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Typical faults and safety analysis of brake controller for AC locomotive
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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
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High-effciency aircraft antiskid brake control algorithm via runway condition identification based on an on-off valve array 被引量:15
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作者 Dong SUN Zongxia JIAO +2 位作者 Yaoxing SHANG Shuai WU Xiaochao LIU 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2019年第11期2538-2556,共19页
The aircraft antiskid braking system is an important hydraulic system for preventing tire bursts and ensuring safe take-off and landing. The brake system adjusts the force applied on the brake discs by controlling the... The aircraft antiskid braking system is an important hydraulic system for preventing tire bursts and ensuring safe take-off and landing. The brake system adjusts the force applied on the brake discs by controlling the brake pressure. Traditional aircraft antiskid braking systems achieve antiskid performance by controlling the braking pressure with an electrohydraulic servo valve.Because the pilot stage of an electrohydraulic servo valve is easily blocked by carbonized hydraulic oil, the servo valve would become a dangerous weak point for aircraft safety. This paper proposes a new approach that uses an on-off valve array to replace the servo valve for pressure control. Based on this new pressure control component, an efficient antiskid control algorithm that can utilize this discontinuous feature is proposed. Furthermore, the algorithm has the ability to identify the runway circumstances. To overcome the discontinuity in the process of using an on-off valve array, the Filippov framework is introduced. The conditions of convergence of the system are also discussed.The results of the digital simulations and the hardware-in-the-loop(HIL) braking experiments are used to verify the efficiency and stability of the proposed control algorithm. The method also proves that the on-off valve array can replace the servo valve perfectly as a new type of antiskid braking pressure control component. 展开更多
关键词 AIRCRAFT brake Hydraulic system On-off valve array Runway condition identification Servo control
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Electronic Brake-Force Distribution Control Methods of ABS-Equipped Vehicles During Cornering Braking 被引量:5
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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
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Position Control Optimization of Aerodynamic Brake Device for High-speed Trains 被引量:2
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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.
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基于最佳滑移率估计的汽车EMB防抱死控制
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作者 潘公宇 熊浩东 《郑州大学学报(工学版)》 北大核心 2026年第1期58-65,共8页
为了解决传统的逻辑门限式ABS控制方法存在无法充分利用路面利用附着系数以及滑移率波动较大的问题,提出了一种基于最佳滑移率估计的汽车EMB防抱死控制策略。首先,建立轮胎滑移率与路面利用附着系数之间的非线性模型;其次,通过一种分段... 为了解决传统的逻辑门限式ABS控制方法存在无法充分利用路面利用附着系数以及滑移率波动较大的问题,提出了一种基于最佳滑移率估计的汽车EMB防抱死控制策略。首先,建立轮胎滑移率与路面利用附着系数之间的非线性模型;其次,通过一种分段式的估计算法来快速准确地跟踪最佳滑移率;最后,基于最佳滑移率的估计结果,设计了积分滑模控制器,通过精确调节EMB制动力矩和电机制动力矩,使前后轮的滑移率维持在各自的最佳滑移率,保证车辆在不同路面条件下的最佳制动距离。仿真结果表明:所采用的估计算法都能够快速准确识别当前路面的最佳滑移率,估计出的最佳滑移率在稳态时与实际的最佳滑移率的最大误差不超过3%,且积分滑模控制器可以精确控制滑移率保持在最佳滑移率附近,与CarSim内置的ABS控制策略相比,单一路面工况制动总时间缩短了10.8%,制动总距离减少了15.8%,对接路面工况制动总时间缩短了18.0%,制动总距离减少了22.2%。 展开更多
关键词 最佳滑移率 电子机械制动 ABS 估计算法 积分滑模控制
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Longitudinal Control Strategy for Vehicle Adaptive Cruise Control Systems 被引量:2
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作者 吴利军 刘昭度 马岳峰 《Journal of Beijing Institute of Technology》 EI CAS 2007年第1期28-33,共6页
A new longitudinal control strategy for vehicle adaptive cruise control (ACC) systems is presented. The running relationship between the ACC vehicle and the detected target vehicle is described by the relative veloc... A new longitudinal control strategy for vehicle adaptive cruise control (ACC) systems is presented. The running relationship between the ACC vehicle and the detected target vehicle is described by the relative velocity and the deviation between the actual headway distance and the prescribed safety distance. Based on this, two state space models are built and the linear quadratic optimal control theory is used to yield desired velocity for the ACC-equipped vehicle when with the target vehicle detected. By switching among four control modes, the desired velocity profile is designed to deal with different running situations. A velocity controller, which includes a PID controller for throttle openness and a neural network controller for brake application, is developed to achieve the desired velocity profile. The proposed control strategy is applied to a non-linear vehicle model in a simulation environment and is shown to provide the ACC vehicle comfortable ride and satisfying safety. 展开更多
