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1.
双向自增力式制动器摩擦模型的研究   总被引:1,自引:0,他引:1  
为了科学准确地描述双向自增力式制动器的摩擦系数和速度温度等因素间的关系。综合考虑静摩擦到动摩擦非线性阶段,动摩擦速度稳态阶段以及动摩擦随温度变化阶段,建立了制动器制动过程的摩擦模型,并用仿真曲线与制动过程曲线对比,验证了摩擦模型。  相似文献   

2.
鉴于传统电子液压制动系统连续制动易产生"热衰退"现象,结构缺陷导致的制动响应慢,制动系统与电控系统衔接差等缺点,提出了一种基于混杂自动机模型的电磁与摩擦集成制动方法。首先分析集成制动器制动时的工作特点以及不同情况下对应的工作模式(纯电磁制动、纯摩擦制动以及集成制动),并确定3种制动模式的切换条件,通过逻辑门限算法将其实现。根据制动时车辆既具有连续运动状态又有离散状态的混杂特性,使用MATLAB/Stateflow建立基于制动模式切换系统的推广自动机模型,并根据制动模式切换控制策略,对3种制动模式切换进行试验,验证制动模式切换控制策略的合理性。最后选取车辆制动初速度为28 m·s-1的直线制动工况,分别在高附着系数(0.85)以及低附着系数(0.3)的路面条件下,通过试验平台对控制算法和制动系统性能进行试验验证。研究结果表明:所提出的汽车混杂理论模型以及优化方法在在低附着系数(0.3)路面条件下,集成制动方法较传统液压制动系统缩短5.12%的制动距离,缩短制动时间0.3 s;在高附着系数(0.85)路面条件下,集成制动方法较传统液压制动系统缩短5.66%的制动距离,缩短制动时间0.2 s,能有效提高制动效能。  相似文献   

3.
It is necessary to guarantee the proper brake force to stop a train safely in a limited distance and o adjust its speed. Currently, most trains are run by electrical power and have a combined electrical and mechanical (friction) braking system. The mechanical brake force is determined by many parameters, such as the friction coefficient of the brake disc and pad, the pressure in the brake cylinder, the brake cylinder’s cross sectional area and the brake linkage ratio. In general, the friction coefficient data of the brake disc and pad have been taken through a dynamo-test in a laboratory, but these data might not be well matched with real data under operating conditions because of the difference in data acquisition conditions. The present study examined two methodologies that can measure the friction coefficient of the brake pad and disc based on a train’s real operating conditions. The first method was the direct method, which measured the brake force and clamping force applied on the mechanical brake by using strain gauges installed on the brake to calculate the friction coefficient. The second was an indirect method that obtained the friction coefficient by using the weight of the train and the equivalent brake force. Those variables were calculated from the longitudinal dynamic characteristics, such as resistance to motion, gradient resistance and curved resistance. These two methodologies were used to obtain the disc-pad friction coefficient for the mechanical brakes of a Korean high-speed train (HSR350x).  相似文献   

4.
建立了产生制动尖叫的钳盘式制动器各主要零件的有限元模型,并通过集成构建了制动器总成的接触摩擦耦合有限元模型,计算了制动器振动系统的复特征值分布和模态,分析了可能产生制动尖叫的不稳定模态,并与制动噪声台架试验统计结果进行了对比,结果表明所建模型能够较好地预测出制动器发生制动尖叫的倾向;分析了各零件的振动模态对产生制动尖叫不稳定模态的贡献大小,揭示出有尖叫倾向的不稳定模态是由子结构未耦合时的多阶振动模态叠加而成;分析讨论了摩擦因数、摩擦片结构及其背板阻尼对制动尖叫的影响,为控制制动尖叫提供了途径。  相似文献   

