular perturbation technique. The active disturbance rejection control( ADRC) is adopted to the slow subsystem to track a desired trajectory. The proposed ADRC structure preshapes the desired trajectory by utilizing the tracking differentiator,estimates the disturbance and internal states with an extended state observer,and guarantees a robust performance by combining a feedback controller with a feedforward term. Two types of feedback controllers are designed,proportional derivative( PD) controller and nonlinear PD( NPD) controller. For the fast subsystem,a fast stabilizing control is designed according to the standard linear quadratic regulator approach. Simulations are performed to evaluate the proposed control scheme.Results show that,compared with the traditional PD controller,the ADRC structure based control scheme has smaller overshot and shorter settling time,suppresses vibration quickly,and is robust to the maneuver speed. In general,the control scheme utilizing ADRC structure and NPD feedback controller shows better performance. 展开更多
关键词 multiple-flexible-link manipulator ( MFLM) active disturbance rejection control (adrc) nonlinear proportional plus derivative ( NPD) tracking DIFFERENTIATOR ( TD) extended state observer ( ESO)
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Active Disturbance Rejection Control for Uncertain Nonlinear Systems With Sporadic Measurements 被引量:2
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作者 Kanghui He Chaoyang Dong Qing Wang 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2022年第5期893-906,共14页
This paper deals with the problem of active disturbance rejection control(ADRC)design for a class of uncertain nonlinear systems with sporadic measurements.A novel extended state observer(ESO)is designed in a cascade ... This paper deals with the problem of active disturbance rejection control(ADRC)design for a class of uncertain nonlinear systems with sporadic measurements.A novel extended state observer(ESO)is designed in a cascade form consisting of a continuous time estimator,a continuous observation error predictor,and a reset compensator.The proposed ESO estimates not only the system state but also the total uncertainty,which may include the effects of the external perturbation,the parametric uncertainty,and the unknown nonlinear dynamics.Such a reset compensator,whose state is reset to zero whenever a new measurement arrives,is used to calibrate the predictor.Due to the cascade structure,the resulting error dynamics system is presented in a non-hybrid form,and accordingly,analyzed in a general sampled-data system framework.Based on the output of the ESO,a continuous ADRC law is then developed.The convergence of the resulting closed-loop system is proved under given conditions.Two numerical simulations demonstrate the effectiveness of the proposed control method. 展开更多
关键词 active disturbance rejection control(adrc) extended state observer(ESO) sampled measurements uncertain nonlinear systems
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Active disturbance rejection control for precise position tracking of piezoelectric actuators 被引量:2
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作者 郑兆瑛 Lu Qishuai Zhang Sijiong 《High Technology Letters》 EI CAS 2015年第3期333-338,共6页
Positioning with high precision piezoelectric actuators is widely used.To overcome positioning inaccuracy caused by hysteresis and creep of actuators,a precise tracking method for piezoelectric actuators using active ... Positioning with high precision piezoelectric actuators is widely used.To overcome positioning inaccuracy caused by hysteresis and creep of actuators,a precise tracking method for piezoelectric actuators using active disturbance rejection control(ADRC) has been proposed in this paper.This method,in real-time,actively estimates and compensates parameter uncertainties,nonlinear factors such as hysteresis,and external disturbances in the tracking system.Precise tracking of the piezoelectric actuator can be achieved without any form of feedforward compensations.The experimental results demonstrate that the active disturbance rejection controller can reduce tracking errors by over90%comparing with those using the PID controller.Those features of the proposed control method are very suitable for applications in adaptive optics. 展开更多
