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H_∞ Preview Control for Automatic Carrier Landing 被引量:2
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作者 FARHAN Masood XUE Yixuan' +1 位作者 ZHEN Ziyang YANG Liuqing 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2019年第6期919-926,共8页
This paper focuses on the application of H_∞preview control in automatic carrier landing system(ACLS)for carrier-based aircraft.Due to the mutual movement between aircraft and carrier,the landing process becomes cons... This paper focuses on the application of H_∞preview control in automatic carrier landing system(ACLS)for carrier-based aircraft.Due to the mutual movement between aircraft and carrier,the landing process becomes considerably more challenging compared to a conventional runway landing.ACLS systems mitigate this by predicting deck motion and generating ideal glide slope path for tracking.Although,this predicted glide slope information is available in advance,conventional control structures are still unable to use this future information.H_∞preview control has the ability to utilize this future information for improving tracking response and disturbance rejection.The process of incorporating preview information into ACLS framework and synthesizing the H_∞preview controller is presented.The methodology is verified using the example of F/A-18 automatic carrier landing problem and results are presented. 展开更多
关键词 H∞control preview control carrierbased aircraft automatic carrier landing robust preview control
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Automatic Carrier Landing Control for Unmanned Aerial Vehicles Based on Preview Control 被引量:9
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作者 Zhen Ziyang Ma Kun Bhatia Ajeet Kumar 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2017年第4期413-419,共7页
For carrier-based unmanned aerial vehicles(UAVs),one of the important problems is the design of an automatic carrier landing system(ACLS)that would enable the UAVs to accomplish autolanding on the aircraft carrier.How... For carrier-based unmanned aerial vehicles(UAVs),one of the important problems is the design of an automatic carrier landing system(ACLS)that would enable the UAVs to accomplish autolanding on the aircraft carrier.However,due to the movements of the flight deck with six degree-of-freedom,the autolanding becomes sophisticated.To solve this problem,an accurate and effective ACLS is developed,which is composed of an optimal preview control based flight control system and a Kalman filter based deck motion predictor.The preview control fuses the future information of the reference glide slope to improve landing precision.The reference glide slope is normally a straight line.However,the deck motion will change the position of the ideal landing point,and tracking the ideal straight glide slope may cause landing failure.Therefore,the predictive deck motion information from the deck motion predictor is used to correct the reference glide slope,which decreases the dispersion around the desired landing point.Finally,simulations are carried out to verify the performance of the designed ACLS based on a nonlinear UAV model. 展开更多
关键词 carrier-based unmanned aerial vehicles optimal preview control automatic carrier landing system deck motion predictor
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Optimal Preview Control for Automatic Carrier Landing System of Carrier-Based Aircraft with Air Wake 被引量:1
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作者 Li Meng Zhen Ziyang +2 位作者 Gong Huajun Hou Min Huang Shuhong 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2017年第6期659-668,共10页
Carrier-based aircraft carrier landing is a special kind of tracking control problem and not suitable for classical control methods,which may miss the desired performance or result in overdesign.Therefore,we present a... Carrier-based aircraft carrier landing is a special kind of tracking control problem and not suitable for classical control methods,which may miss the desired performance or result in overdesign.Therefore,we present an optimal preview control for automatic carrier landing system(ACLS)by using state information of system,as well as future reference information,which can avoid the shortcomings of classical control methods.Since the flight performance of carrier-based aircraft is disturbed by air wake when the aircraft flies near the area of carrier stern,we design a disturbance rejection strategy to ensure that aircraft track the glide path with high precision and robustness.Further,carrier-based aircraft is a complex nonlinear system.However,the nonlinear model of carrier-based aircraft can be linearized at equilibrium landing state and decoupled into the longitudinal model and the lateral model.Therefore,an optimal preview control system is designed.The simulation results of a carrier-based aircraft show that the optimal preview control system can effectively suppress air wake.Tracking accuracy of optimal preview controller is higher than that of the proportional integral differential(PID)control system. 展开更多
关键词 carrier-based aircraft carrier landing optimal control preview control nonlinear model
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An Application of Optimal Preview Control in Terrain Following System
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作者 Li Dongmei Dept. of Precision Instrument and Mechanics, Tsinghua University, Beijing 100084, P.R.China Zhou Di, Hu Zhenkun & Hu Hengzhang Dept. of Control Science and Engineering, Harbin Institute of Technology, Harbin 150001, P.R.China 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2002年第1期21-26,共6页
An optimal preview method is applied to the design of terrain following controller for cruise missile. In this method, tracking errors and control increments are both considered in the quadratic cost function. Integra... An optimal preview method is applied to the design of terrain following controller for cruise missile. In this method, tracking errors and control increments are both considered in the quadratic cost function. Integrating the general optimal servo system with a preview feedforward compensation that feeds forward future command and future disturbance produces an optimal preview servo system. In the terrain following system, the flight altitude of the cruise missile is a command signal, and its future information can be known apriori. Hence, we have designed a terrain following controller with a basic state feedback and a feedforward compensation for future altitude information. Simulation results show that the performance of the terrain following system with such an optimal preview controller has been improved dramatically. 展开更多
关键词 Cruise missile Terrain following preview control Optimal control Feedforward compensation.
