期刊文献+
共找到3,107篇文章
< 1 2 156 >
每页显示 20 50 100
Integrated Active Suspension and Anti-Lock Braking Control for Four-Wheel-Independent-Drive Electric Vehicles
1
作者 Ze Zhao Lei Zhang +3 位作者 Xiaoling Ding Zhiqiang Zhang Shaohua Li Liang Gu 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2024年第1期87-98,共12页
This paper presents an integrated control scheme for enhancing the ride comfort and handling performance of a four-wheel-independent-drive electric vehicle through the coordination of active suspension system(ASS)and ... This paper presents an integrated control scheme for enhancing the ride comfort and handling performance of a four-wheel-independent-drive electric vehicle through the coordination of active suspension system(ASS)and anti-lock braking system(ABS).First,a longitudinal-vertical coupled vehicle dynamics model is established by integrating a road input model.Then the coupling mechanisms between longitudinal and vertical vehicle dynamics are analyzed.An ASS-ABS integrated control system is proposed,utilizing an H∞controller for ASS to optimize load transfer effect and a neural network sliding mode control for ABS implementation.Finally,the effectiveness of the proposed control scheme is evaluated through comprehensive tests conducted on a hardware-in-loop(HIL)test platform.The HIL test results demonstrate that the proposed control scheme can significantly improve the braking performance and ride comfort compared to conventional ABS control methods. 展开更多
关键词 Four-wheel-independent-drive electric vehicles Active suspension system(ASS) anti-lock braking system(ABS) Vertical-longitudinal vehicle dynamics
下载PDF
Typical faults and safety analysis of brake controller for AC locomotive
2
作者 Yujie Ren Hai Chi 《Railway Sciences》 2023年第4期486-494,共9页
Purpose–The brake controller is a key component of the locomotive brake system.It is essential to study its safety.Design/methodology/approach–This paper summarizes and analyzes typical faults of the brake controlle... Purpose–The brake controller is a key component of the locomotive brake system.It is essential to study its safety.Design/methodology/approach–This paper summarizes and analyzes typical faults of the brake controller,and proposes four categories of faults:position sensor faults,microswitch faults,mechanical faults and communication faults.Suggestions and methods for improving the safety of the brake controller are also presented.Findings–In this paper,a self-judgment and self-learning dynamic calibration method is proposed,which integrates the linear error of the sensor and the manufacturing and assembly errors of the brake controller to solve the output drift.This paper also proposes a logic for diagnosing and handling microswitch faults.Suggestions are proposed for other faults of brake controller.Originality/value–The methods proposed in this paper can greatly improve the usability of the brake controller and reduce the failure rate. 展开更多
关键词 Locomotive brake system brake controller FAULTS
下载PDF
Virtually coupled train set control subject to space-time separation:A distributed economic MPC approach with emergency braking configuration
3
作者 Xiaolin Luo Tao Tang +1 位作者 Le Wang Hongjie Liu 《High-Speed Railway》 2024年第3期143-152,共10页
The emerging virtual coupling technology aims to operate multiple train units in a Virtually Coupled Train Set(VCTS)at a minimal but safe distance.To guarantee collision avoidance,the safety distance should be calcula... The emerging virtual coupling technology aims to operate multiple train units in a Virtually Coupled Train Set(VCTS)at a minimal but safe distance.To guarantee collision avoidance,the safety distance should be calculated using the state-of-the-art space-time separation principle that separates the Emergency Braking(EB)trajectories of two successive units during the whole EB process.In this case,the minimal safety distance is usually numerically calculated without an analytic formulation.Thus,the constrained VCTS control problem is hard to address with space-time separation,which is still a gap in the existing literature.To solve this problem,we propose a Distributed Economic Model Predictive Control(DEMPC)approach with computation efficiency and theoretical guarantee.Specifically,to alleviate the computation burden,we transform implicit safety constraints into explicitly linear ones,such that the optimal control problem in DEMPC is a quadratic programming problem that can be solved efficiently.For theoretical analysis,sufficient conditions are derived to guarantee the recursive feasibility and stability of DEMPC,employing compatibility constraints,tube techniques and terminal ingredient tuning.Moreover,we extend our approach with globally optimal and distributed online EB configuration methods to shorten the minimal distance among VCTS.Finally,experimental results demonstrate the performance and advantages of the proposed approaches. 展开更多
