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1.
针对目前滑移率控制的鲁棒性、复杂性与实际应用之间的矛盾,提出基于线性自抗扰控制的ABS滑移率控制方法。首先,对建立的ABS模型进行动态补偿线性化;接着,设计了以观测带宽为参数的扩张状态观测器和以控制带宽为参数的动态补偿控制器,并通过在线估计和补偿未知扰动,提高了系统的鲁棒性;然后,优化带宽系数,实现滑移率零稳态误差的跟踪;最后,通过仿真,验证ABS滑移率的线性自抗扰控制方法的可行性和有效性。结果表明,该方法不仅不依赖于模型,参数调节简单,且具有容错性,在产生噪声和未知扰动时仍能有效跟踪最佳滑移率;滑移率控制器会受ABS制动系统带宽的影响而出现高频振荡现象,在低附着路面上尤为严重,因此ABS设计须充分考虑执行器带宽对ABS滑移率控制的影响。  相似文献   

2.
文章首先分析了车辆制动系统的主要结构,并建立了其主要功能模块的数学模型;而后在对系统可观测性论证的基础上,将神经网络理论方法和滑模控制理论方法相融合,设计一种基于滑移率的智能滑模控制器,提出了车轮最佳滑移率的离线辨识方法;并将智能滑模控制器和最佳滑移率的离线辨识方法应用于改善车辆ABS系统刹车性能,提高安全控制效果上。对单轮系统车辆的仿真表明:所设计的控制器控制效果具有较强的鲁棒性,无论何种路面车速如何相对于普通的滑模控制器,该智能滑模控制器都能更好地控制车辆使滑移率保持在更佳的数值,从而提高了制动效率,缩短了刹车时间缩小了制动距离。  相似文献   

3.
基于路面附着系数曲线的最佳滑移率计算方法   总被引:4,自引:0,他引:4  
滑模控制应用于ABS系统中可较好地跟踪任意指定滑移率,但最佳滑移率却随着路面情况而变化。从单轮制动时动力学模型着手,提出了基于附着系数曲线求取最佳滑移率的防抱死制动方法,间接实现了滑模控制器对最佳滑移率的跟踪控制,并通过计算机仿真,验证了此方法的可行性和有效性。  相似文献   

4.
线控制动系统防抱死特性模糊控制方法的仿真研究   总被引:2,自引:1,他引:2  
林逸  沈沉  王军 《公路交通科技》2006,23(10):124-127
作者研究分析了直接影响汽车行驶安全性能的汽车制动系统的重要组成部分,阐述了以油或空气作为传力介质的传统制动系统必将被全电的制动系统——线控制动系统所取代,线控制动系统是未来制动系统的发展方向。介绍了线控制动系统的分类、结构和工作原理;建立了线控制动系统和制动执行器的数学模型,以1/4车辆模型为研究对象,设计了模糊控制器,并在Matlab/Simulink下进行了仿真分析。仿真结果表明,模糊控制对线控制动系统的防抱死特性取得了理想的控制效果。  相似文献   

5.
在Matlab/Simulink中建立一种两轮的汽车动力模型,以自适应模糊PID和道路识别控制器作为控制模块,通过在高低附着路面和高低附着对接路面进行紧急制动仿真的研究。仿真结果表明道路识别控制器能够快速准确的识别路面不同附着路面最优滑移率,自适应模糊PID控制的ABS相于常规制动性能有了很大程度的提高,具有在线自整定参数的特点,具有很好的稳定性、适应性和鲁棒性。  相似文献   

6.
汽车防抱死制动系统(Anti-lock Braking System,ABS)的作用是确保汽车制动时行驶方向的稳定性、可靠性,但是目前仍存在非线性、时变性以及参数不确定性等问题。为保证汽车制动行驶过程中的操纵稳定性和安全性,进一步实现各工况下防抱死制动系统的优化控制,以影响整车稳定的变量滑移率为研究对象,分析所设计策略的控制效果。搭建汽车动力学模型、制动系统模型、轮胎模型和滑移率模型等主要模型,设计基于滑移率的ABS二阶非线性自抗扰控制器。运用MATLAB/Simulink软件对基于自抗扰控制(Active Disturbance Rejection Control,ADRC)的ABS制动过程和基于模糊PID控制的ABS制动过程进行仿真,对比研究最佳滑移率、载荷、水泥-冰对接路面、扰动等对制动过程中的轮速、车速以及滑移率等动态性征反映的稳定性和抗扰能力的影响,同时研究其对最终制动距离和最终制动时间反映的制动性能的影响。最后,将自抗扰控制器和模糊PID控制器装配于试验车辆的ABS,进行水泥路面和冰-水泥对接路面制动过程的实车试验。研究结果表明:基于二阶非线性自抗扰控制算法的ABS制动的最终制动距离和最终制动时间更短、制动效果更优,制动过程中的轮速、车速和滑移率在响应速度、稳定性和抗扰能力等方面均更佳;试验结果与仿真结果吻合,证明了仿真模型及其仿真结果的可行性和正确性。  相似文献   