5.
Modern hybrid electric vehicles employ electric braking to recuperate energy during deceleration. However, currently anti-lock braking system (ABS) functionality is delivered solely by friction brakes. Hence regenerative braking is typically deactivated at a low deceleration threshold in case high slip develops at the wheels and ABS activation is required. If blending of friction and electric braking can be achieved during ABS events, there would be no need to impose conservative thresholds for deactivation of regenerative braking and the recuperation capacity of the vehicle would increase significantly. In addition, electric actuators are typically significantly faster responding and would deliver better control of wheel slip than friction brakes. In this work we present a control strategy for ABS on a fully electric vehicle with each wheel independently driven by an electric machine and friction brake independently applied at each wheel. In particular we develop linear and nonlinear model predictive control strategies for optimal performance and enforcement of critical control and state constraints. The capability for real-time implementation of these controllers is assessed and their performance is validated in high fidelity simulation.  相似文献   

6.
A cooperative control algorithm for an in-wheel motor and an electric booster brake is proposed to improve the stability of an in-wheel electric vehicle. The in-wheel system was modeled by dividing it into motor and mechanical parts, and the electric booster brake was modeled through tests. In addition, the response characteristics of the in-wheel system and the electric booster brake were compared through a frequency response analysis. In the cooperative control, the road friction coefficient was estimated using the wheel speed, motor torque, and braking torque of each wheel, and the torque limit of the wheel to the road was determined using the estimated road friction coefficient. Based on the estimated road friction coefficient and torque limit, a cooperative algorithm to control the motor and the electric booster brake was proposed to improve the stability of the in-wheel electric vehicle. The performance of the proposed cooperative control algorithm was evaluated through a hardware-in-the-loop simulation (HILS). Furthermore, to verify the performance of the proposed cooperative control algorithm, a test environment was constructed for the anti-lock braking system (ABS) hydraulic module hardware, and the performance of the cooperative control algorithm was compared with that of the ABS by means of a HILS test.  相似文献   

7.
有效、快速的道路状况自动识别对于提高ABS性能具有重要意义。通过仿真试验分析,提出了一种比传统方法更快更高效的路面识别方法,并设计了以滑移率为控制目标的ABS模糊神经网络控制器。结合车辆模型熏对单一附着系数路面和变附着系数路面进行了ABS制动模拟试验。结果表明熏基于路面自动识别ABS模糊控制系统能快速、准确判断出路面状况的变化熏自动调整、优化控制器控制参数熏使车辆获得最大地面制动力,与传统利用车身加速度进行路面识别的逻辑门限控制器相比,该控制器反应更灵敏,控制更精确。  相似文献   

8.
Because of the damping and elastic properties of an electrified powertrain, the regenerative brake of an electric vehicle (EV) is very different from a conventional friction brake with respect to the system dynamics. The flexibility of an electric drivetrain would have a negative effect on the blended brake control performance. In this study, models of the powertrain system of an electric car equipped with an axle motor are developed. Based on these models, the transfer characteristics of the motor torque in the driveline and its effect on blended braking control performance are analysed. To further enhance a vehicle's brake performance and energy efficiency, blended braking control algorithms with compensation for the powertrain flexibility are proposed using an extended Kalman filter. These algorithms are simulated under normal deceleration braking. The results show that the brake performance and blended braking control accuracy of the vehicle are significantly enhanced by the newly proposed algorithms.  相似文献   

9.
目前,国内重型汽车刮水系统中的电机大都由组合开关上的刮水开关直接控制,电机经由线束和刮水开关形成"刹车"回路,实现电机的回位,电机"刹车"时产生的大电流极易在组合开关的触点间产生拉弧并烧蚀触点,故使组合开关的故障率居高不下。在满足电机正常控制的前提下,降低组合开关的故障率,本文介绍一种控制信号与驱动信号相分离且刮水器采用摩擦消耗来停车的刮水控制系统及电机控制方法。  相似文献   

10.
为改善制动防抱死系统(ABS)的控制效果,进行了大量实车道路试验,通过深入分析试验数据,提出了一种基于车身减速度估计的路面识别方法,从理论上证明了该方法的合理性,并结合试验数据说明了该方法的原理。将路面识别模块嵌入到ABS软件中,以捷达GTX轿车为试验车进行了干路面和雪路面工况下的实车试验。结果表明:基于车身减速度估计的路面识别方法能准确识别路面类型,ABS可根据路面识别结果采取不同的控制算法,最终改善了制动控制效果,提高了ABS对路面的适应性。  相似文献   