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RESEARCH ON PREVIEW CONTROL TECHNIQUE BASED ON EXTENDED ERROR SYSTEM WITH DELAY
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作者 Zhang Xiaomei Wang Zhanlin(Faculty 303, Beijing University of Aeronautics andAstronautics, Beijing, 100083, China) 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 1997年第1期58-61,共4页
A valid preview control technique is presented for processing servo systemswith input delay based on extended error systems with input delay. The technique usesthe concept of error systems, establishes extended error ... A valid preview control technique is presented for processing servo systemswith input delay based on extended error systems with input delay. The technique usesthe concept of error systems, establishes extended error systems with input delay and de-rives preview control laws based on minimization of evaluation function. Finally, simula-tion is done on linear direct current motor without brush. The results reveal that the tech-nique proposed herein is valid for improving performance of servo systems. 展开更多
关键词 error system preview control servo system
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Design of a Preview Controller for Articulated Heavy Vehicles
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作者 Mohammad Manjurul Islam Yuping He 《Journal of Mechanics Engineering and Automation》 2013年第11期661-676,共16页
The paper presents a preview controller design for ATS (active trailer steering) systems to improve high-speed stability of AHVs (articulated heavy vehicles). An AHV consists of a towing unit, namely tractor or tr... The paper presents a preview controller design for ATS (active trailer steering) systems to improve high-speed stability of AHVs (articulated heavy vehicles). An AHV consists of a towing unit, namely tractor or truck, and one or more towed units which called trailers. Individual units are connected to one another at articulated joints by mechanical couplings. Due to the multi-unit configurations, AHVs exhibit unique unstable motion modes, including jack-knifing, trailer swing and rollover. These unstable motion modes are the leading cause of highway accidents. To prevent these unstable motion modes, the preview controller, namely the LPDP (lateral position deviation preview) controller, is proposed. For a truck/full-trailer combination, the LPDP controller is designed to control the steering of the front and rear axle wheels of the trailing unit. The calculation of the corrective steering angle of the trailer front axle wheels is based on the preview information of the lateral position deviation of the trajectory of the axle center from that of the truck front axle center. Similarly, the steering angle of the trailer rear axle wheels is calculated by using the lateral position deviation of the trajectory of the axle center from that of the truck front axle. To perform closed-loop dynamic simulations and evaluate the vehicle performance measure, a driver model is introduced and it 'derives' the AHV model based on well-defined testing specifications. The proposed preview control scheme in the continuous time domain is developed by using the LQR (linear quadratic regular) technique. The closed-loop simulation results indicate that the performance of the AHV with the LPDP controller is improved by decreasing rearward amplification ratio from the baseline value of 1.28 to 0.98 and reducing transient off-tracking by 95.03%. The proposed LPDP control algorithm provides an alternative method for the design optimization of AHVs with ATS systems. 展开更多
关键词 Optimal preview control articulated heavy vehicle active trailer steering closed-loop dynamic simulation.
