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Feedforward and feedback optimal control for linear time-varying systems with persistent disturbances 被引量:1
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作者 Tang Gongyou Zhao Yandong Zhang Baolin 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2006年第2期350-354,共5页
The optimal control problem for linear time-varying systems affected by external persistent disturbances with known dynamic characteristics but unknown initial conditions is consider and a design procedure of a feedfo... The optimal control problem for linear time-varying systems affected by external persistent disturbances with known dynamic characteristics but unknown initial conditions is consider and a design procedure of a feedforward and feedbaek optimal controller is presented. The condition of existence and uniqueness of the control law is given. The disturbanee observer is proposed to make the feedforward control law realizable physically. Simulation results demonstrate that the feedforward and feedbaek optimal control law is more effective and robust than the elassical state feedbaek control law with respect to external disturbanees. 展开更多
关键词 time-varying systems persistent disturbances optimal control feedforward control disturbance observer.
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Disturbance observer based time-varying sliding mode control for uncertain mechanical system 被引量:12
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作者 Binglong Cong Xiangdong Liu Zhen Chen 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2012年第1期108-118,共11页
It is now well known that the time-varying sliding mode control (TVSMC) is characterized by its global robustness against matched model uncertainties and disturbances. The accurate tracking problem of the mechanical... It is now well known that the time-varying sliding mode control (TVSMC) is characterized by its global robustness against matched model uncertainties and disturbances. The accurate tracking problem of the mechanical system in the presence of the parametric uncertainty and external disturbance is addressed in the TVSMC framework. Firstly, an exponential TVSMC algorithm is designed and the main features are analyzed. Especially, the control parameter is obtained by solving an optimal problem. Subsequently, the global chattering problem in TVSMC is considered. To reduce the static error resulting from the continuous TVSMC algorithm, a disturbance observer based time-varying sliding mode control (DOTVSMC) algorithm is presented. The detailed design principle and the stability of the closed-loop system under the composite controller are provided. Simulation results verify the effectiveness of the proposed algorithm. 展开更多
关键词 mechanical system time-varying sliding mode control (TVSMC) global sliding phase global chattering disturbance observer.
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A novel stabilization approach for small signal disturbance of power system with time-varying delay 被引量:4
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作者 杨波 孙元章 《Journal of Central South University》 SCIE EI CAS 2013年第12期3522-3527,共6页
Small signal instability may cause severe accidents for power system if it can not be dear correctly and timely. How to maintain power system stable under small signal disturbance is a big challenge for power system o... Small signal instability may cause severe accidents for power system if it can not be dear correctly and timely. How to maintain power system stable under small signal disturbance is a big challenge for power system operators and dispatchers. Time delay existing in signal transmission process makes the problem more complex. Conventional eigenvalue analysis method neglects time delay influence and can not precisely describe power system dynamic behaviors. In this work, a modified small signal stability model considering time varying delay influence was constructed and a new time delay controller was proposed to stabilize power system under disturbance. By Lyapunov-Krasovskii function, the control law in the form of nonlinear matrix inequality (NLMI) was derived. Considering synthesis method limitation for time delay controller at present, both parameter adjustment method by using linear matrix inequality (LMI) solver and iteration searching method by solving nonlinear minimization problem were suggested to design the controller. Simulation tests were carried out on synchronous-machine infinite-bus power system. Satisfactory test results verify the correctness of the proposed model and the feasibility of the stabilization approach. 展开更多
关键词 power system stability small signal disturbance time-varying delay power system stabilizer
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Design of Luenberger function observer with disturbance decoupling for matrix second-order linear systems-a parametric approach 被引量:1
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作者 Wu Yunli Duan Guangren 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2006年第1期156-162,共7页
