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Fixed-time Target-guided Coordinate Control of Unmanned Surface Vehicles Based on Dynamic Surface Control
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作者 LI Chao−yi XU Hai−xiang +2 位作者 YU Wen−zhao DU Zhe DING Ya−nan 《船舶力学》 北大核心 2025年第6期849-862,共14页
This paper presents an investigation on the target-guided coordinated control(TACC)of unmanned surface vehicles(USVs).In the scenario of tracking non-cooperative targets,the status information of the target can only b... This paper presents an investigation on the target-guided coordinated control(TACC)of unmanned surface vehicles(USVs).In the scenario of tracking non-cooperative targets,the status information of the target can only be obtained by some USVs.In order to achieve semi-encirclement tracking of noncooperative targets under maritime security conditions,a fixed-time tracking control method based on dynamic surface control(DSC)is proposed in this paper.Firstly,a novel TACC architecture with decoupled kinematic control law and decoupled kinetic control law was designed to reduce the complexity of control system design.Secondly,the proposed DSC-based target-guided kinematic control law including tracking points pre-allocation strategy and sigmoid artificial potential functions(SigAPFs)can avoid collisions during tracking process and optimize kinematic control output.Finally,a fixed-time TACC system was proposed to achieve fast convergence of kinematic and kinetics errors.The effectiveness of the proposed TACC approach in improving target tracking safety and reducing control output chattering was verified by simulation comparison results. 展开更多
关键词 unmanned surface vehicle distributed control target-guided coordinate control fixed-time convergence dynamic surface control
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MPC-based path tracking with PID speed control for high-speed autonomous vehicles considering time-optimal travel 被引量:27
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作者 CHEN Shu-ping XIONG Guang-ming +1 位作者 CHEN Hui-yan NEGRUT Dan 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第12期3702-3720,共19页
In order to track the desired path as fast as possible,a novel autonomous vehicle path tracking based on model predictive control(MPC)and PID speed control was proposed for high-speed automated vehicles considering th... In order to track the desired path as fast as possible,a novel autonomous vehicle path tracking based on model predictive control(MPC)and PID speed control was proposed for high-speed automated vehicles considering the constraints of vehicle physical limits,in which a forward-backward integration scheme was introduced to generate a time-optimal speed profile subject to the tire-road friction limit.Moreover,this scheme was further extended along one moving prediction window.In the MPC controller,the prediction model was an 8-degree-of-freedom(DOF)vehicle model,while the plant was a 14-DOF vehicle model.For lateral control,a sequence of optimal wheel steering angles was generated from the MPC controller;for longitudinal control,the total wheel torque was generated from the PID speed controller embedded in the MPC framework.The proposed controller was implemented in MATLAB considering arbitrary curves of continuously varying curvature as the reference trajectory.The simulation test results show that the tracking errors are small for vehicle lateral and longitudinal positions and the tracking performances for trajectory and speed are good using the proposed controller.Additionally,the case of extended implementation in one moving prediction window requires shorter travel time than the case implemented along the entire path. 展开更多
关键词 model predictive control path tracking minimum-time speed profile vehicle dynamics arbitrary path
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Adaptive dynamic surface control for air-breathing hypersonic vehicle 被引量:6
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作者 Li Zhou Shumin Fei 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2013年第3期463-479,共17页
This paper describes an adaptive control approach for an air-breathing hypersonic vehicle. The control objective is to provide robust altitudes and velocity tracking in the presence of model uncertainties and varying ... This paper describes an adaptive control approach for an air-breathing hypersonic vehicle. The control objective is to provide robust altitudes and velocity tracking in the presence of model uncertainties and varying disturbances. A fuzzy-neural disturbance observer is developed to estimate uncertainties and disturbances, and the adaptive controller is synthesized by the dynamic surface approach combing with the observer. The tracking error at the steady state can be guaranteed to converge to inside of a small residue set which the size of the set can be an arbitrary small value. Simulation results demonstrate the effectiveness of the presented approach. 展开更多
关键词 flight control dynamic surface control fuzzy-neura system disturbance observer hypersonic vehicle.