关键词 Virtually coupled train set Space-time separation Economic model predictive control Distributed model predictive control Emergency braking configuration
下载PDF
Electronic Brake-Force Distribution Control Methods of ABS-Equipped Vehicles During Cornering Braking 被引量:5
4
作者 王国业 刘昭度 +1 位作者 马岳峰 齐志权 《Journal of Beijing Institute of Technology》 EI CAS 2007年第1期34-37,共4页
Based on the dynamics of ABS-equipped vehicles during cornering braking, the electronic brake- force distribution (EBD) control methods of ABS-equipped vehicles during cornering braking are proposed. According to th... Based on the dynamics of ABS-equipped vehicles during cornering braking, the electronic brake- force distribution (EBD) control methods of ABS-equipped vehicles during cornering braking are proposed. According to the dynamics and the tire model under tire adhesion limit, the stability acceptance criteria of vehicles during cornering braking are proposed. According to the stability acceptance criteria and the ABS control, the EBD control methods of ABS-equipped vehicles during cornering braking are implemented by adjusting the threshold values of tires slip independently. The vehicle states during cornering braking at two typical initial velocities of the vehicle are analyzed by the EBD control methods, whose results indicate the EBD control methods can improve the braking performances of the vehicle during cornering braking comparing with the ABS control. 展开更多
关键词 electronic brake-force distribution(EBD) cornering braking control methods
下载PDF
Position Control Optimization of Aerodynamic Brake Device for High-speed Trains 被引量:2
5
作者 ZUO Jianyong LUO Zhuojun CHEN Zhongkai 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第2期287-295,共9页
The aerodynamic braking is a clean and non-adhesion braking, and can be used to provide extra braking force during high-speed emergency braking. The research of aerodynamic braking has attracted more and more attentio... The aerodynamic braking is a clean and non-adhesion braking, and can be used to provide extra braking force during high-speed emergency braking. The research of aerodynamic braking has attracted more and more attentions in recent years. However, most researchers in this field focus on aerodynamic effects and seldom on issues of position control of the aerodynamic braking board. The purpose of this paper is to explore position control optimization of the braking board in an aerodynamic braking prototype. The mathematical models of the hydraulic drive unit in the aerodynamic braking system are analyzed in detail, and the simulation models are established. Three control functions--constant, linear, and quadratic--are explored. Two kinds of criteria, including the position steady-state error and the acceleration of the piston rod, are used to evaluate system performance. Simulation results show that the position steady state-error is reduced from around 12-2 mm by applying a linear instead of a constant function, while the acceleration is reduced from 25,71-3.70 m/s2 with a quadratic control function. Use of the quadratic control function is shown to improve system performance. Experimental results obtained by measuring the position response of the piston rod on a test-bench also suggest a reduced position error and smooth movement of the piston rod. This implies that the acceleration is smaller when using the quadratic function, thus verifying the effectiveness of control schemes to improve to system performance. This paper proposes an effective and easily implemented control scheme that improves the position response of hydraulic cylinders during position control. 展开更多
关键词 high-speed train aerodynamic brake HYDRAULIC position control optimization.