A simple method for disturbance decoupling for matrix second-order linear systems is proposed directly in matrix second-order framework via Luenberger function observers based on complete parametric eigenstructure ass... A simple method for disturbance decoupling for matrix second-order linear systems is proposed directly in matrix second-order framework via Luenberger function observers based on complete parametric eigenstructure assignment. By introducing the H2 norm of the transfer function from disturbance to estimation error, sufficient and necessary conditions for disturbance decoupling in matrix second-order linear systems are established and are arranged into constraints on the design parameters via Luenberger function observers in terms of the closed-loop eigenvalues and the group of design parameters provided by the eigenstructure assignment approach. Therefore, the disturbance decoupling problem is converted into an eigenstructure assignment problem with extra parameter constraints. A simple example is investigated to show the effect and simplicity of the approach. 展开更多
关键词 matrix second-order linear systems Luenberger function observers eigenstructure assignment disturbance decoupling
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New trajectory linearization control for nonlinear systems undergoing harmonic disturbance 被引量:1
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作者 Zhu Liang Chen Li Jing Zhongliang Hu Shiqiang 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2009年第3期571-576,共6页
This paper presents a new trajectory linearization control scheme for a class of nonlinear systems subject to harmonic disturbance. It is supposed that the frequency of the disturbance is known, but the amplitude and ... This paper presents a new trajectory linearization control scheme for a class of nonlinear systems subject to harmonic disturbance. It is supposed that the frequency of the disturbance is known, but the amplitude and the phase are unknown. A disturbance observer dynamics is constructed to estimate the harmonic disturbance, and then the estimation is used to implement a compensation control law to cancel the disturbance. By Lyapunov's direct method, a rigorous poof shows that the composite error of the closed-loop system can approach zero exponentially. Finally, the proposed method is illustrated by the application to control of an inverted pendulum. Compared with two existing methods, the proposed method demonstrates better performance in tracking error and response time. 展开更多
关键词 nonlinear control system harmonic disturbance trajectory linearization control
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Stability analysis of linear/nonlinear switching active disturbance rejection control based MIMO continuous systems 被引量:2
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作者 WAN Hui QI Xiaohui LI Jie 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2021年第4期956-970,共15页
In this paper,a linear/nonlinear switching active disturbance rejection control(SADRC)based decoupling control approach is proposed to deal with some difficult control problems in a class of multi-input multi-output(M... In this paper,a linear/nonlinear switching active disturbance rejection control(SADRC)based decoupling control approach is proposed to deal with some difficult control problems in a class of multi-input multi-output(MIMO)systems such as multi-variables,disturbances,and coupling,etc.Firstly,the structure and parameter tuning method of SADRC is introduced into this paper.Followed on this,virtual control variables are adopted into the MIMO systems,making the systems decoupled.Then the SADRC controller is designed for every subsystem.After this,a stability analyzed method via the Lyapunov function is proposed for the whole system.Finally,some simulations are presented to demonstrate the anti-disturbance and robustness of SADRC,and results show SADRC has a potential applications in engineering practice. 展开更多
关键词 linear/nonlinear switching active disturbance rejection control(SADRC) multi-input multi-output(MIMO)continuous system decoupling control stability analysis
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Observer design for matrix second order linear systems with uncertain disturbance input-a parametric approach
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作者 Wu Yunli Li Zhibin Duan Cruangren 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2006年第4期811-816,823,共7页
A simple parametric approach to design a full-order observer for matrix second-order linear systems with uncertain disturbance input in the matrixsecond-order framework is proposed. The basic idea is to minimize the H... A simple parametric approach to design a full-order observer for matrix second-order linear systems with uncertain disturbance input in the matrixsecond-order framework is proposed. The basic idea is to minimize the H2 norm of the transfer function from disturbance to estimation error using the design degrees of freedom provided by a parametric approach in the observer design. Besides the design parameters, the eigenvalues of the closed-loop system are also optimized within desired regions on the left-half of the complex plane. Using the proposed approach, additional specifications can be easily achieved. A spring-mass system is using to show the effect of the proposed approaches. 展开更多
关键词 linear systems uncertain disturbance input observers parametric approach optimization.