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Trajectory tracking control for underactuated unmanned surface vehicles with dynamic uncertainties 被引量:10
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作者 廖煜雷 张铭钧 +1 位作者 万磊 李晔 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第2期370-378,共9页
The trajectory tracking control problem for underactuated unmanned surface vehicles(USV) was addressed, and the control system took account of the uncertain influences induced by model perturbation, external disturban... The trajectory tracking control problem for underactuated unmanned surface vehicles(USV) was addressed, and the control system took account of the uncertain influences induced by model perturbation, external disturbance, etc. By introducing the reference, trajectory was generated by a virtual USV, and the error equation of trajectory tracking for USV was obtained, which transformed the tracking problem of underactuated USV into the stabilization problem of the trajectory tracking error equation. A backstepping adaptive sliding mode controller was proposed based on backstepping technology and method of dynamic slide model control. By means of theoretical analysis, it is proved that the proposed controller ensures that the solutions of closed loop system have the ultimate boundedness property. Simulation results are presented to illustrate the effectiveness of the proposed controller. 展开更多
关键词 trajectory tracking UNDERACTUATED unmanned surface vehicle (USV) BACKSTEPPING dynamic sliding mode control
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Adaptive functional link network control of near-space vehicles with dynamical uncertainties 被引量:5
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作者 Yanli Du Qingxian Wu Changsheng Jiang Jie Wen 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2010年第5期868-876,共9页
The control law design for a near-space hypersonic vehicle(NHV) is highly challenging due to its inherent nonlinearity,plant uncertainties and sensitivity to disturbances.This paper presents a novel functional link ... The control law design for a near-space hypersonic vehicle(NHV) is highly challenging due to its inherent nonlinearity,plant uncertainties and sensitivity to disturbances.This paper presents a novel functional link network(FLN) control method for an NHV with dynamical thrust and parameter uncertainties.The approach devises a new partially-feedback-functional-link-network(PFFLN) adaptive law and combines it with the nonlinear generalized predictive control(NGPC) algorithm.The PFFLN is employed for approximating uncertainties in flight.Its weights are online tuned based on Lyapunov stability theorem for the first time.The learning process does not need any offline training phase.Additionally,a robust controller with an adaptive gain is designed to offset the approximation error.Finally,simulation results show a satisfactory performance for the NHV attitude tracking,and also illustrate the controller's robustness. 展开更多
关键词 adaptive control system dynamical uncertainties partially feedback functional link network near-space vehicle.