关键词 adaptive cruise control (ACC) linear quadratic throttle/brake control neural network
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Experimental prototyping of the adhesion braking control system design concept for a mechatronic bogie 被引量:1
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作者 Sundar Shrestha Maksym Spiryagin Qing Wu 《Railway Engineering Science》 2021年第1期15-29,共15页
The dynamic parameters of a roller rig vary as the adhesion level changes.The change in dynamics parameters needs to be analysed to estimate the adhesion level.One of these parameters is noise emanating from wheel–ra... The dynamic parameters of a roller rig vary as the adhesion level changes.The change in dynamics parameters needs to be analysed to estimate the adhesion level.One of these parameters is noise emanating from wheel–rail interaction.Most previous wheel–rail noise analysis has been conducted to mitigate those noises.However,in this paper,the noise is analysed to estimate the adhesion condition at the wheel–rail contact interface in combination with the other methodologies applied for this purpose.The adhesion level changes with changes in operational and environmental factors.To accurately estimate the adhesion level,the influence of those factors is included in this study.The testing and verification of the methodology required an accurate test prototype of the roller rig.In general,such testing and verification involve complex experimental works required by the intricate nature of the adhesion process and the integration of the different subsystems(i.e.controller,traction,braking).To this end,a new reduced-scale roller rig is developed to study the adhesion between wheel and rail roller contact.The various stages involved in the development of such a complex mechatronics system are described in this paper.Furthermore,the proposed brake control system was validated using the test rig under various adhesion conditions.The results indicate that the proposed brake controller has achieved a shorter stopping distance as compared to the conventional brake controller,and the brake control algorithm was able to maintain the operational condition even at the abrupt changes in adhesion condition. 展开更多
关键词 Wheel–rail adhesion condition brake controlMechatronics scaled bogie test rig Wheel–rail noiseAcoustic analysis
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熄焦车气压制动系统关键技术研究
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作者 张岩军 程怡安 《煤炭技术》 2026年第1期70-73,共4页
熄焦车行走于焦炉出焦侧水平钢制导轨上,工作环境具有水汽大、粉尘大、温差波动范围大的特点,工况条件十分恶劣。作为接焦、熄焦设备,要求熄焦车具有运行速度快、装载载荷大、运行时间连续等特点。熄焦车制动性能的优劣,对熄焦车的行车... 熄焦车行走于焦炉出焦侧水平钢制导轨上,工作环境具有水汽大、粉尘大、温差波动范围大的特点,工况条件十分恶劣。作为接焦、熄焦设备,要求熄焦车具有运行速度快、装载载荷大、运行时间连续等特点。熄焦车制动性能的优劣,对熄焦车的行车安全及使用性能具有直接的影响。本文对工作在恶劣工况下的熄焦车气压制动系统关键技术进行研究,该技术利用气压实现熄焦车快速制动和精确停车,在恶劣工况下能够满足熄焦车制动性能稳定和可靠的使用要求。 展开更多
关键词 熄焦车 制动系统 气压制动 制动控制 气路系统
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基于PID双闭环控制的电机再生制动系统仿真研究
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作者 许晓明 陶彦清 +2 位作者 任小兰 林小军 李志峰 《建筑机械》 2026年第1期220-225,共6页
随着电动汽车和混合动力汽车的快速发展,电机再生制动技术作为能量回收和提高能效的重要手段,已成为研究热点。文章针对电机再生制动系统展开研究,基于PID控制算法建立了电机调速与再生制动双闭环控制模型,并利用MATLAB/Simulink构建了... 随着电动汽车和混合动力汽车的快速发展,电机再生制动技术作为能量回收和提高能效的重要手段,已成为研究热点。文章针对电机再生制动系统展开研究,基于PID控制算法建立了电机调速与再生制动双闭环控制模型,并利用MATLAB/Simulink构建了仿真平台。通过对比再生制动与复合制动(再生与摩擦制动相结合)的仿真结果,探讨了不同工况下能量回收效率与制动性能的优化策略。研究表明,合理的控制参数设置与电机制动力分配策略不仅能有效提升能量回收率,同时也能保证系统在突变负载下的稳定运行。文章还对存在的不足和未来研究方向进行了讨论,旨在为电机再生制动技术在实际工程中的应用提供理论支持和试验依据。 展开更多
关键词 电机再生制动 PID控制算法 双闭环控制 能量回收
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Control Algorithm of Electric Vehicle in Coasting Mode Based on Driving Feeling 被引量:5
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作者 SUN Daxu LAN Fengchong +1 位作者 ZHOU Yunjiao CHEN Jiqing 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2015年第3期479-486,共8页