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Finite Horizon H∞ Preview Control 被引量:5
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作者 WANG Hong-Xia ZHANG Huan-Shui 《自动化学报》 EI CSCD 北大核心 2010年第2期327-331,共5页
关键词 H∞ 控制 控制理论 系统工程 稳定性
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Hierarchical dual-horizon preview control for CDC dampers and air springs in vehicle semi-active suspensions
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作者 Zhongkai LUAN Xinyan CAO +1 位作者 Wanzhong ZHAO Chunyan WANG 《Science China(Technological Sciences)》 2025年第10期468-481,共14页
This paper proposes a hierarchical dual-horizon preview control strategy for semi-active suspensions with CDC dampers and dual-chamber air springs.To address the preview information uncertainties and actuator delay,th... This paper proposes a hierarchical dual-horizon preview control strategy for semi-active suspensions with CDC dampers and dual-chamber air springs.To address the preview information uncertainties and actuator delay,the upper layer employs a tube-based model predictive controller using long-horizon preview information,while the lower layer uses shorthorizon preview with a GRNN-based delay model to adjust the preview window in real time.A frequency-domain force separation approach is introduced to synchronize the actuator response.Experimental results show up to 50.49% improvement in suspension force tracking under Class-C road conditions,validating the effectiveness of the proposed method in enhancing ride comfort and actuator coordination under uncertainty. 展开更多
关键词 vehicle semi-active suspensions dual-horizon preview control hierarchical control frequency-domain separation actuator asynchrony
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Design of an Optimal Preview Controller for Dual-Rate Linear Discrete-Time Systems 被引量:2
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作者 Yujian GUO Fucheng LIAO 《Journal of Systems Science and Information》 CSCD 2018年第2期178-192,共15页
A dual-rate preview control strategy for a type of discrete-time system is proposed based on the theory of multirate control. First, by using the discrete lifting technique, the general dual-rate discrete-time system ... A dual-rate preview control strategy for a type of discrete-time system is proposed based on the theory of multirate control. First, by using the discrete lifting technique, the general dual-rate discrete-time system is converted into a single-rate augmented system. On this basis, the augmented error system is constructed by introducing a first-order difference operator and the previewable reference signal. Then the tracking problem is transformed into a regulator problem of the augmented error system. The optimal preview control law of the augmented error system is obtained by using standard linear quadratic optimal preview control theory, and then the optimal preview controller of the original system is derived. In addition, the necessary and sufficient conditions for the controller are given.Finally, simulation results show the effectiveness of the proposed method. 展开更多