关键词 active disturbance rejection control (adrc piezoelectric actuators positiontracking
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Fractional Order Linear Active Disturbance Rejection Control for Linear Flexible Joint System 被引量:1
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作者 Ibrahim M.Mehedi Rachid Mansouri +6 位作者 Ubaid M.Al-Saggaf Ahmed I.M.Iskanderani Maamar Bettayeb Abdulah Jeza Aljohani Thangam Palaniswamy Shaikh Abdul Latif Abdul Latif 《Computers, Materials & Continua》 SCIE EI 2022年第3期5133-5142,共10页
A linear flexible joint system using fractional order linear active disturbance rejection control is studied in this paper.With this control scheme,the performance against disturbances,uncertainties,and attenuation is... A linear flexible joint system using fractional order linear active disturbance rejection control is studied in this paper.With this control scheme,the performance against disturbances,uncertainties,and attenuation is enhanced.Linear active disturbance rejection control(LADRC)is mainly based on an extended state observer(ESO)technology.A fractional integral(FOI)action is combined with the LADRC technique which proposes a hybrid control scheme like FO-LADRC.Incorporating this FOI action improves the robustness of the standard LADRC.The set-point tracking of the proposed FO-LADRC scheme is designed by Bode’s ideal transfer function(BITF)based robust closed-loop concept,an appropriate pole placement method.The effectiveness of the proposed FO-LADRC scheme is illustrated through experimental results on the linear flexible joint system(LFJS).The results show the enhancement of the robustness with disturbance rejection.Furthermore,a comparative analysis is presented with the results obtained using the integer-order LADRC and FO-LADRC scheme. 展开更多
关键词 active disturbance rejection fractional calculus adrc pole placement linear flexible joint system robust control
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Depth control for a deep-sea self-holding intelligent buoy system based on active disturbance rejection control method 被引量:1
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作者 QIU Zu-rong WANG Qiang +2 位作者 YANG Shao-bo LI Hong-yu LI Xing-fei 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2020年第4期307-316,共10页
The net buoyancy of the deep-sea self-holding intelligent buoy(DSIB)will change with depth due to pressure hull deformation in the deep submergence process.The net buoyancy changes will affect the hovering performance... The net buoyancy of the deep-sea self-holding intelligent buoy(DSIB)will change with depth due to pressure hull deformation in the deep submergence process.The net buoyancy changes will affect the hovering performance of the DSIB.To make the DSIB have better resistance to the external disturbances caused by the net buoyancy and water resistance,a depth controller was designed to improve the depth positioning based on the active disturbance rejection control(ADRC).Firstly,a dynamic model was established based on the motion analysis of the DSIB.In addition,the extended state observer(ESO)and nonlinear state error feedback controller were designed based on the Lyapunov stability principle.Finally,semi-physical simulations for the depth control process were made by using the ADRC depth controller and traditional PID depth controller,respectively.The results of the semi-physical simulations indicate that the depth controller based on the ADRC can achieve the predefined depth control under the external disturbances.Compared with the traditional PID depth controller,the overshoot of the ADRC depth controller is 1.74%,and the depth error is within 0.5%.It not only has a better control capability to restrain the overshoot and shock caused by the external disturbances,but also can improve intelligence of the DSIB under the depth tracking task. 展开更多