下载PDF
Development and Control of a Magnetorheological Damper‑Based Brake Pedal Simulator for Vehicle Brake‑by‑Wire Systems 被引量:2
6
作者 Daoming Wang Biao Wang +2 位作者 Bin Zi Xianxu Bai Wuwei Chen 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2022年第6期390-402,共13页
Recent developments have demonstrated that the brake pedal simulator(BPS)is becoming an indispensable apparatus for the break-by-wire systems in future electric vehicles.Its main function is to provide the driver with... Recent developments have demonstrated that the brake pedal simulator(BPS)is becoming an indispensable apparatus for the break-by-wire systems in future electric vehicles.Its main function is to provide the driver with a comfortable pedal feel to improve braking safety and comfort.This paper presents the development and control of an adjustable BPS,using a disk-type magnetorheological(MR)damper as the passive braking reaction generator to simulate the traditional pedal feel.A detailed description of the mechanical design of the MR damper-based BSP(MRDBBPS)is presented in this paper.Several basic performance experiments on the MRDBBPS prototype are conducted.A returnto-zero(RTZ)algorithm is proposed to avoid hysteresis and improve the repeatability of the pedal force.In addition,an RTZ algorithm-based real-time current-tracking controller(RTZRC)is designed in consideration of the response lag of the coil circuit.Finally,an experimental system is established by integrating the MRDBBPS prototype into a selfdeveloped automotive MR braking test bench(AMRBTB),and several control and braking experiments are performed.This research proposes a RTZRC control algorithm which can significantly increase the tracking accuracy of the brake pedal characteristic curve,particularly at a high pedal velocity.Additionally,the designed MRDBBPS prototype can achieve an effective and favorable control of the AMRBTB with a good repeatability. 展开更多
关键词 brake pedal simulator Magnetorheological damper Return-to-zero algorithm Real-time current-tracking control Experimental evaluation
下载PDF
The Development of a Fuzzy Predictive Control System for Automotive Anti-lock Braking System
7
作者 HUANGFU Shihui BAO Xiangying Shool of Mechanical and Electronic Engineering,Wuhan University of Technology,Wuhan 430070,China, 《武汉理工大学学报》 CAS CSCD 北大核心 2006年第S3期1012-1015,共4页
This paper presents the model of one-tire kinetics、tires、the braking system and the model of control system.On virtual road,this paper builds a fuzzy predictive control system to insure the best attachment coefficie... This paper presents the model of one-tire kinetics、tires、the braking system and the model of control system.On virtual road,this paper builds a fuzzy predictive control system to insure the best attachment coefficient between tires and road. And it turns out to be that this fuzzy predictive control method has achieved good performances. 展开更多