关键词 discrete-time system preview control multirate systems discrete lifting technique optimal control
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WHEELBASE PREVIEW OPTIMAL CONTROL FOR ACTIVE VEHICLE SUSPENSIONS 被引量:2
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作者 Yu, Fan Crolla, D.A. 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 1998年第2期43-50,共8页
An algorithm in which the optimal control law takes the advantage of the correlation between front and rear inputs, i.e., wheelbase preview information, for an active vehicle suspension design is described. Based on s... An algorithm in which the optimal control law takes the advantage of the correlation between front and rear inputs, i.e., wheelbase preview information, for an active vehicle suspension design is described. Based on simulations, the potential improvements from wheelbase preview and the effects of preview time are investigated. 展开更多
关键词 Active suspension preview control
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STUDY ON PREVIEW CONTROL METHOD OF ACTIVE SUSPENSION BASED ON A HALF-CAR MODEL
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作者 Shaojun Liu Yan Li 《Journal of Central South University》 SCIE EI CAS 1999年第1期52-56,共5页
Previous studies have confirmed in simulation and experiment that an improved control performance can be obtained when the optimal preview control method was applied to an active suspension system for a quarter car mo... Previous studies have confirmed in simulation and experiment that an improved control performance can be obtained when the optimal preview control method was applied to an active suspension system for a quarter car model. In order to investigate the effectiveness not only in riding comfort but also in road handling, an half car model with the hydro pneumatic active suspension system is proposed in this study. Whole preview control method and partial preview control method, in which the road information detected by the front wheel is sent to the controller to decide the input to rear suspension, are taken into design of the active suspension control system. Results of numerical simulation show that satisfactory control efficiency could be achieved in both whole preview control and partial preview control. The comparison of results suggests that whole preview control method can provide better system performance, but the partial preview control method is superior due to its lower cost. 展开更多
关键词 ACTIVE SUSPENSION WHOLE preview control partial preview control
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Optimal Tracking Control for Discrete-time Systems with Time-delay Based on the Preview Control Method
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作者 Haishan XU Fucheng LIAO 《Journal of Systems Science and Information》 CSCD 2019年第5期452-461,共10页