关键词 deep-sea self-holding intelligent buoy(DSIB) active disturbance rejection control(adrc) depth control buoyancy change pressure hull deformation
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Multi-Objective Optimization for Active Disturbance Rejection Control for the ALSTOM Benchmark Problem 被引量:1
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作者 Chun’e Huang Zhongli Liu 《International Journal of Clean Coal and Energy》 2015年第3期61-68,共8页
Based on a thing that it is difficult to choose the parameters of active disturbance rejection control for the non-linear ALSTOM gasifier, multi-objective optimization algorithm is applied in the choose of parameters.... Based on a thing that it is difficult to choose the parameters of active disturbance rejection control for the non-linear ALSTOM gasifier, multi-objective optimization algorithm is applied in the choose of parameters. Simulation results show that performance tests in load change and coal quality change achieve better dynamic responses and larger scales of rejecting coal quality disturbances. The study provides an alternative to choose parameters for other control schemes of the ALSTOM gasifier. 展开更多
关键词 GASIFICATION Multi-Objective Optimization Non-Dominated SORTING Algorithm II (NSGA-II) active Disturbance rejection control (adrc)
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Compensated acceleration feedback based active disturbance rejection control for launch vehicles 被引量:1
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作者 Xiaoyan ZHANG Wenchao XUE +2 位作者 Zibo LIU Ran ZHANG Huifeng LI 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2024年第4期464-478,共15页
In this paper, the attitude tracking and load relief control problems against wind disturbances and uncertain aerodynamics as well as the engine thrust of launch vehicles are studied.Firstly, a framework of Compensate... In this paper, the attitude tracking and load relief control problems against wind disturbances and uncertain aerodynamics as well as the engine thrust of launch vehicles are studied.Firstly, a framework of Compensated Acceleration Feedback based Active Disturbance Rejection Control(CAF-ADRC) is established to achieve both desired attitude tracking and load relief performances. In particular, the total disturbance that includes the effects caused by both aerocoefficient perturbations and disturbances is estimated by constructing an Extended State Observer(ESO) to achieve attitude tracking. Furthermore, combined with the normal acceleration due to the engine thrust, the accelerometer measurement is also compensated to enhance the load relief effect.Secondly, the quantitative analysis of ESO and the entire closed-loop system are studied. It can be concluded that the desired attitude tracking and load relief performances can be achieved simultaneously under the proposed approach. Besides, tuning laws of the proposed approach are systematically given, which are divided into ESO, Proportional Derivative(PD) and Compensated Acceleration Feedback(CAF) modules. Moreover, the performances under CAF-ADRC approach can be better than those under CAF based PD(CAF-PD) approach by tuning load relief gain.Finally, the approach presented is applied to a typical control problem of launch vehicles with wind disturbances and parameter uncertainties. 展开更多
关键词 Launch vehicles Uncertainty analysis active disturbance rejection control(adrc) Load relief control Extended state observer(ESO)
