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New approach for performing failure analysis of fuel cell-powered vehicles

机译:进行燃料电池汽车故障分析的新方法

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摘要

Safety of hybrid-electric and fuel cell vehicles is a critical aspect of these new technologies, since any accident exposing occupants of such vehicles to unconventional hazards may result in significant setbacks to successful market penetration. Fuel cell and hybrid-electric drive systems are complex, and it is essential to perform a thorough analysis to determine critical failure conditions. There are several safety concerns for routine operation of such systems, particularly for hydrogen-fueled vehicles. A modified Failure Modes and Effect Analysis (FMEA) has been developed, along with a Criticality Analysis (CrA), to identify potentially hazardous conditions for crash and non-crash situations. A mathematical model of fuel cell operation has been developed and used here in conjunction with the FMEA. Component failures during the event modes are simulated using vehicle models developed with Matlab Simulink tools. Six simulation models were created using the software. In addition, a preliminary finite element model of a fuel cell vehicle, using a Ford Taurus (91′) model year sedan, has been developed and implemented. This finite element model is used as a demonstration of the crash simulation of the vehicle.
机译:混合动力和燃料电池车辆的安全性是这些新技术的关键方面,因为任何将此类车辆的乘员暴露在非常规危险中的事故都可能导致成功打入市场的重大挫折。燃料电池和混合动力驱动系统很复杂,必须进行彻底的分析以确定关键的故障条件。对于这种系统的常规操作,特别是对于氢燃料车辆,存在几个安全问题。已经开发了修改后的失效模式和后果分析(FMEA)以及关键性分析(CrA),以识别碰撞和非碰撞情况的潜在危险状况。已经开发了燃料电池运行的数学模型,并将其与FMEA结合使用。使用Matlab Simulink工具开发的车辆模型可以模拟事件模式下的组件故障。使用该软件创建了六个仿真模型。另外,已经开发并实现了使用福特Taurus(91')年制轿车的燃料电池汽车的初步有限元模型。该有限元模型用作车辆碰撞仿真的演示。

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