In this paper,the optimal tracking control problem for discrete-time with state and input delays is studied based on the preview control method.First,a transformation is introduced.Thus,the system is transformed into ... In this paper,the optimal tracking control problem for discrete-time with state and input delays is studied based on the preview control method.First,a transformation is introduced.Thus,the system is transformed into a non-delayed system and the tracking problem of the time-delay system is transformed into the regulation problem of a non-delayed system via processing of the reference signal.Then,by applying the preview control theory,an augmented system for the non-delayed system is derived,and a controller with preview function is designed,assuming that the reference signal is previewable.Finally,the optimal control law of the augmented error system and the optimal control law of the original system are obtained by letting the preview length of the reference signal go to zero.Numerical simulations are provided to verify the presented results. 展开更多
关键词 DISCRETE-TIME SYSTEMS TIME-DELAY SYSTEMS optimal control preview control
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考虑参数不确定性的主动悬架预瞄自抗扰前馈补偿控制
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作者 黄俊明 李栋 +1 位作者 杨蓉 黄伟 《重庆理工大学学报(自然科学)》 北大核心 2025年第7期9-18,共10页
考虑到汽车主动悬架系统预瞄控制效果容易受车速、悬架参数不确定性及路面信息感知精度等因素影响,提出一种基于改进型自抗扰控制算法的主动悬架预瞄控制方法。综合考虑悬架系统中簧载质量、刚度和阻尼的不确定性,搭建含有不确定性的车... 考虑到汽车主动悬架系统预瞄控制效果容易受车速、悬架参数不确定性及路面信息感知精度等因素影响,提出一种基于改进型自抗扰控制算法的主动悬架预瞄控制方法。综合考虑悬架系统中簧载质量、刚度和阻尼的不确定性,搭建含有不确定性的车辆悬架模型,对自抗扰控制算法中的增益函数进行改进,设计了带前馈补偿的主动悬架预瞄控制系统,分别在随机路面和脉冲路面激励下从测量噪声和信号处理干扰等外部干扰层面对所提方法的控制效果进行仿真分析。搭建硬件在环试验系统对控制系统接近实际部署时的性能进行研究。仿真和试验结果表明:针对系统状态变化和干扰不确定性,所提方法能在较宽泛的车速范围内有效改善车身振动,具有良好的鲁棒性。 展开更多
关键词 前馈补偿 主动悬架 预瞄控制 自抗扰控制 路面信息精度
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基于等价输入干扰补偿的永磁直线同步电机H_(∞)预见重复控制
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作者 孙宜标 张锐 王丽梅 《控制理论与应用》 北大核心 2025年第10期1957-1967,共11页
永磁直线同步电机(PMLSM)应用在周期性高精度位置伺服时,容易受到以周期性端部效应推力波动和参数摄动为主的不确定性因素的影响,因此提出一种基于等价输入干扰补偿的永磁直线同步电机H_(∞)预见重复控制的方法.首先在前馈补偿环节中引... 永磁直线同步电机(PMLSM)应用在周期性高精度位置伺服时,容易受到以周期性端部效应推力波动和参数摄动为主的不确定性因素的影响,因此提出一种基于等价输入干扰补偿的永磁直线同步电机H_(∞)预见重复控制的方法.首先在前馈补偿环节中引入预见补偿器和误差补偿项,用于减小重复控制器在第1个控制周期内正反馈延迟环节不作用引起的跟踪误差;然后基于滑模观测器设计了等价输入干扰(SMO-RCEID)补偿器对PMLSM的端部效应推力波动以及参数摄动等不确定性进行补偿;最后通过李雅普诺夫稳定性理论结合线性矩阵不等式(LMI)导出二维连续/离散混合模型描述的H_(∞)预见重复控制系统和SMO-RCEID补偿器稳定的条件,并且求解出系统的控制器增益和观测器的增益.仿真结果表明该方法具有良好的跟踪性能和干扰抑制能力. 展开更多
关键词 永磁直线同步电机 预见控制 重复控制 等价输入干扰 线性矩阵不等式 二维连续/离散混合系统
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基于扰动和输入饱和限制的连续时间系统预见跟踪控制
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作者 李丽 叶辉 《应用数学》 北大核心 2025年第1期224-232,共9页
本文研究一类带有外部干扰和输入饱和的连续时间系统的预见控制问题.为了能成功地构造出连续时间输入饱和系统的误差系统,与以往对系统方程求导不同,本文利用状态平移方法代替状态求导,使得输入饱和连续时间系统的误差系统的构造成为可... 本文研究一类带有外部干扰和输入饱和的连续时间系统的预见控制问题.为了能成功地构造出连续时间输入饱和系统的误差系统,与以往对系统方程求导不同,本文利用状态平移方法代替状态求导,使得输入饱和连续时间系统的误差系统的构造成为可能.这样原系统的预见饱和控制就转化为误差系统的标准饱和控制问题.另外,针对原系统的误差系统,分别引入状态反馈和静态输出反馈,并改写输入向量以便利用可预见信号的未来信息.利用Lyapunov函数及LMI技巧,导出了闭环系统渐近稳定的充分条件.最后仿真例子表明了本文结果的有效性. 展开更多
关键词 预见控制 连续时间系统 输入饱和 状态反馈 输出反馈 线性矩阵不等式
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一类执行器故障系统的鲁棒预见重复控制策略
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作者 李丽 贾晨 《应用数学》 北大核心 2025年第2期311-322,共12页
