首页> 外文会议>Energy Conversion Congress and Exposition >A Dynamic Solenoid Model for Fuel Injectors
【24h】

A Dynamic Solenoid Model for Fuel Injectors

机译:燃料喷射器动态电磁阀模型

获取原文

摘要

The fuel injection system strongly affects the engine combustion phenomena which determines pollutant emissions, combustion noise and fuel efficiency. Many studies have shown the advantages of using small quantity and closely-spaced multiple injections per combustion cycle for emission reduction and fuel efficiency improvement. However, closely-spaced multiple injections using electromagnetic fuel injectors, which predominate in almost all gasoline engines, are challenging, as there is residual energy (flux) in the injector coil when the injector is re-energized. The residual flux causes over-fueling in the subsequent injection event resulting in unacceptable injection instability. In this paper, we develop a simple and highly accurate dynamic model of a solenoid in electromagnetic fuel injectors to predict the residual energy/flux. Eddy current effect and magnetic saturation are considered to model the transient behavior of flux. The model parameters are derived from physical variables, which render the model easy to tune/calibrate. The predicted flux from the model showed very good agreement with experimental results over typical fuel injection profiles. The model is an enabler for model based fuel injector control to achieve accurate fuel metering in closely space multiple injection applications. The method is also applicable to solenoid in other applications, e.g., solenoid actuators in robotics, variable force solenoid in clutch systems, and so on.
机译:燃油喷射系统强烈影响发动机燃烧现象,它决定了污染物排放,燃烧噪声和燃料效率。许多研究表明,使用少量的燃烧循环使用少量和紧密间隔的多次喷射,以减少减排和燃料效率提高。然而,使用电磁燃料喷射器的电磁燃料喷射器紧密间隔,这在几乎所有汽油发动机上都是具有挑战性的,因为当喷射器被重新通电时,在喷射器线圈中存在残余能量(磁通量)。残留磁通量在随后的注射事件中导致过度燃料导致不可接受的注射不稳定性。在本文中,我们在电磁燃料喷射器中开发了一种简单且高度准确的电磁阀动态模型,以预测残留能量/通量。涡流效果和磁饱和度被认为是模拟通量的瞬态行为。模型参数来自物理变量,渲染型号易于调谐/校准。来自模型的预测通量表现出非常良好的一致性与典型燃料喷射型材的实验结果。该模型是基于模型的燃料喷射器控制的推动器,以实现紧密空间的多次喷射应用中的精确燃料计量。该方法还适用于其他应用中的螺线管,例如机器人中的螺线管执行器,离合器系统中的可变力螺线管,等等。

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