11.
This paper deals with friction-induced vibration of a disc brake system with a constant friction coefficient. A linear, lumped, and distributed parameter model to represent the floating caliper disc brake system is proposed. The complex eigenvalues are used to investigate the dynamic stability, and, in order to verify simulations which are based on the theoretical model, an experimental modal test and dynamometer test are performed. The comparison of experimental and theoretical results shows good agreement, and the analysis indicates that modal coupling due to friction forces is responsible for disc brake squeal. Also, squeal type instability is investigated, using a parametric analysis. This indicates which parameters have influence on the propensity of brake squealing. This is helpful for validating the analysis model and establishing confidence in the experimental results of the modified system. These results may also be useful during system development or diagnostic analysis.  相似文献   

12.
汽车ASR系统控制算法及其硬件在环仿真研究   总被引:1,自引:0,他引:1  
研究了以节气门开度调节为主、制动干预为辅的汽车ASR控制算法.以常用节气门开度调节算法为基础,提出了自适应PID控制算法.制动干预采用传统的逻辑门限值法.为保证车辆加速的方向稳定性,研究了制动干预时的横摆力矩估算法,并根据横摆力矩限制制动压力来防止车辆的横摆运动.基于上述算法编写了程序代码写入自行开发的ECU,采用dSPACE硬件在环仿真系统进行验证.仿真结果表明控制算法行之有效.  相似文献   

13.
智能电动汽车的发展对制动系统的主动制动和再生制动能力提出了更高的要求。配备真空助力器的传统制动系统难以满足智能电动汽车的需求,因此逐渐被线控制动系统所取代。为提高线控制动系统的集成度与解耦能力,提出了一种新型集成式电液制动系统(Integrated Braking Control System,IBC),能够实现主动制动、再生制动、失效备份等功能。作为机-电-液耦合的高集成度系统,IBC具有复杂的非线性特性和动态摩擦特性,对制动系统压力的精确控制提出了挑战。为了提高IBC制动压力动态控制精度,提出了一种基于集成式电液制动系统的主动制动压力精确控制方法。首先,介绍了IBC的结构原理和控制架构。随后针对液压系统的迟滞特性和传动机构的摩擦特性进行建模与测试。然后基于系统的强非线性特性,提出了主动制动三层闭环级联控制器,其中压力控制层采用液压特性前馈与变增益反馈结合的控制策略,伺服层控制器设计考虑了机构惯性补偿与摩擦补偿,电机控制层采用矢量控制并进行了电压前馈解耦。最后,基于dSPACE设备搭建了硬件在环(Hardware-in-the-loop,HiL)试验台对主动压力控制方法进行验证。结果表明:所提出的压力控制方法能控制制动系统压力快速精确跟随期望压力,使动态压力跟随误差控制在0.4 MPa之内,稳态压力误差控制在0.1 MPa之内。  相似文献   

14.
文章基于能量磨损机理提出了一种汽车制动摩擦片磨损寿命预测的方法,对车辆制动安全性以及摩擦材料利用率的提升具有一定的现实意义。以车辆制动系统中的摩擦片为研究对象,在制动盘冷却试验基础上建立制动摩擦副热力学模型,旨在探明不同工况下摩擦副热力学特征的变化规律。根据能量磨损机理研究制动温度对材料磨损量的影响关系,结合温度分布特征与摩擦材料磨损率提出摩擦片磨损量的评价标准,建立制动摩擦片的磨损寿命预测模型。基于典型公路道路试验路谱的动力学参数进行摩擦片磨损寿命预测,与试验结果相比其磨损寿命预测具有较好的一致性,为汽车制动系统参数设计及制动摩擦材料寿命研究提供了指导依据。  相似文献   