Coasting in gear is a common driving mode for the conventional vehicle equipped with the internal combustion engine(ICE), and the assistant braking function of ICE is utilized to decelerate the vehicle in this mode.... Coasting in gear is a common driving mode for the conventional vehicle equipped with the internal combustion engine(ICE), and the assistant braking function of ICE is utilized to decelerate the vehicle in this mode. However, the electric vehicle(EV) does not have this feature in the coasting mode due to the relatively small inertia of the driving motor, so it will cause the driver cannot obtain the similar driving feeling to that of the conventional vehicle, and even a traffic accident may occur if the driver cannot immediately adapt to the changes. In this paper, the coasting control for EV is researched based on the driving feeling. A conventional vehicle equipped with continuously variable transmission(CVT) is taken as the reference vehicle, and the combined simulation model of EV is established based on AVL CRUISE and MATLAB/Simulink. The torque characteristic of the CVT output shaft is measured in coasting mode, and the data are smoothed and fitted to a polynomial curve. For the EV in coasting mode, if the state of charge(SOC) of the battery is below 95%, the polynomial curve is used as the control target for the torque characteristic of the driving motor, otherwise, the required torque is replaced by hydraulic braking torque to keep the same deceleration. The co-simulation of Matlab/Simulink/Stateflow and AVL CRUISE, as well as the hardware-in-loop experiment combined with d SPACE are carried out to verify the effectiveness and the real-time performance of the control algorithm. The results show that the EV with coasting braking control system has similar driving feeling to that of the reference vehicle, meanwhile, the battery SOC can be increased by 0.036% and 0.021% in the initial speed of 100 km/h and 50 km/h, respectively. The proposed control algorithm for EV is beneficial to improve the driving feeling in coasting mode, and it also makes the EV has the assistant braking function. 展开更多
关键词 electric vehicle coasting braking control algorithm engine braking motor braking
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A Novel Braking Control Strategy for Hybrid Electric Buses Based on Vehicle Mass and Road Slope Estimation 被引量:2
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作者 Zijun Liu Shuo Cheng +3 位作者 Jinzhao Liu Qiong Wu Liang Li Huawei Liang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2022年第6期340-350,共11页
Proper braking force distribution strategies can improve both stability and economy performance of hybrid electric vehicles,which is prominently proved by many studies.To achieve better dynamic stable performance and ... Proper braking force distribution strategies can improve both stability and economy performance of hybrid electric vehicles,which is prominently proved by many studies.To achieve better dynamic stable performance and higher energy recovery efficiency,an effective braking control strategy for hybrid electric buses(HEB)based on vehicle mass and road slope estimation is proposed in this paper.Firstly,the road slope and the vehicle mass are estimated by a hybrid algorithm of extended Kalman filter(EKF)and recursive least square(RLS).Secondly,the total braking torque of HEB is calculated by the sliding mode controller(SMC),which uses the information of brake intensity,whole vehicle mass,and road slope.Finally,comprehensively considering driver’s braking intention and regulations of the Economic Commission for Europe(ECE),the optimal proportional relationship between regenerative braking and pneumatic braking is obtained.Furthermore,related simulations and experiments are carried out on the hardware-in-the-loop test bench.Results show that the proposed strategy can effectively improve the braking performance and increase the recovered energy through precise control of the braking torque. 展开更多
关键词 Hybrid electric bus Vehicle mass estimation Road slope estimation Braking control strategy Regenerative braking
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Wide speed range for traction motor in braking force of electric braking control system 被引量:2
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作者 Young-Choon Kim Moon-Taek Cho 《Journal of Central South University》 SCIE EI CAS 2014年第10期3837-3843,共7页