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面向天线跟踪系统的ADRC控制器设计及参数优化
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作者 张越 范书瑞 郎利影 《微特电机》 2024年第3期41-47,共7页
针对传统自抗扰控制器存在参数整定困难及控制器效果有待改善的问题,提出了一种基于改进型Fal函数的永磁同步电机位置自抗扰控制器控制策略,旨在优化伺服系统的控制效果。设计了Le_fal函数以解决Fal函数在定义域区间的不连续性问题和拐... 针对传统自抗扰控制器存在参数整定困难及控制器效果有待改善的问题,提出了一种基于改进型Fal函数的永磁同步电机位置自抗扰控制器控制策略,旨在优化伺服系统的控制效果。设计了Le_fal函数以解决Fal函数在定义域区间的不连续性问题和拐点处输出增益的抖动问题,减少了控制器待整定参数。针对自抗扰控制器参数难以整定的问题,采用粒子群算法对控制器参数进行优化。仿真实验结果表明,基于粒子群的改进型自抗扰控制器参数优化算法将超调量从传统自抗扰控制器的3.1016%降低至0.3375%,将调节时间从3.08 s降低到0.47 s,将稳态误差从0.0633降低至0.0162。结果表明,改进后的自抗扰控制器具有更好的快速性和鲁棒性。 展开更多
关键词 永磁同步电机 粒子群算法 自抗扰控制器 稳定性
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基于LADRC的柔性多状态开关平滑切换策略
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作者 刘一琦 孙明哲 +2 位作者 胡存刚 李振杰 班明飞 《电网技术》 EI CSCD 北大核心 2024年第4期1663-1671,I0080,共10页
为实现多端口柔性多状态开关(flexible multi-state switches,FMSS)在所连馈线发生故障时的平滑切换,该文提出一种基于线性自抗扰控制(linear active disturbance rejection control,LADRC)的平滑切换策略,使用LADRC代替比例积分(propor... 为实现多端口柔性多状态开关(flexible multi-state switches,FMSS)在所连馈线发生故障时的平滑切换,该文提出一种基于线性自抗扰控制(linear active disturbance rejection control,LADRC)的平滑切换策略,使用LADRC代替比例积分(proportional integral,PI)控制器的直流电压外环并设计解耦状态观测器以便控制器参数调节,引入内环电流指令值反馈以减小其在控制模式切换时的变化幅度,实现FMSS控制模式的平滑切换。通过MATLAB/Simulink仿真,验证了馈线故障出现在PQ或UdcQ控制端口的连接处时,采用基于LADRC的平滑切换策略均可显著减小FMSS的直流电压偏移率,使端口有功功率过渡平滑,迅速恢复稳定,更好地实现了多端口FMSS控制模式的平滑切换。 展开更多
关键词 柔性配电网 线性自抗扰控制 柔性多状态开关 馈线故障 平滑切换
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基于PIO-ADRC的自主水下航行器运动控制
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作者 彭翼遥 邓忠超 +1 位作者 邢明智 赵晓阳 《中国海洋平台》 2024年第4期47-53,共7页
为进一步提高自主水下航行器(Autonomous Underwater Vehicle,AUV)的控制精度,对六自由度全驱动AUV进行建模,并搭建相应的自抗扰控制器(Active Disturbance Rejection Controller,ADRC)。考虑到传统ADRC待调整参数过多,且必须随着系统... 为进一步提高自主水下航行器(Autonomous Underwater Vehicle,AUV)的控制精度,对六自由度全驱动AUV进行建模,并搭建相应的自抗扰控制器(Active Disturbance Rejection Controller,ADRC)。考虑到传统ADRC待调整参数过多,且必须随着系统进行相应的参数调整,针对此,提出基于鸽群算法优化(Pigeon-Inspired Optimization,PIO)的ADRC(PIO-ADRC),并在相同仿真条件下将其与经过PIO的比例-积分-微分(Pigeon-Inspired Optimized Proportional Integral Derivative,PIO-PID)控制器和传统ADRC的控制效果进行对比。结果表明,使用PIO的ADRC超调量小、稳态误差小、控制效率更高。 展开更多
关键词 水下机器人 运动控制 PIO-adrc 艏向跟踪
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基于MPC及改进ADRC的车辆自适应巡航控制研究
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作者 和丽阳 冯剑波 +1 位作者 王衍学 陈洋 《现代制造工程》 CSCD 北大核心 2024年第8期95-101,158,共8页
针对车辆纵向运动时内部和外部扰动导致的预期功能稳定性问题,基于模型预测控制(Model Predictive Control, MPC)及改进自抗扰控制(Active Disturbance Rejection Control, ADRC),设计了一种车辆自适应巡航控制(Adaptive Cruise Control... 针对车辆纵向运动时内部和外部扰动导致的预期功能稳定性问题,基于模型预测控制(Model Predictive Control, MPC)及改进自抗扰控制(Active Disturbance Rejection Control, ADRC),设计了一种车辆自适应巡航控制(Adaptive Cruise Control, ACC)策略。首先,建立车辆运动学模型以及考虑前车速度的安全车间距离模型;然后,设计模型预测控制器和改进自抗扰控制器,利用MPC算法实现对前车的跟踪,并将状态误差作为改进自抗扰控制器的输入,实现车辆在扰动环境下的稳定巡航控制;最后,进行仿真对比实验。结果表明,基于MPC及改进ADRC的车辆自适应巡航控制策略能够有效抑制由于距离误差引起的系统内部扰动和外部扰动,提高车辆在自适应巡航过程中的跟踪性能以及系统的稳定性。 展开更多
关键词 模型预测控制 自适应巡航 自抗扰控制 反馈补偿
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Control of Linear Servo Carts with Integral-Based Disturbance Rejection
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作者 Ibrahim M.Mehedi Abdulah Jeza Aljohani +6 位作者 Ubaid M.Al-Saggaf Ahmed I.Iskanderani Thangam Palaniswamy Mohamed Mahmoud Mohammed J.Abdulaal Muhammad Bilal Waleed Alasmary 《Computers, Materials & Continua》 SCIE EI 2022年第10期453-463,共11页
