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Pneumatic ABS Modeling and Failure Mode Analysis of Electromagnetic and Control Valves for Commercial Vehicles

机译:用于商用车辆电磁和控制阀的气动ABS建模与故障模式分析

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A failure of the pneumatic ABS (anti-lock braking system) weakens the braking performance of commercial vehicles. It affects the driving safety of vehicles. There are four typical failure modes that include: the failure of the pilot inlet solenoid valve and pilot exhaust solenoid valve of the pressure regulator, the failure of the series dual-chamber brake valve, and the failure of the relay valve. In order to study the braking performance and the rule of vehicles under the failure modes of the pneumatic ABS, the co-simulation model of the pneumatic ABS of the commercial vehicle was established based on AMESim and Simulink softwares. The gas path subsystem of the pneumatic ABS and the vehicle model were built based on AMESim. The controller was established based on Simulink/Stateflow. The data were transmitted between the AMESim and Simulink software by using the data interface block. The co-simulation model was validated by tests. The results showed that the maximum error of the braking deceleration is 13.51%. The model can simulate the braking process of the vehicle well. Based on this, the four typical failure modes of the pneumatic ABS were simulated, and the influences of different failure modes on the braking ability were analyzed. The influence of failure ratio on braking distance in four modes was obtained. It can be seen from the simulation results that the failure of the pilot inlet solenoid valve and the pilot exhaust solenoid valve of the pressure regulator cause the wheel lock. The failure of the lower chamber of the brake valve and the failure of the relay valve have a great influence on the braking distance.
机译:气动ABS(防锁制动系统)失效削弱了商用车辆的制动性能。它影响车辆的驾驶安全性。有四种典型的故障模式包括:导频入口电磁阀和压力调节器的先导式排气电磁阀的故障,串联双腔制动阀的故障以及继电器阀的故障。为了在气动ABS的故障模式下研究制动性能和车辆的规则,基于Amesim和Simulink软件,建立了商用车气动ABS的共模模型。基于Amesim建立了气动ABS的气体路径子系统和车辆模型。控制器是基于Simulink / StateFlow建立的。通过使用数据接口块在Amesim和Simulink软件之间传输数据。通过测试验证了共模拟模型。结果表明,制动减速度的最大误差为13.51%。该模型可以模拟车辆的制动过程。基于此,模拟了气动ABS的四种典型故障模式,分析了不同故障模式对制动能力的影响。获得了失效比对四种模式制动距离的影响。从模拟结果可以看出,导频入口电磁阀的故障和压力调节器的先导式排气电磁阀导致车轮锁定。制动阀的下腔室的失效和继电器阀的故障对制动距离产生了很大的影响。

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