A vehicle stopping method using an electric brake until a traction motor is stopped is studied. At the moment of vehicle stop, electric brake is changed to control mode where torque is reduced at a low speed. Gradient... A vehicle stopping method using an electric brake until a traction motor is stopped is studied. At the moment of vehicle stop, electric brake is changed to control mode where torque is reduced at a low speed. Gradient is controlled by estimating the load torque of motor, thereby traction motor is not rotated after stop. In addition, coasting operation and brake test are performed from normal-opposite operation and start using a small-scale model comprising the inertial load equipment and the power converter. Further, traction motor is made to be equipped with a suspension torque. Pure electric braking that makes traction motor stop by an air brake at the time of stop is also implemented. Constant torque range and constant power range are expanded during braking so that braking force is secured with the electric brakes even in high speed region. Therefore, vehicle reduction effect can be expected by reducing parts related with an air brake which is not used frequently by using a pure electric brake in the M car in wide speed region. Further, maintenance of brake system can be reduced. Besides, ride comfort of passenger in the electric rail car, energy efficiency improvement, and noise reduction effect can be additionally expected. Further, an improved brake method that uses only an electric brake till motor stop is proposed by comparing those in the blending brake that uses an air brake while reducing brake torque at vehicle stop. 展开更多
关键词 wide speed range electric braking control traction motor
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冗余设计与智能交互的底盘域控制技术创新
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作者 杜满胜 刘小云 《汽车电器》 2026年第1期90-92,共3页
随着汽车智能化水平提升,整车对安全、动态响应及舒适性要求愈发严苛。本文以底盘域控制器为核心,围绕冗余设计与闭环智能交互展开研究,通过优化系统架构、设计冗余布局、构建执行器交互机制,实现线控转向、线控制动及半主动悬架的联合... 随着汽车智能化水平提升,整车对安全、动态响应及舒适性要求愈发严苛。本文以底盘域控制器为核心,围绕冗余设计与闭环智能交互展开研究,通过优化系统架构、设计冗余布局、构建执行器交互机制,实现线控转向、线控制动及半主动悬架的联合控制与冗余备份。通过搭建硬件在环测试平台验证表明,双通道冗余设计可有效降低响应时延、提升容错性能,为整车安全管控提供可靠保障。研究可为整车电子架构集成改进及多系统协同技术应用提供参考。 展开更多
关键词 底盘域控制器 冗余设计 闭环控制 线控转向 线控制动
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Sensor fault-tolerant observer applied in UAV anti-skid braking control under control input constraint 被引量:2
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作者 Hui Sun Jianguo Yan +1 位作者 Yaohong Qu Jie Ren 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2017年第1期126-136,共11页
This paper proposes a method for addressing the problem of sensor fault-tolerant control (FTC) for anti-skid braking systems (ABSs). When the wheel velocity sensor of the ABS for unmanned aerial vehicles (UAVs) become... This paper proposes a method for addressing the problem of sensor fault-tolerant control (FTC) for anti-skid braking systems (ABSs). When the wheel velocity sensor of the ABS for unmanned aerial vehicles (UAVs) becomes faulty, wheel velocity failure and feedback instability may occur. Firstly, a fault diagnosis and isolation (FDI) method based on a sliding mode observer approach is introduced to detect and isolate the fault of the sensor. When the wheel velocity sensor is in healthy conditions, the observer works in a diagnosis mode. If faults occur in the sensor, it acts as a wheel velocity estimator. Secondly, an FTC strategy, adopting a feedback compensation structure, is designed with input control constraints. In addition, based on the FDI result, a terminal sliding mode (TSM) controller is designed to guarantee that slip-ratio tracks its appropriate reference values in situations where runways change conditions during landing. The control system switches automatically from control using a wheel velocity sensor to sensorless control mode, so the observer-based FTC scheme is established. It is logical that the ABS keeps observed-state and remains stable when the wheel velocity sensor is broken and during external disturbance. Finally, simulation results show the effectiveness of the proposed method. © 1990-2011 Beijing Institute of Aerospace Information. 展开更多
关键词 BRAKING control systems Failure analysis Fault tolerance Feedback Sensorless control Sliding mode control Unmanned aerial vehicles (UAV) Velocity WHEELS
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Pressure-tracking control of a novel electro-hydraulic braking system considering friction compensation 被引量:13
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作者 雍加望 高峰 +1 位作者 丁能根 HE Yu-ping 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第8期1909-1921,共13页