关键词 anti-lock BRAKING SYSTEM model fuzzy control PREDICTIVE control
下载PDF
The effect of controllable train-tail devices on the longitudinal impulse of the combined trains under initial braking 被引量:1
8
作者 Yuan Zhang Wei Wei +2 位作者 Boyang Liu Jun Zhang Jichao Zhu 《Railway Engineering Science》 2023年第2期172-180,共9页
The 20,000-ton combined train running has greatly promoted China’s heavy-haul railway transportation capability. The application of controllable train-tail devices could improve the braking wave of the train and brak... The 20,000-ton combined train running has greatly promoted China’s heavy-haul railway transportation capability. The application of controllable train-tail devices could improve the braking wave of the train and braking synchronism, and alleviate longitudinal impulse.However, the characteristics of the controllable train-tail device such as exhaust area, exhaust duration and exhaust action time are not uniform in practice, and their effects on the longitudinal impulse of the train are not apparent,which is worth studying. In this work, according to the formation of the Datong-Qinhuangdao Railway, the train air brake and longitudinal dynamics simulation system(TABLDSS) is applied to establish a 20,000-ton combined train model with the controllable train-tail device, and the braking characteristics and the longitudinal impulse of the train are calculated synchronously with changing the air exhaust time, exhaust area, and action lag time under initial braking. The results show that the maximum coupler force of the combined train will decrease with the extension of the continuous exhaust time, while the total exhaust time of the controllable train-tail device remains unchanged;the maximum coupler force of the combined train reduces by32.5% with the exhaust area increasing from 70% to 140%;when the lag time between the controllable train-tail device and the master locomotive is more than 1.5 s, the maximum coupler force of the train increases along with the time difference enlargement. 展开更多
关键词 controllable train-tail device 20 000-ton combined train Coupler force Initial braking
下载PDF
STUDY ON THE CONTROL SYSTEM OF HYDRAULIC MOMENT-ADJUSTED BRAKE FOR DOWNWARD BELT CONVEYOR
9
作者 孟国营 徐志强 +1 位作者 霍森 方佳雨 《Journal of Coal Science & Engineering(China)》 1997年第1期60-63,共4页