本文将预见重复控制理论与带执行器故障参数不确定系统相结合,提出带有输出反馈的预见重复控制方法,融合预见控制和重复控制各自的优势,以实现对周期输入信号的跟踪.利用二维模型方法和状态增广技术,推导出二维扩大误差系统,将原系统的... 本文将预见重复控制理论与带执行器故障参数不确定系统相结合,提出带有输出反馈的预见重复控制方法,融合预见控制和重复控制各自的优势,以实现对周期输入信号的跟踪.利用二维模型方法和状态增广技术,推导出二维扩大误差系统,将原系统的预见重复控制问题转化为扩大误差系统的输出反馈问题.并且改写输出方程、通过LMI技巧给出闭环系统渐近稳定的条件及预见重复控制器的设计方法.通过数值仿真验证本文设计方法的有效性. 展开更多
关键词 扩大误差系统 预见重复控制 重复控制 故障系统 输出反馈 线性矩阵不等式
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连续时间系统的H_(∞)预见控制
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作者 李丽 叶辉 孟晓华 《纯粹数学与应用数学》 2025年第3期547-561,共15页
本文给出了线性连续时间控制系统基于线性矩阵不等式的预见控制器设计方法.首先状态平移方法代替预见控制理论中经典求导方法来构造误差系统,将预见控制问题转化为误差系统的H_(∞)控制问题.然后针对误差系统,分别引入状态反馈和静态输... 本文给出了线性连续时间控制系统基于线性矩阵不等式的预见控制器设计方法.首先状态平移方法代替预见控制理论中经典求导方法来构造误差系统,将预见控制问题转化为误差系统的H_(∞)控制问题.然后针对误差系统,分别引入状态反馈和静态输出反馈两种情况,结合Lyapunov稳定性理论和线性矩阵不等式方法,分别给出闭环渐近稳定的充分条件及预见控制器的设计方法.最后,数值仿真表明本文结果的有效性. 展开更多
关键词 误差系统 H_(∞)预见控制 连续时间系统 状态反馈 输出反馈 线性矩阵不等式
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一种二阶滑模汽车路径跟踪控制方法
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作者 刘军 王菁菁 +1 位作者 刘皓皓 顾洪钢 《机械设计与制造》 北大核心 2025年第2期369-374,共6页
为了提高车辆主动避撞过程中的跟踪精度和稳定性,针对外界环境的干扰和不可预计的模型的误差,提出一种基于超扭曲的二阶滑模(STSMC)控制方法。以二自由度车辆模型为研究对象,设计五阶多项式曲线来规划防撞路径,采用自适应预瞄法和熵权... 为了提高车辆主动避撞过程中的跟踪精度和稳定性,针对外界环境的干扰和不可预计的模型的误差,提出一种基于超扭曲的二阶滑模(STSMC)控制方法。以二自由度车辆模型为研究对象,设计五阶多项式曲线来规划防撞路径,采用自适应预瞄法和熵权法优化指标函数的权重系数以减小横向误差;针对滑模控制跟踪过程的抖动现象,利用超扭矩控制律来削弱抖振。采用Lyapunov理论证明控制系统的稳定性并通过仿真证明不同干扰下STSMC能够更好追踪避撞路径,侧向误差小于0.12m,比SMC减少40%。 展开更多
关键词 滑模控制 五阶多项式曲线 自适应预瞄 SIMULINK 超扭曲算法
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基于道路信息反馈修正的悬架MPC预瞄控制研究
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作者 吴骁 史文库 +2 位作者 杨红波 陈龙 陈志勇 《中国公路学报》 北大核心 2025年第5期297-307,共11页
基于MPC算法的悬架预瞄控制系统将路面不平度的预瞄结果作为道路激励,计算最优作动力,以提升系统的平顺性,然而实际运行环境较为复杂,路面不平度的预瞄结果与悬架受到的道路激励之间存在误差,影响该系统的实际使用性能,针对该问题,提出... 基于MPC算法的悬架预瞄控制系统将路面不平度的预瞄结果作为道路激励,计算最优作动力,以提升系统的平顺性,然而实际运行环境较为复杂,路面不平度的预瞄结果与悬架受到的道路激励之间存在误差,影响该系统的实际使用性能,针对该问题,提出一种道路信息反馈修正机制,以降低路面不平度预瞄结果的误差,使悬架预瞄控制器适用于复杂的真实道路工况,提升悬架预瞄控制器的实际使用特性。基于MPC算法,建立了悬架预瞄控制系统,仿真计算了该系统在连续路面与冲击路面激励下的振动响应,分析了预瞄偏差对悬架振动结果的影响;设计了一种路面垂向激励反馈修正模块,基于状态信息识别的路面不平度结果修正路面不平度的预瞄结果,用于悬架MPC控制,提高了悬架预瞄控制系统的道路感知能力,提升了车辆的综合力学特性。研究结果表明:采用MPC算法的悬架预瞄控制系统对路面不平度的预瞄结果的准确性要求较高,路面不平度的预瞄结果与实际激励相差越大,悬架的振动响应越偏离理想效果;在预瞄路面为D级而实际激励为A级的工况下,引入道路信息反馈修正机制后,悬架预瞄控制系统的平顺性提升了85.45%,操纵稳定性提升了86.53%,能耗降低了97.26%。采用反馈修正机制可增强悬架MPC控制器的综合力学性能。 展开更多
关键词 汽车工程 悬架预瞄控制 模型预测控制 路面不平度预瞄 状态观测 反馈修正 主动悬架
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基于模糊逻辑的航天器信息融合预见姿态控制
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作者 包燕伟 管萍 +1 位作者 戈新生 曹彧腾 《应用力学学报》 北大核心 2025年第6期1246-1253,共8页
大挠性航天器所携带的大型挠性附件具有体积大和刚度低等特点,导致大挠性附件振动会严重影响航天器的姿态控制。对此,将模糊控制和信息融合预见控制结合,设计了基于模糊的信息融合预见姿态控制器。依据信息融合理论,通过融合航天器期望... 大挠性航天器所携带的大型挠性附件具有体积大和刚度低等特点,导致大挠性附件振动会严重影响航天器的姿态控制。对此,将模糊控制和信息融合预见控制结合,设计了基于模糊的信息融合预见姿态控制器。依据信息融合理论,通过融合航天器期望轨迹和动态方程等信息推导了航天器的最优预见姿态控制律。此控制策略具有设计过程简单、计算量小且易于实现的特点。针对在实际工程中执行机构存在输出力矩受限问题,采用模糊控制在线调整控制律的相关参数,以使控制量满足受限要求。仿真结果表明所设计的控制策略可使挠性附件振动快速衰减,航天器姿态角能准确、快速地达到期望值,具有较好的控制性能,可为大挠性航天器姿态控制的工程应用提供借鉴。 展开更多
关键词 大挠性航天器 姿态控制 信息融合 预见控制 模糊逻辑
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