7.
基于电子液压制动系统的线控和解耦特性,提出了一种在常规ABS失效时,通过主动调节主缸液压力实现制动防抱死冗余控制的算法。首先分析防抱死冗余功能定义,设计控制策略;然后,采用串级控制理论设计滑移率控制器,内环调节制动液压力,外环跟踪车轮目标滑移率;最后,通过硬件在环试验优化控制器参数,并在高附和低附路面上进行实车算法验证。结果表明,算法能够较好地实现车轮防抱死,在常规ABS失效时保证车辆的稳定性,提高车辆安全性。  相似文献   

8.
针对汽车制动的特点以及汽车防抱死制动系统的性能要求,建立了汽车的数学模型,提出一种模糊神经网络的自适应控制方案,构建了基于模糊神经网络的控制器和辨识器的结构模型。通过对网络参数的离线训练得出其初值,在控制过程中对网络参数进行在线微调,实现对汽车制动过程的有效控制。仿真结果表明:在不同的路面,汽车均能保持在最佳滑移率附近进行制动,制动时间及距离比较理想,满足ABS的安全性能要求。  相似文献   

9.
针对汽车线控电液制动系统建立了单轮车辆模型,研制了一种新的状态观测器对车速进行估算,试验结果表明该方法正确实用.采用切换增益模糊调节的滑模控制算法对非线性时变的车辆实施基于最佳滑移率的制动控制,在Matlab/Simulink中的仿真结果和验证试验都表明在汽车线控制动系统应用该算法是可行、有效的,在该算法的控制下汽车可获得比一般滑模控制更好的制动性能.  相似文献   

10.
在汽车防包制动系统中,关键的问题是要识别汽车行驶在各种路面条件下的最佳滑移率。本文总结了识别最佳滑移率的几种方法,斜率法和模糊法要先进行路面状况识别;μ传感器法是用硬件直接测量轮胎的受力;门限值法利用最佳滑移率处减速度的变化率突变的特点来确定。  相似文献   

11.
A robust control algorithm for an anti-lock brake system is proposed. The method used is based on static-state feedback of longitudinal slip and does not involve controller scheduling with changing vehicle speed or road adhesion coefficient estimation. An improvement involving scheduling of longitudinal slip reference with longitudinal acceleration measurement is included. Electromechanical braking actuators are used in simulations, and the algorithm used in this study is shown to have high performance on roads with constant and varying adhesion coefficients, displaying nice robustness properties against large vehicle speed and road adhesion coefficient variations. Guidelines are provided for tuning controller gains to cope with unknown actuator delay and measurement noise.  相似文献   

12.
A hierarchical control structure is a more suitable structural scheme for integrated chassis control. Generally, this type of structure has two main functions. The upper layer manages global control and force allocation, while the bottom layer allocates realized forces with 4 independent local tire controllers. The way to properly allocate these target forces poses a difficult task for the bottom layer. There are two key problems that require attention: obtaining the nonlinear time-varying coefficient of friction between the tire and different road surfaces and accurately tracking the desired forces from the upper layer. This paper mainly focuses on longitudinal tire-road friction allocation and control strategies that are based on the antilock braking system (ABS). Although it is difficult to precisely measure longitudinal tire-road friction forces for frequently changing road surface conditions, they can be estimated with a real-time measurement of brake force and angular acceleration at the wheels. The Magic Formula model is proposed as the reference model, and its key parameters are identified online using a constrained hybrid genetic algorithm to describe the evolution of tire-road friction with respect to the wheel slip. The desired wheel slip, with respect to the reference tire-road friction force from the top layer, is estimated with the inverse quadratic interpolation method. The tire-road friction controller of the extended anti-lock braking system (Ext-ABS) is designed through use of the nonlinear sliding mode control method. Simulation results indicate that acceptable modifications to changes in road surface conditions and adequate stability can be expected from the proposed control strategy.  相似文献   