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A Lyapunov-based three-axis attitude intelligent control approach for unmanned aerial vehicle 被引量:2
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作者 A.H.Mazinan 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第12期4669-4678,共10页
A novel Lyapunov-based three-axis attitude intelligent control approach via allocation scheme is considered in the proposed research to deal with kinematics and dynamics regarding the unmanned aerial vehicle systems.T... A novel Lyapunov-based three-axis attitude intelligent control approach via allocation scheme is considered in the proposed research to deal with kinematics and dynamics regarding the unmanned aerial vehicle systems.There is a consensus among experts of this field that the new outcomes in the present complicated systems modeling and control are highly appreciated with respect to state-of-the-art.The control scheme presented here is organized in line with a new integration of the linear-nonlinear control approaches,as long as the angular velocities in the three axes of the system are accurately dealt with in the inner closed loop control.And the corresponding rotation angles are dealt with in the outer closed loop control.It should be noted that the linear control in the present outer loop is first designed through proportional based linear quadratic regulator(PD based LQR) approach under optimum coefficients,while the nonlinear control in the corresponding inner loop is then realized through Lyapunov-based approach in the presence of uncertainties and disturbances.In order to complete the inner closed loop control,there is a pulse-width pulse-frequency(PWPF) modulator to be able to handle on-off thrusters.Furthermore,the number of these on-off thrusters may be increased with respect to the investigated control efforts to provide the overall accurate performance of the system,where the control allocation scheme is realized in the proposed strategy.It may be shown that the dynamics and kinematics of the unmanned aerial vehicle systems have to be investigated through the quaternion matrix and its corresponding vector to avoid presenting singularity of the results.At the end,the investigated outcomes are presented in comparison with a number of potential benchmarks to verify the approach performance. 展开更多
关键词 Lyapunov based control approach PD based LQR approach control allocation scheme kinematics and dynamics unmanned aerial vehicle system on-off thrusters PWPF modulator
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Dynamic signal control for at-grade intersections under preliminary autonomous vehicle environment 被引量:3
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作者 LUO Si-da ZHANG Shuai 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第4期893-904,共12页
