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文中用ADAMS/Car建立带有电动助力转向系统(EPS)的整车多体动力学模型,对EPS3种助力特性进行了研究,并在所建模型基础上进行助力特性的仿真分析。 相似文献
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电动助力转向系统(EPS)是汽车转向行业的发展方向,其中助力控制策略的选取在EPS中起关键性作用。根据简化的汽车电动助力转向物理模型,建立转向系统和助力电动机相应的数学模型,选取转矩电流双闭环PID控制策略,建立了合适的助力特性曲线。在Simulink环境中建立相应的仿真模型,仿真结果表明,选取的电动助力转向控制策略提高了转向系统的稳定性、轻便性、跟随性和路感要求,验证了控制策略的有效性。 相似文献
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对EPS电动助力转向系统的发展、组成、工作原理及关键部件的功能作了简要介绍。依据转向性能的要求,定性地阐述了电动助力转向、助力特性曲线议计方法。 相似文献
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概述了电动助力转向系统(EPS)的结构和工作原理,并介绍了电动助力转向系统助力特性的设计方法。在分析了电动助力转向系统各组成部分数学模型的基础上,构建了基于Simulink与carsim的电动助力转向系统仿真模型,仿真结果表明:所设计的助力特性较好地协调了转向轻便性和路感之间的矛盾。 相似文献
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汽车电动助力式转向系统(EPS)控制策略研究 总被引:6,自引:0,他引:6
介绍了电动助力转向系统(EPS)的结构和工作原理,重点分析了EPS系统核心控制内容和控制算法,包括助力控制、阻尼控制和回正控制,以及故障诊断控制,对直线型助力、折线型助力以及曲线型助力特性进行了分析,并总结、提出了系统控制流程。 相似文献
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电子控制动力转向系统(EPS)可以在低速时减轻转向力,以提高转向系统的操纵稳定性;在高速时则可适当加重转向力,以提高操纵稳定性.文章介绍了EPS及其主要形式和布置方式,在分析汽车助力转向系统工作原理的基础上,阐述了转向特性对汽车操纵性能的影响,并结合具体EPS实例,介绍了电子控制动力转向系统的4种控制形式,为动力转向系统软件开发及实物研制提供了前提条件. 相似文献
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X. Li X. P. Zhao J. Chen J. L. Men 《International Journal of Automotive Technology》2009,10(4):497-503
The electric power steering (EPS) system is designed to reduce the effort exerted by driver on the steering wheel. One of
the most common and critical failures of EPS is the soft-disability of the torque sensor or the loss of its signal, which
leads to the instant shutdown of the EPS system while turning and causes serious traffic accidents. In this paper, a novel
controller based on the self-alignment torque (SAT) estimation was designed to remedy the soft-disability of EPS system. After
the SAT estimation method was verified by the empirical Magic Formula (MF) tire model, the remedy control strategy based on
the SAT estimation was developed and evaluated by simulations under step and sinusoidal inputs. To further evaluate the performance
of the controller on a real vehicle, experiments on a real EPS system were implemented under step and sinusoidal inputs. The
results of simulation and experiment using the controller based on estimated SAT showed this controller to be feasible and
capable of eliminating the abrupt reaction torque increment caused by shutdown of EPS and of remedying the soft-disability
of EPS system under common input signals. 相似文献
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为了研究电动汽车EPS助力特性对汽车操纵稳定性的影响,在对EPS工作原理和助力特性进行分析的基础上,建立了EPS动力学方程,设计了一种能实现理想助力特性的PID控制器。基于MATLAB/SIMULINK对其进行了仿真分析,结果表明,系统加入PID控制后齿条位移、方向盘转角及检测转矩相比无控制时运行更平稳,调节时间分别缩短0.2,0.4,0.4 s;前助力转矩阶跃响应呈高频波动,电机内部的波动现象明显改善,PID控制器对于EPS的助力特性具有更好的控制效果和稳定性。 相似文献
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The Electric Power Steering (EPS) or Motor Driven Power Steering (MDPS) mechanism proves to be a bright prospect among passenger vehicles ensuring better vehicle safety and fuel economy. The car manufacturers are focusing on the production of Rack type EPS system (REPS). This paper describes the development of concurrent simulation technique using TruckSim and control strategy for analysing RMDPS control system with a dynamic vehicle system. A full Truck vehicle model interacting with RMDPS control algorithm was concurrently simulated on a sinusoidal steering input. The dynamic responses of vehicle chassis and steering system resulting were evaluated and compared with proving ground experimental data. The comparisons show reasonable agreement on steering wheel torque, lateral acceleration and yaw rate. This concurrent simulation research leads the possibility of RMDPS performance evaluation of Truck and Semi-bonnet cars. 相似文献
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阐述了电动助力转向系统(EPs)的基本组成和工作原理,设计了基于MC9S12XS128单片机控制的电动助力转向系统。介绍了其主要硬件电路模块的组成和软件总体设计,并对所设计的EPS控制器进行了台架试验,试验表明所设计的电助力转向系统能够很好地跟踪月标电流,实现闭环助力功能。 相似文献
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G. H. Lee W. C. Choi S. I. Kim S. O. Kwon J. P. Hong 《International Journal of Automotive Technology》2011,12(2):291-297
This paper identifies a control method used to reduce torque ripple of a permanent magnet synchronous motor (PMSM) for an
electric power steering (EPS) system. NVH (Noise Vibration Harshness) is important for safe and convenient driving. Vibration
caused by motor torque is a problem in column type EPS systems. Maintaining a very low torque ripple is one solution that
allows for smoother steering. Theoretically, it is possible to design and drive the motor without torque ripple. However,
in reality, a PMSM system torque ripple is caused by the motor itself (saturation in the iron core and EMF distortion) and
the imperfect driver. This paper analyzes torque ripple of a PMSM system, and an advanced PMSM control method for the column
typed EPS system is presented. Results of the analysis indicate that the compensation current is needed in order to minimize
torque ripple when a PMSM is driven. 相似文献