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Adaptive current compensation with nonlinear disturbance observer for single-sided linear induction motor considering dynamic eddy-effect
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作者 邓江明 陈特放 陈春阳 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第5期1716-1724,共9页
An adaptive current compensation control for a single-sided linear induction motor(SLIM) with nonlinear disturbance observer was developed. First, to maintain t-axis secondary component flux constant with consideratio... An adaptive current compensation control for a single-sided linear induction motor(SLIM) with nonlinear disturbance observer was developed. First, to maintain t-axis secondary component flux constant with consideration of the specially dynamic eddy-effect(DEE) of the SLIM, a instantaneously tracing compensation of m-axis current component was analyzed. Second,adaptive current compensation based on Taylor-discretization algorithm was proposed. Third, an effective kind of nonlinear disturbance observer(NDOB) was employed to estimate and compensate the undesired load vibrations, then the robustness of the control system could be guaranteed. Experimental verification of the feasibility of the proposed method for an SLIM control system was performed, and it showed that the proposed adaptive compensation scheme with NDOB could significantly promote speed dynamical response and minimize speed ripple under the conditions of external load coupled vibrations and unavoidable feedback control variables measured errors, i.e., current and speed. 展开更多
关键词 single-sided linear induction motors(SLIMs) current compensation adaptive control dynamical response nonlinear disturbance observer(NDOB)
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Global stabilizing controller design for linear time-varying systems and its application on BTT missiles 被引量:8
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作者 Tan Feng Duan Guangren 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2008年第6期1178-1184,共7页
A parametric method for the gain-scheduled controller design of a linear time-varying system is given. According to the proposed scheduling method, the performance between adjacent characteristic points is preserved b... A parametric method for the gain-scheduled controller design of a linear time-varying system is given. According to the proposed scheduling method, the performance between adjacent characteristic points is preserved by the invariant eigenvalues and the gradually varying eigenvectors. A sufficient stability criterion is given by constructing a series of Lyapunov functions based on the selected discrete characteristic points. An important contribution is that it provides a simple and feasible approach for the design of gain-scheduled controllers for linear time-varying systems, which can guarantee both the global stability and the desired closed-loop performance of the resulted system. The method is applied to the design of a BTT missile autopilot and the simulation results show that the method is superior to the traditional one in sense of either global stability or system performance. 展开更多
关键词 linear time-varying systems global stability gain-scheduled control eigenstructure assignment BTT
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Delay-dependent stability and stabilization of a class of linear switched time-varying delay systems 被引量:3
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作者 Zhang Lixian Wang Changhong Gao Huijun 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2007年第2期320-326,共7页
The stability and stabilization of a class of linear switched time-varying delay systems are investigated. A piecewise quadratic Lyapunov function (PWQLF) is constructed and is used to obtain the stability condition... The stability and stabilization of a class of linear switched time-varying delay systems are investigated. A piecewise quadratic Lyapunov function (PWQLF) is constructed and is used to obtain the stability conditions based on the linear matrix inequalities (LMIs). The stabilizing controller for this class of system is then designed and the solution of the desired controller can be obtained by a cone complementary linearization algorithm. Numerical examples are provided to illustrate the less conservativeness of the new stability and the validity of the controller design procedures. 展开更多
关键词 linear switched systems time-varying delay Delay-dependent stability STABILIZATION LMIs.
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Fault detection filter design for linear discrete time-varying systems with multiplicative noise 被引量:2
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作者 Yueyang Li Maiying Zhong 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2011年第6期982-990,共9页
The problem of fault detection for linear discrete timevarying systems with multiplicative noise is dealt with.By using an observer-based robust fault detection filter(FDF) as a residual generator,the design of the ... The problem of fault detection for linear discrete timevarying systems with multiplicative noise is dealt with.By using an observer-based robust fault detection filter(FDF) as a residual generator,the design of the FDF is formulated in the framework of H ∞ filtering for a class of stochastic time-varying systems.A sufficient condition for the existence of the FDF is derived in terms of a Riccati equation.The determination of the parameter matrices of the filter is converted into a quadratic optimization problem,and an analytical solution of the parameter matrices is obtained by solving the Riccati equation.Numerical examples are given to illustrate the effectiveness of the proposed method. 展开更多
关键词 fault detection filter(FDF) linear discrete time-varying(LDTV) system multiplicative noise Riccati equation.