Having analyzed the drawbacks on the design of control system of hydraulic moment-adjusted brake system, the author presents a closed loop control system in the process of start and braking of the conveyer. On the bas... Having analyzed the drawbacks on the design of control system of hydraulic moment-adjusted brake system, the author presents a closed loop control system in the process of start and braking of the conveyer. On the basis of the concept of the critical time and the critical ac-celeration and its deductions, the working mode of the conveyer can be identified and controlled in feedback, furthermore, thus realize the process of soft start. ln the deceleration process, the author points out the problems that exist in the present control system and sets forward the control process that acted by the combined function of brake moment of motor and the drag torque of hy-draulic brake at the beginning of deceleration, it will further improved reliability of conveyor sys-tem. 展开更多
关键词 hydraulic moment-adjusted brake critical acceleration soft start closed-loop control
下载PDF
Research on the Control Method of Electromechanical Composite Brake Based on Electric Wheel Drive Vehicle
10
作者 Yitong Niu 《Journal of Electronic Research and Application》 2020年第5期1-4,共4页
Facing the increasingly serious environmental pollution and oil crisis,the development of automobile industry is facing a very serious challenge.For the sustainable development of automobile industry,the electric vehi... Facing the increasingly serious environmental pollution and oil crisis,the development of automobile industry is facing a very serious challenge.For the sustainable development of automobile industry,the electric vehicle using motor as driving equipment can realize“pollution-free”,which has become the focus of automobile research and development in many countries.In the research and development of electric vehicles,the electric vehicles driven by electric wheels have attracted the attention of all walks of life because of their ideal control characteristics and broad application prospects.In this paper,the electric wheel drive vehicle as the research object,the electromechanical composite brake control system is studied and analyzed. 展开更多
关键词 Electric wheeld rivevehicle Electromechanical composite braking control method
下载PDF
汽车电子机械制动系统的ABS自抗扰控制
11
作者 潘公宇 徐豪晖 +2 位作者 刘志强 徐德胜 王振 《重庆理工大学学报(自然科学)》 CAS 北大核心 2024年第6期55-62,共8页
为解决传统车辆液压制动系统响应滞后、ABS存在滑移率非线性等问题,设计了一种“行星齿轮减速机构+滚珠丝杠+活塞”的电子机械制动执行器方案,提出一种基于滑移率的ABS自抗扰控制策略,使电子机械制动系统能够快速、准确地调节各个车轮... 为解决传统车辆液压制动系统响应滞后、ABS存在滑移率非线性等问题,设计了一种“行星齿轮减速机构+滚珠丝杠+活塞”的电子机械制动执行器方案,提出一种基于滑移率的ABS自抗扰控制策略,使电子机械制动系统能够快速、准确地调节各个车轮的制动力,有效满足ABS的要求。运用Matlab/Simulink验证执行器的响应性能,分别在2种路面工况下进行ABS制动过程的仿真。研究结果表明:自抗扰控制对于系统内外部扰动具有较强的鲁棒性,能保证车辆的前、后轮滑移率更快稳定在目标滑移率处,有效减少了车辆的制动时间与制动距离。 展开更多