This paper describes a system designed for linear servo cart systems that employs an integral-based Linear Active Disturbance Rejection Control(ILADRC)scheme to detect and respond to disturbances.The upgrade in this c... This paper describes a system designed for linear servo cart systems that employs an integral-based Linear Active Disturbance Rejection Control(ILADRC)scheme to detect and respond to disturbances.The upgrade in this control technique provides extensive immunity to uncertainties,attenuation,internal disturbances,and external sources of noise.The fundamental technology base of LADRC is Extended State Observer(ESO).LADRC,when combined with Integral action,becomes a hybrid control technique,namely ILADRC.Setpoint tracking is based on Bode’s Ideal Transfer Function(BITF)in this proposed ILADRC technique.This proves to be a very robust and appropriate pole placement scheme.The proposed LSC system has experimented with the hybrid ILADRC technique plotted the results.From the results,it is evident that the proposed ILADRC scheme enhances the robustness of the LSC system with remarkable disturbance rejection.Furthermore,the results of a linear quadratic regulator(LQR)and ILADRC schemes are comparatively analyzed.This analysis deduced the improved performance of ILADRC over the LQR control scheme. 展开更多
关键词 Pole placement adrc active disturbance rejection robust control linear servo cart system
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基于RBF-LADRC的虚拟同步发电机控制策略
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作者 杨旭红 杨一矜 +3 位作者 潘宇 顾伟伟 杨慧 贾巍 《太阳能学报》 EI CAS CSCD 北大核心 2024年第3期319-325,共7页
随着大规模分布式发电技术的出现,为支持微电网的稳定运行,提出虚拟同步发电机(VSG)技术。由于VSG常用的电压电流双闭环控制存在动态响应时间久、抗扰动能力弱的缺点,考虑LADRC对扰动具有更优异的动态响应速度,该文提出一种用于VSG电压... 随着大规模分布式发电技术的出现,为支持微电网的稳定运行,提出虚拟同步发电机(VSG)技术。由于VSG常用的电压电流双闭环控制存在动态响应时间久、抗扰动能力弱的缺点,考虑LADRC对扰动具有更优异的动态响应速度,该文提出一种用于VSG电压外环控制的线性自抗扰控制方案,并采用RBF对LADRC中的关键参数进行在线整定,以实现控制器的实时优化。在Matlab/Simulink平台下搭建仿真模型,并对所提出的改进策略与传统控制策略进行仿真对照,结果显示该策略可有效提高并网环境下虚拟同步发电机功率和频率稳定性。 展开更多
关键词 分布式发电 RBF神经网络 线性自抗扰控制 虚拟同步发电机
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ADRC FRACTIONAL ORDER PID CONTROLLER DESIGN OF HYPERSONIC FLIGHT VEHICLE 被引量:8
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作者 秦昌茂 齐乃明 +1 位作者 吕瑞 朱凯 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2011年第3期240-245,共6页
Active disturbance rejection controller(ADRC)uses tracking-differentiator(TD)to solve the contradiction between the overshoot and the rapid nature.Fractional order proportion integral derivative(PID)controller i... Active disturbance rejection controller(ADRC)uses tracking-differentiator(TD)to solve the contradiction between the overshoot and the rapid nature.Fractional order proportion integral derivative(PID)controller improves the control quality and expands the stable region of the system parameters.ADRC fractional order(ADRFO)PID controller is designed by combining ADRC with the fractional order PID and applied to reentry attitude control of hypersonic vehicle.Simulation results show that ADRFO PID controller has better control effect and greater stable region for the strong nonlinear model of hypersonic flight vehicle under the influence of external disturbance,and has stronger robustness against the perturbation in system parameters. 展开更多
关键词 hypersonic flight vehicle active disturbance rejection controller(adrc fractional order PID D-decomposition method
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Low-voltage ride-through capability improvement of Type-3 wind turbine through active disturbance rejection feedback control-based dynamic voltage restorer
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作者 El Mahfoud Boulaoutaq Asma Aziz +3 位作者 Abdelmounime El Magri Ahmed Abbou Mohamed Ajaamoum Azeddine Rachdy 《Clean Energy》 EI CSCD 2023年第5期1091-1109,共19页
Disconnections due to voltage drops in the grid cannot be permitted if wind turbines(WTs)contribute significantly to electricity pro-duction,as this increases the risk of production loss and destabilizes the grid.To m... Disconnections due to voltage drops in the grid cannot be permitted if wind turbines(WTs)contribute significantly to electricity pro-duction,as this increases the risk of production loss and destabilizes the grid.To mitigate the negative effects of these occurrences,WTs must be able to ride through the low-voltage conditions and inject reactive current to provide dynamic voltage support.This paper investigates the low-voltage