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Reinforcement learning based parameter optimization of active disturbance rejection control for autonomous underwater vehicle 被引量:3
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作者 SONG Wanping CHEN Zengqiang +1 位作者 SUN Mingwei SUN Qinglin 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2022年第1期170-179,共10页
This paper proposes a liner active disturbance rejection control(LADRC) method based on the Q-Learning algorithm of reinforcement learning(RL) to control the six-degree-of-freedom motion of an autonomous underwater ve... This paper proposes a liner active disturbance rejection control(LADRC) method based on the Q-Learning algorithm of reinforcement learning(RL) to control the six-degree-of-freedom motion of an autonomous underwater vehicle(AUV).The number of controllers is increased to realize AUV motion decoupling.At the same time, in order to avoid the oversize of the algorithm, combined with the controlled content, a simplified Q-learning algorithm is constructed to realize the parameter adaptation of the LADRC controller.Finally, through the simulation experiment of the controller with fixed parameters and the controller based on the Q-learning algorithm, the rationality of the simplified algorithm, the effectiveness of parameter adaptation, and the unique advantages of the LADRC controller are verified. 展开更多
关键词 autonomous underwater vehicle(AUV) reinforcement learning(RL) Q-LEARNING linear active disturbance rejection control(LADRC) motion decoupling parameter optimization
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Robust stabilization and disturbance attenuation for a class of underactuated mechanical systems 被引量:1
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作者 赖旭芝 潘昌忠 +2 位作者 吴敏 佘锦华 Simon X.YANG 《Journal of Central South University》 SCIE EI CAS 2012年第9期2488-2495,共8页
The robust control problem for a class of underactuated mechanical systems called acrobots is addressed. The goal is to drive the acrobots away from the straight-down position and balance them at the straight-up unsta... The robust control problem for a class of underactuated mechanical systems called acrobots is addressed. The goal is to drive the acrobots away from the straight-down position and balance them at the straight-up unstable equilibrium position in the presence of parametric uncertainties and external disturbance. First, in the swing-up area, it is shown that the time derivative of energy is independent of the parameter uncertainties, but exogenous disturbance may destroy the characteristic of increase in mechanical energy. So, a swing-up controller with compensator is designed to suppress the influence of the disturbance. Then, in the attractive area, the control problem is formulated into a H~ control framework by introducing a proper error signal, and a sufficient condition of the existence of Hoo state feedback control law based on linear matrix inequality (LMI) is proposed to guarantee the quadratic stability of the control system. Finally, the simulation results show that the proposed control approach can simultaneously handle a maximum ±10% parameter perturbation and a big disturbance simultaneously. 展开更多
关键词 underactuated mechanical systems robust stabilization disturbance attenuation H∞ linear matrix inequality (LMI)
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Stabilization of linear time-varying systems with state and input constraints using convex optimization 被引量:1