15.
针对重型载货汽车因气压制动系统发生管路破裂、机械故障或热衰退导致制动效能下降且不易察觉从而引发严重交通事故的问题,提出基于主成分分析降维(PCA降维)和马尔可夫模型的气压制动系统危险状态识别方法。考虑到三轴载货汽车双回路制动系统的结构复杂性以及制动过程制动踏板动作、系统压力建立和实现车辆减速具有明显的时序性特点,首先采用PCA降维的方法对系统状态进行辨识;然后运用驾驶人制动意图与制动系统响应的双层隐形马尔可夫模型对系统状态进行识别。受驾驶人习惯影响制动踏板作用瞬间辨识度低,采用混合高斯聚类法提取不同制动意图时制动保持阶段数据建立制动意图识别模型和系统响应识别模型,通过二者匹配程度判定系统状态。最后,分别依据实车试验数据对模型进行离线训练和在线辨识验证。试验结果表明:系统正常状态下,基于PCA降维和马尔可夫模型相结合的识别方法能够准确、有效地识别制动系统状态;制动管路断开压力降低状态下,PCA降维方法能够及时有效识别其危险状态。  相似文献   

16.
目前在进行制动系统设计过程中常常借鉴标杆车的设计,标杆车的整车参数与预研车辆的参数存在一定的不同,容易造成预研车辆制动系统的制动疲软、制动时温度过高、摩擦片磨损加速等情况,而正向设计和匹配校核可以很好的避免这些情况。本文以某轻微载货车为研究对象,介绍了一种正向设计制动系统参数的方法,并进行校核计算,确认制动系统满足设计要求和法规。  相似文献   

17.
周志刚  隋洪波 《汽车技术》2003,(1):28-29,42
对盘式制动片的生产工艺作了简要的阐述,在此基础上分析了影响摩擦材料稳定性的因素,同时分析了这些因素给盘式制动片在制动过程中所带来的影响。指出了烧蚀工艺在保证摩擦材料的热稳定性方面的重要作用,并对烧蚀工艺作了进一步分析。介绍了新研制的我国首台烧蚀机的结构、主要技术参数及其工作原理,并对烧蚀机的温度控制原理进行了详细介绍。  相似文献   

18.
Vehicle traction control system has been developed to enhance the traction capability and the direction stability of the driving wheels through the tyre slip ratio regulation. Under normal situations, if the tyre slip ratio exceeds a certain threshold, the slip ratio of the driving wheel is regulated by the coupled interaction of the engine torque and the active brake pressure. In order to obtain the best driving performance on a road under complicated friction conditions, the driving torque and the active brake pressure, need to be decoupled and adjusted to avoid penalisation of each other. In this paper, a coordinated cascade control method with two sliding-mode variable structure controllers is presented. In this control method, the driving wheel slip ratio is regulated by adjusting the engine torque and the wheel brake pressure. Through the sliding-mode controller, the engine torque is tuned to achieve the maximum driving acceleration and then the active brake pressure is applied to the slipped wheel for further modification of the wheel slip ratio. The advantage of this control method is that through proper regulation, the conflict between the two control inputs could be avoided. Finally, the simulation results validate the effectiveness of the proposed method.  相似文献   

19.
盘式制动器的制动振动噪声是一个复杂的非线性动力学问题。文章利用有限元软件建立了基于面接触的有限元模型,克服简单利用弹簧来模拟接触的不足,通过复特征值分析预测制动噪声。通过改变摩擦因数、制动力、阻尼及温度等参数,建立了符合实际工况的制动器有限元模型,并分析这些参数对系统稳定性的影响。结果表明降低温度、减小摩擦因数、减小制动力和增大阻尼可以减小制动器的制动噪声。  相似文献   

20.
抑制制动器振动噪声的阻尼方法的探讨   总被引:1,自引:4,他引:1  
张芳  管迪华 《汽车工程》2003,25(3):264-268
针对在盘式制动器制动块底板上粘贴一层阻尼层(Insulating Shim)的阻尼处理方法,首先指出制动块底板上阻尼层的减振机制在于粘弹性材料在接触面间表现出的摩擦作用,尤其取决于材料本身的迟滞效应。然后.定量分析了阻尼层对制动器噪声的抑制效果;利用能量等效原理将接触摩擦转换成系统中粘性阻尼后进行特征分析.考察系统稳定性。  相似文献   

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