关键词 电子机械制动 防抱死制动系统 自抗扰控制 滑移率
下载PDF
基于等效序阻抗差异特征的低频输电线路差动保护优化方案 被引量:1
12
作者 黄涛 文继锋 +4 位作者 赵青春 徐晓春 谢华 徐海洋 卜立之 《电力自动化设备》 EI CSCD 北大核心 2024年第5期143-150,共8页
低频输电线路故障时,两侧短路电流均由模块化多电平矩阵变换器提供,两侧短路电流相角均受控且幅值相当,导致差动保护灵敏度严重下降。分析了低频输电系统定电压控制侧和功率控制侧的等效正、负序阻抗特征,指出因控制策略不同,系统故障... 低频输电线路故障时,两侧短路电流均由模块化多电平矩阵变换器提供,两侧短路电流相角均受控且幅值相当,导致差动保护灵敏度严重下降。分析了低频输电系统定电压控制侧和功率控制侧的等效正、负序阻抗特征,指出因控制策略不同,系统故障时两侧等效正、负序阻抗特征存在明显差异。分析了低频输电线路区内和区外故障两侧保护装置测量到的等效序阻抗之间的差异性和相似性,基于此特征构建了两侧等效序阻抗差异指标,提出了基于等效序阻抗差异指标的差动保护制动系数优化方法。仿真结果表明,所提方案能够显著提升低频输电线路区内故障时差动保护的动作速度和动作灵敏性。 展开更多
关键词 继电保护 差动保护 等效序阻抗 低频输电 受控故障特征 制动系数 控制策略
下载PDF
面向线控制动车辆单轮制动失效的稳定性控制
13
作者 孙丽琴 陈欢 +1 位作者 张晓亮 龚晓庆 《重庆理工大学学报(自然科学)》 CAS 北大核心 2024年第4期55-63,共9页
基于线控制动系统四轮可独立控制的特点,提出一种协同线控转向与线控制动的制动力实时分配的控制方法。该方法根据三轮富余制动力能否补偿失效轮损失制动力,按制动强度分为轻度、中度和重度制动3种工况,针对重度制动工况下制动力补偿不... 基于线控制动系统四轮可独立控制的特点,提出一种协同线控转向与线控制动的制动力实时分配的控制方法。该方法根据三轮富余制动力能否补偿失效轮损失制动力,按制动强度分为轻度、中度和重度制动3种工况,针对重度制动工况下制动力补偿不足问题,基于积分滑模控制方法设计前轮主动转向器,综合考虑单轮制动失效时各轮垂直载荷的变化和前轮转角介入后轮胎力的耦合,采用序列二次规划算法(sequental quadratic programming,SQP),实时分配剩余三轮制动力。仿真结果表明:在不同制动强度及不同轮制动失效下所提控制方法相较于无控制,横向跑偏分别减少了89.98%、91.90%、96.96%、89.62%,制动强度至少达到正常制动时的97.5%。因此,该控制方法在保证横向稳定性的同时最大限度地满足驾驶员的制动期望,有效抑制因单轮制动失效导致的车辆跑偏甩尾等问题。 展开更多
关键词 线控制动系统 单轮制动失效 制动力分配 稳定性控制
下载PDF
基于转鼓转速传感的中低速新能源汽车联合制动系统控制方法
14
作者 宗明建 马文胜 +1 位作者 袁望方 童晓帆 《传感技术学报》 CAS CSCD 北大核心 2024年第7期1244-1249,共6页
中低速新能源汽车是常见的交通工具,但是其制动控制存在响应时间长、控制效果差的问题,设计一种基于转鼓转速传感的中低速新能源汽车联合制动系统控制方法。首先,构建基于转鼓转速传感的中低速新能源汽车动力学方程,采集传感信息,然后,... 中低速新能源汽车是常见的交通工具,但是其制动控制存在响应时间长、控制效果差的问题,设计一种基于转鼓转速传感的中低速新能源汽车联合制动系统控制方法。首先,构建基于转鼓转速传感的中低速新能源汽车动力学方程,采集传感信息,然后,考虑开环控制容易导致控制系统的稳定性和鲁棒性差的问题,基于转鼓转速传感的联合制动系统传递函数推导出开环、闭环双传递函数,最后,根据系统传递函数,设计PID控制器的参数,通过PID控制器输出电-液联合制动控制信号,实现汽车联合制动系统控制。实验结果表明:所提方法的速度-位移曲线与现实速度-位移曲线基本一致,加速误差在-0.5 m/s2~0.5 m/s2范围内,平均制动控制响应时间为0.075 s,具有良好的制动控制能力。 展开更多
关键词 转鼓转速传感 联合制动控制 PID控制器 中低速新能源汽车 传递函数 电制动力 液压制动力
下载PDF
多轴分布式电驱动车辆电液复合制动控制研究 被引量:1
15
作者 靳立强 李星辰 +3 位作者 田端洋 刘少杰 刘嘉鑫 解文周 《汽车工程学报》 2024年第2期241-254,共14页
针对多轴分布式电机驱动车辆电液复合制动中易出现的车辆制动抖动问题,提出了一种建压阶段电机制动力修正策略和一种基于前馈-反馈的协调控制策略,分别在建压阶段和其他阶段通过协调复合制动力来解决制动抖动的问题。针对防抱死控制系... 针对多轴分布式电机驱动车辆电液复合制动中易出现的车辆制动抖动问题,提出了一种建压阶段电机制动力修正策略和一种基于前馈-反馈的协调控制策略,分别在建压阶段和其他阶段通过协调复合制动力来解决制动抖动的问题。针对防抱死控制系统与电机制动系统共同作用时的制动矛盾,提出了一种基于PID控制的ABS控制策略,主要通过改变电机制动力来解决制动矛盾的问题。通过TruckSim、Matlab/Simulink及AMESim联合仿真验证,制动冲击度在建压阶段下降了20.66%,在电机退出阶段下降了92.59%,驾驶感觉得到明显改善。而ABS控制策略也可在保证理想滑移率的同时完成制动能量回收;结合整车制动试验,表明协调控制策略在保证制动效果良好的同时实现了制动能量回收,效果显著。 展开更多
关键词 多轴分布式电驱动车辆 电液协调控制 ABS与RBS协调控制 制动能量回收
下载PDF
电动汽车电控液压制动系统CarSim/Simulink联合仿真研究 被引量:2
16
作者 洪诚 李琤 《汽车实用技术》 2024年第5期52-58,共7页