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作者 Feng Tan Mingzhe Hou Guangren Duan 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2016年第3期649-655,共7页
The stabilization problem of linear time-varying systems with both state and input constraints is considered. Sufficient conditions for the existence of the solution to this problem are derived and a gain-switched(ga... The stabilization problem of linear time-varying systems with both state and input constraints is considered. Sufficient conditions for the existence of the solution to this problem are derived and a gain-switched(gain-scheduled) state feedback control scheme is built to stabilize the constrained timevarying system. The design problem is transformed to a series of convex feasibility problems which can be solved efficiently. A design example is given to illustrate the effect of the proposed algorithm. 展开更多
关键词 linear time-varying stabilization state constraints convex optimization
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Scheme of optimal fault detection for linear discrete time-varying systems with delayed state
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作者 Maiying Zhong Jie Chen Yue Geng 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2017年第5期979-985,共7页
This paper deals with the problem of the optimal fault detection (FD) for linear discrete time-varying (LDTV) systems with delayed state and l(2)-norm bounded unknown input. The novelty lies in the designing of an eva... This paper deals with the problem of the optimal fault detection (FD) for linear discrete time-varying (LDTV) systems with delayed state and l(2)-norm bounded unknown input. The novelty lies in the designing of an evaluation function for the robust FD. The basic idea is to directly construct an evaluation function by using a weighted l(2)-norm of the measurement output, which achieves an optimal trade-off between the sensitivity to fault and the robustness to l(2)-norm bounded unknown input. To avoid complex computation, a feasible solution is obtained via the recursive computation by applying the orthogonal projection. It is shown that such an evaluation function provides a unified scheme for both the cases of unknown input being l(2)-norm bounded and jointly normal distribution, while a threshold may be chosen based on a priori knowledge of unknown input. A numerical example is given to demonstrate the effectiveness of the proposed method. 展开更多
关键词 fault detection evaluation function linear discrete time-varying system TIME-DELAY
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On stability analysis of nonlinear ADRC-based control system with application to inverted pendulum problems
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作者 LI Jie XIA Yuanqing 《Journal of Systems Engineering and Electronics》 CSCD 2024年第6期1563-1573,共11页
This paper mainly focuses on stability analysis of the nonlinear active disturbance rejection control(ADRC)-based control system and its applicability to real world engineering problems.Firstly,the nonlinear ADRC(NLAD... This paper mainly focuses on stability analysis of the nonlinear active disturbance rejection control(ADRC)-based control system and its applicability to real world engineering problems.Firstly,the nonlinear ADRC(NLADRC)-based control system is transformed into a multi-input multi-output(MIMO)Lurie-like system,then sufficient condition for absolute stability based on linear matrix inequality(LMI)is proposed.Since the absolute stability is a kind of global stability,Lyapunov stability is further considered.The local asymptotical stability can be deter-mined by whether a matrix is Hurwitz or not.Using the inverted pendulum as an example,the proposed methods are verified by simulation and experiment,which show the valuable guidance for engineers to design and analyze the NL ADRC-based control system. 展开更多
