首页> 外文会议>SAE World Congress Experience >Application of Model-Based Development to Engine Restart Vibration After Idling Stop
【24h】

Application of Model-Based Development to Engine Restart Vibration After Idling Stop

机译:基于模型的开发在怠速停止后发动机重启振动的应用

获取原文

摘要

Idling stop systems are being increasingly adopted in conventional engine vehicles as well as hybrid electric vehicles to increase fuel efficiency. When the engine starts, body vibration occurs that is caused by the rigid body eigenvalues of the power plant during initial combustion. Engine restart vibration after an idling stop is caused by the input force from the transmission, and the reaction force from the drive shaft as well as the input force from the engine. This phenomenon occurs frequently when the engine is restarted from the idling stop, the vibration is increasingly annoying to passengers. Usually, the vehicle development process is carried out in accordance with the V process. The V process divides the vehicle development process into two stages. The first stage is called the vehicle design stage to determine the characteristic. The second stage is called the vehicle verification stage to verify the performance. However, we have no prediction techniques in the design stage for engine restart vibration. Therefore, engine restart vibration can only be verified in the verification stage. A technique that can predict the system and parts characteristics at the design stage is needed in recent development processes. This study develops a prediction technique for restart vibration with in-cylinder pressure prediction that can determine the required system and parts characteristics by applying model-based development from the vehicle design stage. Furthermore, this study develops a method that can properly evaluate restart vibration in order to refine the directions and frequencies of the vibration to be measured.
机译:在传统的发动机车辆以及混合动力电动车辆中越来越多地采用空转停止系统,以提高燃料效率。当发动机开始时,发生在初始燃烧期间由发电厂的刚性体特征值引起的体振动。发动机重启振动在怠速停止之后由传输的输入力引起,以及来自驱动轴的反作用力以及来自发动机的输入力。当发动机从怠速停止重新启动发动机时,这种现象经常发生,振动对乘客越来越讨厌。通常,车辆开发过程按照V过程进行。 V过程将车辆开发过程分为两个阶段。第一阶段称为车辆设计阶段以确定特征。第二阶段称为车辆验证阶段以验证性能。然而,我们在发动机重启振动的设计阶段没有预测技术。因此,只能在验证阶段验证发动机重启振动。在最近的开发过程中需要一种能够预测设计阶段的系统和零件特性的技术。本研究开发了一种预测技术,用于用缸内压力预测重启振动,这可以通过从车辆设计阶段应用基于模型的显影来确定所需的系统和零件特性。此外,该研究开发了一种可以适当地评估重启振动的方法,以便优化要测量的振动的方向和频率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号