13.
This paper presents a regenerative anti-lock braking system control method with road detection capability. The aim of the proposed methodology is to improve electric vehicle safety and energy economy during braking maneuvers. Vehicle body longitudinal deceleration is used to estimate a road surface. Based on the estimation results, the controller generates an appropriate braking torque to keep an optimal for various road surfaces wheel slip and to regenerate for a given motor the maximum possible amount of energy during vehicle deceleration. A fuzzy logic controller is applied to fulfill the task. The control method is tested on a four in-wheel-motor drive sport utility electric vehicle model. The model is constructed and parametrized according to the specifications provided by the vehicle manufacturer. The simulation results conducted on different road surfaces, including dry, wet and icy, are introduced.  相似文献   

14.
Functions of anti-lock braking for full electric vehicles (EV) with individually controlled wheel drive can be realized through conventional brake system actuating friction brakes and regenerative brake system actuating electric motors. To analyze advantages and limitations of both variants of anti-lock braking systems (ABS), the presented study introduces results of experimental investigations obtained from proving ground tests of all-wheel drive EV. The brake performance is assessed for three different configurations: hydraulic ABS; regenerative ABS only on the front axle; blended hydraulic and regenerative ABS on the front axle and hydraulic ABS on the rear axle. The hydraulic ABS is based on a rule-based controller, and the continuous regenerative ABS uses the gain-scheduled proportional-integral direct slip control with feedforward and feedback control parts. The results of tests on low-friction road surface demonstrated that all the ABS configurations guarantee considerable reduction of the brake distance compared to the vehicle without ABS. In addition, braking manoeuvres with the regenerative ABS are characterized by accurate tracking of the reference wheel slip that results in less oscillatory time profile of the vehicle deceleration and, as consequence, in better driving comfort. The results of the presented experimental investigations can be used in the process of selection of ABS architecture for upcoming generations of full electric vehicles with individual wheel drive.  相似文献   

15.
车辆防抱系统鲁棒控制的研究   总被引:7,自引:0,他引:7  
程军 《汽车工程》1998,20(1):17-23
本文讨论了防抱制动系统鲁棒控制器设计问题,采用鲁棒和性能加权,系统有效地抗干扰和参数变化,使控制器有效地适应不同的路况及制动工况,与PID算法进行了比较,模拟的结果证实了该控制器的优良品质。  相似文献   

16.
汽车的制动性能关系剑汽车安全行驶性能。ABS防抱死系统的应用是汽车安全性方面最重要的技术进展。通过对装备ABS汽车与普通汽车制动距离的计算比较分析发现,在湿滑的道路上突然制动,ABS系统可以使驾驶员能够保持车辆行驶平稳,在较短的距离内将汽车刹住。但在不湿滑的路面上,缩短刹车距离的范同值比较小。而在冰雪路面上行驶的车辆,没有装备ABS的汽车在湿路面或冻路面上制动时,制动距离会过长且不能猛烈转向。而装备ABS系统的汽车也是如此,因为尽管ABS能提供附加的制动控制和转向控制,但它不能解决这样一个客观的物理事实:那就是在较滑的路面上,可利用的牵引力很小。  相似文献   

17.
Brake systems of the future, including BBW (Brake-by-Wire), are in development in various forms. In one of the proposed hydraulic BBW systems, an electric booster system replaces the pneumatic brake booster with an electric motor and a rotational-to-linear motion mechanism. This system is able to provide improved braking performance by the design of controllers with precise target pressure tracking and control robustness for better system reliability. First, a sliding mode controller is designed using the Lyapunov function approach to secure the robustness of the system against both the model uncertainty and the disturbance caused by the master cylinder and mechanical components. Next, a simulation tool is constructed to validate the electric booster system with the proposed controller. Finally, the electric booster system is implemented into an actual brake ECU and installed in a vehicle for testing under various braking conditions. The experimental results demonstrate that the proposed controller produces faster pressure build-up performance than the conventional brake system, and its tracking performance is sufficient to ensure comfortable braking.  相似文献   

18.
Emergency brake technologies have always been a major interest of vehicle active safety-related studies. On homogeneous surfaces, traditional anti-lock brake system (ABS) can achieve efficient braking performance and maintain the handling capability as well. However, when road conditions are time variant during the braking process, or different at the bilateral wheels, braking stability performance is likely to be degraded. To address this problem and enhance ABS performances, a practical identifier of road variations is developed in this study. The proposed identifier adopts a statechart-based approach and is hierarchically constructed with a wheel layer and a full vehicle layer identifier. Based on the identification results, modifications are made to a four-phase wheel-behaviour-based ABS controller to enhance its performance. The feasibility and effectiveness of the proposed identifier in collaborating with the modified ABS controller are examined via simulations and further validated by track tests under various practical braking scenarios.  相似文献   

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