关键词 active disturbance rejection control(ADRC) stabi-lity analysis linear matrix inequality(LMI) inverted pendulum system
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A Harmonic Disturbance Suppression Method For Frequency Time-variable Systems
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作者 ZHOU Xinxiu FANG Jiancheng +1 位作者 LIU Gang ZHANG Ran 《中国电机工程学报》 EI CSCD 北大核心 2011年第36期I0012-I0012,247,共1页
The problem of complete rejection of external inaccessible disturbances plays an important role in the modem control theory.Analysis and design of a control system with harmonic disturbances are challenging.This paper... The problem of complete rejection of external inaccessible disturbances plays an important role in the modem control theory.Analysis and design of a control system with harmonic disturbances are challenging.This paper present both linear and nonlinear harm onics observers for systems with harm onic disturbances. 展开更多
关键词 harmonic disturbance linear matrix inequality nonlinear disturbance observer variable structure control magnetically suspended
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双PWM变流器飞轮系统母线电压LADRC二次控制策略 被引量:1
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作者 魏乐 周子宇 +1 位作者 房方 王冰玉 《太阳能学报》 北大核心 2025年第1期242-250,共9页
提出一种基于二阶线性自抗扰控制(LADRC)的飞轮储能系统直流母线电压二次控制策略来应对飞轮储能系统频繁充放电切换带来的母线电压波动问题,其将母线电压及微分值分别视为状态变量,负载功率、参数不确定性等内外干扰视为扩展状态量进... 提出一种基于二阶线性自抗扰控制(LADRC)的飞轮储能系统直流母线电压二次控制策略来应对飞轮储能系统频繁充放电切换带来的母线电压波动问题,其将母线电压及微分值分别视为状态变量,负载功率、参数不确定性等内外干扰视为扩展状态量进行扰动观测器设计。该策略能将工况切换造成电压波动的观测扰动量实时补偿至控制量中,实现扰动补偿。加入二次控制解决LADRC面对非常值扰动会存在稳态误差的问题,保证飞轮储能系统在充放能切换过程中母线电压具备较好的快速响应和抗干扰性能的同时实现无差控制。最后通过仿真验证了所提策略的有效性。 展开更多
关键词 飞轮 储能 整流电路 电压控制 线性自抗扰控制 二次控制
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基于DQN算法的直流微电网负载接口变换器自抗扰控制策略 被引量:1
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作者 周雪松 韩静 +3 位作者 马幼捷 陶珑 问虎龙 赵明 《电力系统保护与控制》 北大核心 2025年第1期95-103,共9页
在直流微电网中,为了保证直流母线与负载之间能量流动的稳定性,解决在能量流动中不确定因素产生的扰动问题。在建立DC-DC变换器数学模型的基础上,设计了一种基于深度强化学习的DC-DC变换器自抗扰控制策略。利用线性扩张观测器对总扰动... 在直流微电网中,为了保证直流母线与负载之间能量流动的稳定性,解决在能量流动中不确定因素产生的扰动问题。在建立DC-DC变换器数学模型的基础上,设计了一种基于深度强化学习的DC-DC变换器自抗扰控制策略。利用线性扩张观测器对总扰动的估计补偿和线性误差反馈控制特性对自抗扰控制器结构进行简化设计,并结合深度强化学习对其控制器参数进行在线优化。根据不同工况下的负载侧电压波形,分析了DC-DC变换器在该控制策略、线性自抗扰控制与比例积分控制下的稳定性、抗扰性和鲁棒性,验证了该控制策略的正确性和有效性。最后,在参数摄动下进行了蒙特卡洛实验,仿真结果表明该控制策略具有较好的鲁棒性。 展开更多
关键词 直流微电网 深度强化学习 DQN算法 DC-DC变换器 线性自抗扰控制
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高速直线感应电机自学习抗扰控制策略
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作者 徐飞 姜新宇 +2 位作者 李子欣 史黎明 李耀华 《电工技术学报》 北大核心 2025年第6期1771-1783,共13页
高速直线感应电机在跨声速运行时,激波非定常特性引发的抖振现象易导致电机动子速度测量受到强烈不确定扰动,推力控制失稳、跨声速运行失败。该文首先建立了高速直线感应电机自学习数学模型,由历史实验数据学习电机模型参数,依据数学模... 高速直线感应电机在跨声速运行时,激波非定常特性引发的抖振现象易导致电机动子速度测量受到强烈不确定扰动,推力控制失稳、跨声速运行失败。该文首先建立了高速直线感应电机自学习数学模型,由历史实验数据学习电机模型参数,依据数学模型对直线感应电机动子速度进行高精度多步预测。其次由预测速度与传感器量测速度构建滚动预测矩阵,提出基于矩阵列向量变异程度的量测速度可信度计算方法。最后依据预测速度、量测数据及可信度值加权运算,提出不确定扰动下高速直线感应电机自学习抗扰控制策略。仿真结果验证了自学习抗扰控制策略对短时不确定扰动有较好的抑制效果,在跨声速时修正速度与实际速度误差小于0.7%,有效解决了不确定扰动导致的电流分量偏离和推力失稳问题,原理样机实验结果验证了控制策略对不确定扰动抑制的有效性。 展开更多
关键词 不确定扰动 直线感应电机 抗扰控制 自学习模型
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