This work presents an integrated pressure-tracking controller for a novel electro-hydraulic brake(EHB) system considering friction and hydraulic disturbances. To this end, a mathematical model of an EHB system, consis... This work presents an integrated pressure-tracking controller for a novel electro-hydraulic brake(EHB) system considering friction and hydraulic disturbances. To this end, a mathematical model of an EHB system, consisting of actuator and hydraulic sub-systems, is derived for describing the fundamental dynamics of the system and designing the controller. Due to sensor inaccuracy and measurement noise, a Kalman filter is constructed to estimate push rod stroke for generating desired master cylinder pressure. To improve pressure-tracking accuracy, a linear friction model is generated by linearizing the nonlinear Tustin friction model, and the unmodeled friction disturbances are assumed unknown but bounded. A sliding mode controller is designed for compensating friction disturbances, and the stability of the controller is investigated using the Lyapunov method. The performance of the proposed integrated controller is evaluated with a hardware-in-the-loop(HIL) test platform equipped with the EHB prototype. The test results demonstrate that the EHB system with the proposed integrated controller not only achieves good pressure-tracking performance, but also maintains robustness to friction disturbances. 展开更多
关键词 electro-hydraulic brake brake-by-wire Kalman filter sliding mode control pressure-tracking friction compensation
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Research on Electro Hydraulic Proportional Control for Heavy Vehicle Blend Braking System 被引量:2
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作者 徐鸣 《Defence Technology(防务技术)》 SCIE EI CAS 2009年第1期6-10,共5页
A blend braking system of heavy vehicle was proposed.The main control part of the system is the electro hydraulic proportional servo valve.A nonlinear model of brake cylinder controlled by the valve was deduced throug... A blend braking system of heavy vehicle was proposed.The main control part of the system is the electro hydraulic proportional servo valve.A nonlinear model of brake cylinder controlled by the valve was deduced through the analysis of its control property and system feature.The transfer function of the system was also proposed,and the hydraulic inherent frequency and the PID closed-loop system feature were calculated.The simulated result is consistent with those tested in the bench and on the site with 50 t heavy vehicle.The experimental result shows that the control method has quick response and high precision. 展开更多
关键词 汽车制动系统 电液比例控制 重型车辆 共混 液压固有频率 比例伺服阀 非线性模型 控制系统
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Aircraft Electric Anti-skid Braking System Based on Fuzzy-PID Controller with Parameter Self-adjustment Feature 被引量:5
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作者 魏小辉 尹乔之 +2 位作者 聂宏 张明 陶周亮 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2014年第1期111-118,共8页
The principle of electric braking system is analyzed and an anti-skid braking system based on the slip rate control is proposed.The fuzzy-PID controller with parameter self-adjustment feature is designed for the anti-... The principle of electric braking system is analyzed and an anti-skid braking system based on the slip rate control is proposed.The fuzzy-PID controller with parameter self-adjustment feature is designed for the anti-skid braking system.The dynamic model of aircraft ground braking is established in the simulation environment of MATLAB/SIMULINK,and simulation results of dry runway and wet runway are presented.The results show that the fuzzy-PID controller with parameter self-adjustment feature for the electric anti-skid braking system keeps working in the state of stability and the brake efficiencies are increased to 93%on dry runway and 82%on wet runway respectively. 展开更多
关键词 electric braking system slip rate anti-skid braking fuzzy-PID controller
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Lateral Stability Improvement of Car-Trailer Systems Using Active Trailer Braking Control 被引量:1
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作者 Tao Sun Yuping He Ebrahim Esmailzadeh Jing Ren 《Journal of Mechanics Engineering and Automation》 2012年第9期555-562,共8页