Autonomous vehicle technology will transform fundamentally urban traffic systems.To better enhance the coming era of connected and autonomous vehicles,effective control strategies that interact wisely with these intel... Autonomous vehicle technology will transform fundamentally urban traffic systems.To better enhance the coming era of connected and autonomous vehicles,effective control strategies that interact wisely with these intelligent vehicles for signalized at-grade intersections are indispensable.Vehicle-to-infrastructure communication technology offers unprecedented clues to reduce the delay at signalized intersections by innovative information-based control strategies.This paper proposes a new dynamic control strategy for signalized intersections with vehicle-to-signal information.The proposed strategy is called periodic vehicle holding(PVH)strategy while the traffic signal can provide information for the vehicles that are approaching an intersection.Under preliminary autonomous vehicle(PAV)environment,left-turning and through-moving vehicles will be sorted based on different information they receive.The paper shows how PVH reorganizes traffic to increase the capacity of an intersection without causing severe spillback to the upstream intersection.Results show that PVH can reduce the delay by approximately 15%at a signalized intersection under relatively high traffic demand. 展开更多
关键词 dynamic traffic control vehicle-to-signal signalized intersection preliminary autonomous vehicle environment
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Study on modeling of vehicle dynamic stability and control technique 被引量:1
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作者 GAO Yun-ting LI Pan-feng 《机电工程》 CAS 2012年第8期932-936,共5页
In order to solve the problem of enhancing the vehicle driving stability and safety,which has been the hot question researched by scientific and engineering in the vehicle industry,the new control method was investiga... In order to solve the problem of enhancing the vehicle driving stability and safety,which has been the hot question researched by scientific and engineering in the vehicle industry,the new control method was investigated.After the analysis of tire moving characteristics and the vehicle stress analysis,the tire model based on the extension pacejka magic formula which combined longitudinal motion and lateral motion was developed and a nonlinear vehicle dynamical stability model with seven freedoms was made.A new model reference adaptive control project which made the slip angle and yaw rate of vehicle body as the output and feedback variable in adjusting the torque of vehicle body to control the vehicle stability was designed.A simulation model was also built in Matlab/Simulink to evaluate this control project.It was made up of many mathematical subsystem models mainly including the tire model module,the yaw moment calculation module,the center of mass parameter calculation module,tire parameter calculation module of multiple and so forth.The severe lane change simulation result shows that this vehicle model and the model reference adaptive control method have an excellent performance. 展开更多
关键词 vehicle dynamic STABILITY and control vehicle dynamics modeling model REFERENCE ADAPTIVE control
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Serret-Frenet frame based on path following control for underactuated unmanned surface vehicles with dynamic uncertainties 被引量:13
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作者 廖煜雷 张铭钧 万磊 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期214-223,共10页