ride-through(LVRT)capability enhancement of a Type-3 WT utilizing a dynamic voltage restorer(DVR).During the grid voltage drop,the DVR quickly injects a compensating voltage to keep the stator voltage constant.This paper proposes an active disturbance rejection control(ADRC)scheme to control the rotor-side,grid-side and DVR-side converters in a wind–DVR integrated network.The performance of the Type-3 WT with DVR topology is evaluated under various test conditions using MATLAB®/Simulink®.These simulation results are also compared with the experimental results for the LVRT capability performed on a WT emulator equipped with a crowbar and direct current(DC)chopper.The simulation results demonstrate a favourable transient and steady-state response of the Type-3 wind turbine quantities defined by the LVRT codes,as well as improved reactive power support under balanced fault conditions.Under the most severe voltage drop of 95%,the stator currents,rotor currents and DC bus voltage are 1.25 pu,1.40 pu and 1.09 UDC,respectively,conforming to the values of the LVRT codes.DVR controlled by the ADRC technique significantly increases the LVRT capabilities of a Type-3 doubly-fed induction generator-based WT under symmetrical voltage dip events.Although setting up ADRC controllers might be challenging,the proposed method has been shown to be extremely effective in reducing all kinds of internal and external disturbances. 展开更多
关键词 active disturbance rejection controller(adrc) dynamic voltage restorer(DVR) low-voltage ride-through(LVRT) Type-3 wind turbines(WTs) doubly-fed induction generator(DFIG)
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ADRC-GPC算法在旋转倒立摆系统中的应用 被引量:1
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作者 李俊芳 毕旺琪 +2 位作者 李毅 高强 陈增强 《传感器与微系统》 CSCD 北大核心 2023年第9期165-168,共4页
自抗扰广义预测控制(ADRC-GPC)是一种由广义预测控制技术和自抗扰控制技术有机结合的新型控制算法。该算法首先利用扩张状态观测器(ESO)估计出系统的总扰动;其次,引入虚拟控制量以抵消该总扰动作用,使原被控对象系统转化为积分器串联型... 自抗扰广义预测控制(ADRC-GPC)是一种由广义预测控制技术和自抗扰控制技术有机结合的新型控制算法。该算法首先利用扩张状态观测器(ESO)估计出系统的总扰动;其次,引入虚拟控制量以抵消该总扰动作用,使原被控对象系统转化为积分器串联型系统;最后,利用GPC对新系统进行收敛控制。ADRC-GPC不仅可以有效避免传统GPC的在线计算量过大问题,还无须使用状态量的高阶信息,相比传统ADRC大大降低了调参难度。针对一级旋转倒立摆稳定控制问题中的强耦合、非线性等难点,设计了双通道ADRC-GPC融合控制器。仿真实验结果表明:ADRC-GPC控制器能够使一级旋转倒立摆系统达到控制目的,其对多变量非线性不稳定系统具有良好的控制性能。 展开更多
关键词 旋转倒立摆系统 扩张状态观测器 自抗扰控制 广义预测控制 自抗扰广义预测控制
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High AOA decoupling control for aircraft based on ADRC 被引量:8
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作者 LIU Junjie SUN Mingwei +1 位作者 CHEN Zengqiang SUN Qinglin 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2020年第2期393-402,共10页
In this paper, a practical decoupling control scheme for fighter aircraft is proposed to achieve high angle of attack(AOA)tracking and super maneuver action by utilizing the thrust vector technology. Firstly, a six de... In this paper, a practical decoupling control scheme for fighter aircraft is proposed to achieve high angle of attack(AOA)tracking and super maneuver action by utilizing the thrust vector technology. Firstly, a six degree-of-freedom(DOF) nonlinear model with 12 variables is given. Due to low sufficiency of the aerodynamic actuators at high AOA, a thrust vector model with rotatable engine nozzles is derived. Secondly, the active disturbance rejection control(ADRC) is used to realize a three-channel decoupling control such that a strong coupling between different channels can be treated as total disturbance, which is estimated by the designed extended state observer. The control surface allocation is implemented by the traditional daisy chain method. Finally,the effectiveness of the presented control strategy is demonstrated by some numerical simulation results. 展开更多
关键词 HIGH angle of attack(AOA) decoupling control linear extended state observer(LESO) active disturbance rejection control(adrc) THRUST vector technology control allocation
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