An active trailer braking controller to improve the lateral stability of car-trailer systems is presented. The special and complex structures of these types of vehicles exhibit unique unstable motion behavior, such as... An active trailer braking controller to improve the lateral stability of car-trailer systems is presented. The special and complex structures of these types of vehicles exhibit unique unstable motion behavior, such as the trailer swing, jack-knifing and rollover. These unstable motion modes may lead to fatal accidents. The effects of passive mechanical parameters on the stability of car-trailer systems have been thoroughly investigated. Some of the passive parameters, such as the center of gravity of the trailer, may be drastically varied during various operating conditions. Even for an optimal design of a car-trailer system, based on a specific passive parameter set, the lateral stability cannot be guaranteed. In order to improve the lateral stability of car-trailer systems, an active trailer braking controller is designed using the Linear Quadratic Regular (LQR) technique. To derive the controller, a vehicle model with 3 Degrees Of Freedom (DOF) is developed to represent the car-trailer system. A single lane-change maneuver has been simulated to examine the performance of the controller and the numerical results are compared with those of the baseline design. The benchmark investigation indicates that the optimal controller based on the LQR technique can effectively improve the high-speed lateral stability of the car-trailer system. 展开更多
关键词 Car-trailer systems active trailer braking control LQR (linear quadratic regular) controller high-speed lateral stability.
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OPTIMAL CONTROL OF BRAKING MOMENT FOR A WHEEL AND TYRE 被引量:1
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作者 Zhang Ling(Xi’an Jiaotong University, Xi’an, China, 710049)Zhu Depei Zhang Yu(Northwestern Polylechnical University, Xi’an, China, 710072) 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 1996年第1期48-54,共7页
in the design of the antiskid braking system (ABS) of an aircraft, the braking moment is one of the most important parameters, because it influences not only the deceleration and the taxiing distance of an aircraft, b... in the design of the antiskid braking system (ABS) of an aircraft, the braking moment is one of the most important parameters, because it influences not only the deceleration and the taxiing distance of an aircraft, but also the strength and the fatigue life of the landing gear. Furthermore, the determination of braking moment will be concerned in the reasonableness of the demands proposed for the material design of a brake. For this reason, through setting up the mechanical model of a wheel and tyre under taxiing and braking, dynamic simulations on the optimal closed-loop control of braking moment are carried out by means of the nonlinear control theory. The simulation results show that the difference between the real output of the ABS and the expected one can tend to the minimum under the optimal control. And also, this optimal control can guarantee the braking moment to change smoothly. 展开更多
关键词 WHEELS aircraft tires BRAKING MOMENTS optimal control simulation antiskid devices
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Hybrid Operation of Fault Current Limiter and Thyristor Controlled Braking Resistor 被引量:1
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作者 Masaki Yagami Junji Tamura 《Journal of Energy and Power Engineering》 2012年第4期601-608,共8页
The effectiveness of a combination of fault current limiter and thyristor controlled braking resistor on power system stability enhancement and damping turbine shaft torsional oscillations has been studied. If both de... The effectiveness of a combination of fault current limiter and thyristor controlled braking resistor on power system stability enhancement and damping turbine shaft torsional oscillations has been studied. If both devices operate at the same bus, the stabilization control scheme can be carried out continuously and with flexibility. As a result, the fault currents are limited, and the generator disturbances and the turbine shaft torsional oscillations are converged quickly. In this paper, the effectiveness of the combination of both devices has been demonstrated by considering 3LG (three-lines-to-ground) fault in a two-machine infinite bus system. Also, temperature rise effect of both devices with various resistance values and weights has been demonstrated. Simulation results indicate a significant power system stability enhancement and damping turbine shaft torsional oscillations as well as with allowable temperature rise. 展开更多
关键词 Fault current limiter thyristor controlled braking resistor fault current power system stability turbine shaft torsional oscillation temperature rise effect.
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