The path following problem for an underactuated unmanned surface vehicle(USV) in the Serret-Frenet frame is addressed. The control system takes account of the uncertain influence induced by model perturbation, externa... The path following problem for an underactuated unmanned surface vehicle(USV) in the Serret-Frenet frame is addressed. The control system takes account of the uncertain influence induced by model perturbation, external disturbance, etc. By introducing the Serret-Frenet frame and global coordinate transformation, the control problem of underactuated system(a nonlinear system with single-input and ternate-output) is transformed into the control problem of actuated system(a single-input and single-output nonlinear system), which simplifies the controller design. A backstepping adaptive sliding mode controller(BADSMC)is proposed based on backstepping design technique, adaptive method and theory of dynamic slide model control(DSMC). Then, it is proven that the state of closed loop system is globally stabilized to the desired configuration with the proposed controller. Simulation results are presented to illustrate the effectiveness of the proposed controller. 展开更多
关键词 path following underactuated unmanned surface vehicle backstepping dynamic sliding mode control
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Vehicle path tracking by integrated chassis control 被引量:10
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作者 Saman Salehpour Yaghoub Pourasad Seyyed Hadi Taheri 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第4期1378-1388,共11页
The control problem of trajectory based path following for passenger vehicles is studied. Comprehensive nonlinear vehicle model is utilized for simulation vehicle response during various maneuvers in MATLAB/Simulink. ... The control problem of trajectory based path following for passenger vehicles is studied. Comprehensive nonlinear vehicle model is utilized for simulation vehicle response during various maneuvers in MATLAB/Simulink. In order to follow desired path, a driver model is developed to enhance closed loop driver/vehicle model. Then, linear quadratic regulator(LQR) controller is developed which regulates direct yaw moment and corrective steering angle on wheels. Particle swam optimization(PSO) method is utilized to optimize the LQR controller for various dynamic conditions. Simulation results indicate that, over various maneuvers, side slip angle and lateral acceleration can be reduced by 10% and 15%, respectively, which sustain the vehicle stable. Also, anti-lock brake system is designed for longitudinal dynamics of vehicle to achieve desired slip during braking and accelerating. Proposed comprehensive controller demonstrates that vehicle steerability can increase by about 15% during severe braking by preventing wheel from locking and reducing stopping distance. 展开更多
关键词 vehicle dynamics active control system optimal controller electronic stability program(ESP) particle swam optimization(PSO)
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基于模型预测控制的无人车编队避障方法 被引量:3