针对某款国产电动汽车的电控液压制动系统,文章基于滑移率的比例-积分-微分(PID)控制提出了防抱死制动系统(ABS)模型,以改善车辆制动性能,提高在对开路面上的制动有效性和安全性。首先,使用Simulink软件建立液压电控制动系统的动力学模... 针对某款国产电动汽车的电控液压制动系统,文章基于滑移率的比例-积分-微分(PID)控制提出了防抱死制动系统(ABS)模型,以改善车辆制动性能,提高在对开路面上的制动有效性和安全性。首先,使用Simulink软件建立液压电控制动系统的动力学模型;然后,基于滑移率设计PID控制器,并通过1/4车辆模型验证其有效性;最后,利用S函数将ABS控制器的Simulink模型输入CarSim平台中,开展CarSim/Simulink双平台联合控制仿真。结果表明,基于滑移率的PID控制的ABS对比无ABS的车辆,制动性能更加优越,在对开路面上制动稳定性更加明显。 展开更多
关键词 ABS 电动汽车 电控液压 汽车动力学 CarSim/Simulink联合仿真 制动性能
下载PDF
集成式电液制动系统自适应压力控制
17
作者 赵健 杜金朋 +2 位作者 朱冰 陈志成 吴坚 《汽车工程》 EI CSCD 北大核心 2024年第8期1479-1488,共10页
针对集成式电液制动系统(integrated electro-hydraulic brake system,IEHB)存在的复杂液压非线性特性和时变摩擦干扰,提出一种自适应压力控制策略。外环压力控制器引入液压特性的动态线性化模型并基于滑模观测器对模型参数实时辨识实... 针对集成式电液制动系统(integrated electro-hydraulic brake system,IEHB)存在的复杂液压非线性特性和时变摩擦干扰,提出一种自适应压力控制策略。外环压力控制器引入液压特性的动态线性化模型并基于滑模观测器对模型参数实时辨识实现对非线性液压特性的自适应。内环伺服控制器采用基于压力的连续摩擦补偿和反步动态面控制应对传动机构摩擦阻碍。硬件在环实验结果表明,与现有的先进级联压力控制相比,设计的压力控制策略在多种工况下均表现出更高的控制精度和鲁棒性,并显著提升了IEHB在不同液压回路结构下的压力控制效果。 展开更多
关键词 车辆工程 集成式电液制动系统 动态线性化 自适应压力控制 硬件在环
下载PDF
基于潮流转移装置的混合储能接入牵引供电系统控制策略研究 被引量:1
18
作者 黄军 《机车电传动》 2024年第1期166-173,共8页
采用单相工频交流制式的电气化铁路具有无污染、运输效率高的优点,但在现有的牵引供电系统中,负序和再生制动能量利用的问题较为突出。因此,文章提出了一种集成混合储能系统的潮流转移拓扑。文章分析了集成混合储能的潮流转移装置的拓... 采用单相工频交流制式的电气化铁路具有无污染、运输效率高的优点,但在现有的牵引供电系统中,负序和再生制动能量利用的问题较为突出。因此,文章提出了一种集成混合储能系统的潮流转移拓扑。文章分析了集成混合储能的潮流转移装置的拓扑结构,研究了削峰、填谷、再生制动和同相运行模式及其能量管理策略;为减少系统损耗,进一步提高系统再生制动能量利用率和削峰填谷的控制精度,文章提出了一种协调控制策略,并采用无源控制的非线性电流控制器提升变流器控制响应速度。仿真结果表明,该系统可以充分利用牵引供电系统的再生制动能量,提高系统中能量流动的灵活性,并且解决了牵引供电系统中的负序问题。 展开更多
关键词 电气化铁路 负序 再生制动能量 混合储能系统 协调控制 仿真
原文传递
基于卡尔曼滤波的改进ADRC风电制动器控制策略研究
19
作者 冯高明 杨展 谭兴国 《陕西科技大学学报》 北大核心 2024年第2期156-163,共8页
为了提高风电制动器的抗干扰能力和控制精度,在传统三闭环系统的基础上,提出改进自抗扰控制并融合卡尔曼滤波算法.在扩张状态观测器中引入速度跟踪情况,将传统的“大带宽、小误差”改进为“小带宽、小误差”,提高观测器的观测效率.在误... 为了提高风电制动器的抗干扰能力和控制精度,在传统三闭环系统的基础上,提出改进自抗扰控制并融合卡尔曼滤波算法.在扩张状态观测器中引入速度跟踪情况,将传统的“大带宽、小误差”改进为“小带宽、小误差”,提高观测器的观测效率.在误差反馈控制率中引入新型指数趋近律的滑模控制,增强控制效果.在电流环中引入卡尔曼滤波算法,降低电流噪声.通过MATLAB/Simulink建立风电制动系统的数学模型,与传统自抗扰控制策略和PID控制策略进行对比分析.结果表明:改进后的控制策略提高了响应速度,降低了启动转矩和电流噪声;制动器在不同工况下均展现出来良好的控制效果和抗干扰能力,提升了系统的鲁棒性和动态性能. 展开更多
关键词 风力发电 电动制动器 改进自抗扰控制 卡尔曼滤波 三闭环控制
下载PDF
车人碰撞中人地接触损伤仿真及防护方法鲁棒性分析
20
作者 邹铁方 刘志旗 +2 位作者 袁湘婷 曹太山 刘朱紫 《汽车工程》 EI CSCD 北大核心 2024年第3期509-519,共11页
人车事故中行人主要与车辆和地面接触而遭受损伤。此前已有大量研究在车辆接触阶段对多体行人模型进行了验证,但对地面接触阶段的验证较少。本文中评估了用于预测车辆撞击后行人运动和地面接触的4个PC-Crash行人模型。通过车辆和地面接... 人车事故中行人主要与车辆和地面接触而遭受损伤。此前已有大量研究在车辆接触阶段对多体行人模型进行了验证,但对地面接触阶段的验证较少。本文中评估了用于预测车辆撞击后行人运动和地面接触的4个PC-Crash行人模型。通过车辆和地面接触的HIC伤害与最近研究中的6个尸体实验数据对比显示,其中PC2014行人模型能很好地预测行人头部损伤,车辆和地面接触HIC的平均误差分别为6.07%和5.85%,数据说明PC2014行人模型可以用于再现人车碰撞事故以及开发未来地面接触伤害防护对策。控制制动防护方法鲁棒性研究显示,在3种行人姿态(奔跑、步行和应急)扰动下,HIC平均降低比例分别为63.2%、57.9%和67.8%,说明控制制动防护方法具有很好的抗行人姿态干扰能力。进一步分析不同姿态下的行人损伤发现,3种步态序列之间均有显著性差异,在应急步态下控制制动防护方法有着更好的抗行人姿态干扰能力;而在奔跑步态序列下,往往可以通过控制制动防护方法产生最低的头地碰撞损伤,表明在使用控制制动防护方法对行人进行保护时须考虑到不同姿态产生的影响,以进一步提高控制制动防护方法的地面伤防护效果。 展开更多
关键词 PC-Crash行人模型 车辆控制制动 行人地面伤 行人姿态扰动 鲁棒性
下载PDF
上一页 1 2 156 下一页 到第
使用帮助 返回顶部