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作者 张硕 吴雨洋 +3 位作者 汪洋 王一全 崔星 宿玉康 《北京理工大学学报》 EI CAS 北大核心 2025年第1期34-41,共8页
为研究障碍物环境下基于模型预测控制的无人车编队避障方法,建立了包含虚拟智能体状态的编队避障函数,使避障问题容易用优化方法求解.在无人车编队内部引入优先级策略实现编队内部避碰,并通过动态事件触发机制减小无人车之间通讯带宽占... 为研究障碍物环境下基于模型预测控制的无人车编队避障方法,建立了包含虚拟智能体状态的编队避障函数,使避障问题容易用优化方法求解.在无人车编队内部引入优先级策略实现编队内部避碰,并通过动态事件触发机制减小无人车之间通讯带宽占用.对该方法进行了计算机仿真验证,在给定多边形障碍物环境下,使用领导者-追随者架构执行编队行驶任务,并借助事件触发器实现间歇通讯.结果表明,相较于传统方法,所设计的编队控制器能够提高带宽约束下无人车编队行驶安全性. 展开更多
关键词 编队控制 模型预测控制 动态事件触发机制 无人车避障
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带有扰动观测模型预测控制的水下无人航行器对接控制
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作者 张伟 王强 +2 位作者 吴奇阳 郑岩 杜雪 《哈尔滨工程大学学报》 北大核心 2025年第4期634-642,共9页
为实现水下无人航行器的回收,本文将回收中的动态对接问题转换为水下无人航行器与母船的位姿同步控制问题。在水下无人航行器动态对接母船存在外界扰动的情况下,设计了带有扰动观测器的非线性模型预测控制方案。对水下无人航行器的五自... 为实现水下无人航行器的回收,本文将回收中的动态对接问题转换为水下无人航行器与母船的位姿同步控制问题。在水下无人航行器动态对接母船存在外界扰动的情况下,设计了带有扰动观测器的非线性模型预测控制方案。对水下无人航行器的五自由度模型加入相对于惯性系的恒定或缓慢变化的扰动,利用非线性扰动观测器对这些扰动进行估计,并将其输入到模型预测中来增强控制器的鲁棒性。研究表明:通过求解非线性优化问题得到最优控制,使得水下无人航行器能够和母船的位姿保持一致,完成对接过程。本文控制器能够有效抵抗外界扰动,提高对接任务的控制精度。 展开更多
关键词 水下无人航行器 动态对接 位姿同步控制 外界扰动 估计 鲁棒性 非线性模型预测控制 非线性扰动观测器 非线性优化问题 最优控制
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基于动力学建模的农机路径跟踪鲁棒滑模控制算法研究
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作者 葛志康 白晓平 +1 位作者 王卓 王枭雄 《农机化研究》 北大核心 2025年第8期1-9,共9页
为了解决无人农业车辆在复杂路面条件下作业时存在参数摄动、未知扰动而导致控制精度下降的问题,首先进行了农业轮式车辆侧向动力学分析,建立了考虑前视距离的车辆动力学模型;然后设计了一种基于系统未知参数边界条件的鲁棒滑模控制方法... 为了解决无人农业车辆在复杂路面条件下作业时存在参数摄动、未知扰动而导致控制精度下降的问题,首先进行了农业轮式车辆侧向动力学分析,建立了考虑前视距离的车辆动力学模型;然后设计了一种基于系统未知参数边界条件的鲁棒滑模控制方法,对系统参数大幅摄动、外部干扰和作业过程中的路面环境变化具有强鲁棒性,并且在实际应用时无需获取未知或难以测量的车辆动力学参数的精确值。田间试验结果表明:在路面条件发生突然变化的情况下,滑模控制方法的跟踪平均误差绝对值为0.1609 m,相对于状态反馈控制(State Feedback Control,SFC)方法提高了43.8%;跟踪误差绝对值极值为0.3650 m,相对于SFC控制方法提高了13.5%。在拖拉机以2.5 m/s的速度进行连续作业时,滑模控制方法跟踪平均误差绝对值为0.0980 m,最大偏差为0.2682 cm,标准差为0.1163,相比于SFC控制方法分别提升了34.80%、29.23%、40.27%,满足无人农业车辆在复杂环境下导航作业的实际需求。 展开更多
关键词 无人农机 路径跟踪 滑模控制 鲁棒性 动力学建模
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无人机动态撞网回收制导控制方法与飞行试验
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作者 王玉杰 陈清阳 +2 位作者 高显忠 邓小龙 侯中喜 《北京航空航天大学学报》 北大核心 2025年第2期487-497,共11页
针对舰载固定翼无人机(UAV)动态精确回收过程中的制导控制技术开展研究,提出基于分段策略的舰载无人机精确回收引导方法,完成了动态撞网回收控制系统方案设计与集成测试。通过数值迭代方法预测触网时间实现回收航线的在线规划,在回收中... 针对舰载固定翼无人机(UAV)动态精确回收过程中的制导控制技术开展研究,提出基于分段策略的舰载无人机精确回收引导方法,完成了动态撞网回收控制系统方案设计与集成测试。通过数值迭代方法预测触网时间实现回收航线的在线规划,在回收中段采用基于引导点的非线性制导算法对航线进行精确跟踪,在回收末段基于经典比例导引及纵横解耦策略设计了三维空间末制导律,实现了针对动基座回收的撞网点精确控制。通过系统仿真和飞行试验证明了分段制导策略与各阶段算法的有效性,结果表明:回收航线规划方法简单有效、适应性强,制导控制算法对于航线的跟踪偏差小于0.5 m,高度控制的稳态精度优于0.5 m,动态撞网回收的末端精度优于0.8 m,各阶段的制导控制精度满足无人机动态撞网需求,所提方法适于工程应用。 展开更多
关键词 舰载无人机 动态撞网回收 航线规划与跟踪 精确制导控制 飞行试验
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动态障碍物环境下多四旋翼轨迹规划与跟踪
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作者 江好胜 武芳芳 +3 位作者 黄泽贤 马子玥 董春云 平续斌 《系统仿真学报》 北大核心 2025年第8期2089-2102,共14页
针对多四旋翼无人机系统在动态障碍物环境下执行复杂任务时面临的问题,设计了一种综合粒子群优化的任务分配、融合传统Informed-RRT^(*)与A^(*)算法的轨迹规划,以及基于模型预测控制的轨迹跟踪方法。将多四旋翼任务分配问题构建为经典... 针对多四旋翼无人机系统在动态障碍物环境下执行复杂任务时面临的问题,设计了一种综合粒子群优化的任务分配、融合传统Informed-RRT^(*)与A^(*)算法的轨迹规划,以及基于模型预测控制的轨迹跟踪方法。将多四旋翼任务分配问题构建为经典的多旅行商问题,使用粒子群优化将任务分配给多四旋翼无人机。设计一种综合传统Informed-RRT^(*)与A^(*)算法优点的融合算法进行四旋翼无人机的轨迹规划,在动态障碍物环境下为多四旋翼无人机系统中每架无人机规划出安全有效的轨迹。基于模型预测控制方法设计跟踪控制器,使四旋翼无人机能够精确地实时跟踪在线规划轨迹,并且能够避免与动态障碍物发生碰撞。仿真实验验证了算法的有效性。 展开更多
关键词 四旋翼无人机 动态障碍物 任务分配 轨迹规划 跟踪控制
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电力动车组变刚度转臂节点的半主动控制
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作者 李旭阳 代亮成 +2 位作者 池茂儒 赵明花 周荻 《中国机械工程》 北大核心 2025年第1期160-167,176,共9页
为抑制电力动车组运行中由异常轮轨匹配产生的车体晃动,提出一种采用半主动转臂节点代替被动式转臂节点的解决方法。设计了具有两级刚度特性的半主动转臂节点并建立其力学模型,推导了具有可变惯性通道的半主动转臂节点复刚度表达式,并... 为抑制电力动车组运行中由异常轮轨匹配产生的车体晃动,提出一种采用半主动转臂节点代替被动式转臂节点的解决方法。设计了具有两级刚度特性的半主动转臂节点并建立其力学模型,推导了具有可变惯性通道的半主动转臂节点复刚度表达式,并通过台架试验验证了力学模型的准确性。基于半主动转臂节点控制策略,建立了半主动转臂节点与车辆动力学的联合仿真模型,分析了不同轮轨匹配状态下半主动转臂节点对车辆动力学性能的影响。结果表明:在低等效锥度轮轨匹配状态下,半主动转臂节点能有效衰减一次蛇行对应速度区间内车体大幅值、低频的横向振动,显著减小车体横向加速度主频处的幅值;正常轮轨匹配状态下,与搭载传统被动转臂节点的车辆相比,搭载半主动转臂节点的车辆有更优的曲线通过能力和更高的临界速度。 展开更多
关键词 电力动车组 变刚度转臂节点 半主动控制 一次蛇行 车辆动力学性能
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基于动态输出反馈的汽车横摆与侧倾稳定性控制
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作者 尹夕志 胡三宝 冯智勇 《中国机械工程》 北大核心 2025年第7期1453-1462,共10页
为提高轮毂电机驱动电动汽车在高速、低附着等极限工况下的横摆与侧倾稳定性,建立了车辆横向动力学三自由度多胞型模型,并提出一种鲁棒分层控制策略。通过迭代搜索求得上层降阶动态输出反馈控制器的局部最优解,以同时满足极点配置和H∞... 为提高轮毂电机驱动电动汽车在高速、低附着等极限工况下的横摆与侧倾稳定性,建立了车辆横向动力学三自由度多胞型模型,并提出一种鲁棒分层控制策略。通过迭代搜索求得上层降阶动态输出反馈控制器的局部最优解,以同时满足极点配置和H∞性能约束。以轮胎综合负荷率最小为优化目标,求得下层最优的四轮转矩。Simulink和CarSim联合仿真表明:该控制策略能明显提高车辆的稳定性,且对系统参数变化和外界干扰保持鲁棒性。 展开更多
关键词 电动汽车 动态输出反馈 鲁棒控制 横摆稳定性 侧倾稳定性
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运载火箭垂直回收控制能力建模及应用研究
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作者 伊鑫 胡海峰 贺元军 《导弹与航天运载技术(中英文)》 北大核心 2025年第1期73-77,106,共6页
为在方案论证初期设计输入数据有限的条件下,快速有效地进行控制能力分析,基于常规大气层内飞行器控制能力分析方法,针对返回式火箭对该方法的适应性进行了分析。通过动力学建模和对原分析方法拓展改进,探索出一套适合返回式运载火箭的... 为在方案论证初期设计输入数据有限的条件下,快速有效地进行控制能力分析,基于常规大气层内飞行器控制能力分析方法,针对返回式火箭对该方法的适应性进行了分析。通过动力学建模和对原分析方法拓展改进,探索出一套适合返回式运载火箭的控制能力分析方法,并在有限控制能力的前提下,对允许飞行工况的约束条件进行初步明确,为返回式火箭飞行控制系统的详细设计奠定基础。 展开更多
关键词 返回式火箭 控制能力分析 配平方程 飞行工况约束 动力学建模
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高速磁浮交通系统半实物仿真平台动力学建模与测试
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作者 邵晴 赵峻 +3 位作者 张朋 和风 雷涛 赵春发 《实验室研究与探索》 北大核心 2025年第2期73-80,共8页
为快速推进高速磁浮交通系统研发进程,节约研发成本,研制包含悬浮和导向控制器的磁浮交通车线桥耦合动力学半实物仿真测试平台。平台由上位机、实时仿真平台(下位机)、接口箱、悬浮和导向控制器组成。上位机利用SIMPACK和Matlab/Simulin... 为快速推进高速磁浮交通系统研发进程,节约研发成本,研制包含悬浮和导向控制器的磁浮交通车线桥耦合动力学半实物仿真测试平台。平台由上位机、实时仿真平台(下位机)、接口箱、悬浮和导向控制器组成。上位机利用SIMPACK和Matlab/Simulink软件分别建立磁浮车辆动力学、电磁悬浮导向、轨道梁动力学和轨道不平顺等模型,将数值模型导入下位机在环仿真,由管理软件监控仿真状态并记录数据。利用平台开展车辆起浮、直线加速运行、单点悬浮故障以及过平面曲线工况的动力学测试仿真。仿真结果表明,数值模型合理,仿真方法合适,可用于600 km/h高速磁浮交通系统优化设计及性能评估。 展开更多
关键词 磁浮列车 电磁悬浮 主动控制 半实物仿真 车桥耦合动力学
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基于动态事件触发的多无人船协同路径跟踪控制
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作者 吕旻高 古楠 +3 位作者 刘陆 王安青 王丹 彭周华 《中国舰船研究》 北大核心 2025年第1期213-222,共10页
[目的]针对网络带宽资源受限、受模型不确定和外部环境扰动的多无人船,提出一种基于动态事件触发的多无人船协同路径跟踪控制方法。[方法]首先,在协同层设计中,通过引入一个动态变量,设计动态事件触发机制,进而设计动态事件触发的路径... [目的]针对网络带宽资源受限、受模型不确定和外部环境扰动的多无人船,提出一种基于动态事件触发的多无人船协同路径跟踪控制方法。[方法]首先,在协同层设计中,通过引入一个动态变量,设计动态事件触发机制,进而设计动态事件触发的路径参数更新律,用来降低网络通信量;并设计路径参数预估器,以在通信间隔内对邻居无人船的路径参数进行预估。然后,在制导层设计中,设计基于视距的制导律。最后,在控制层设计中,设计超螺旋观测器来对总扰动进行估计,并基于估计的总扰动设计超螺旋动力学控制律。[结果]通过稳定性和芝诺分析,证明了闭环系统是输入–状态稳定的,并且所提方法不会发生芝诺现象。对比仿真结果验证了所提基于动态事件触发的无人船协同路径跟踪控制方法的有效性。[结论]所提方法能够在保证协同路径跟踪效果的同时降低暂态和稳态时的网络通信量。 展开更多
关键词 无人船 导航 动态事件触发 协同路径跟踪 有限时间控制
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