行星传动车辆燃料控制系统:对液化石油气燃料车辆社区的贡献

S. Munahar, B. Purnomo, Hasan Köten
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引用次数: 16

摘要

双燃料系统车辆(汽油/液化石油气)已经发展了很长时间,因为它具有转换燃料的能力,无论是作为原始设备制造商(OEM)建造还是作为改装车辆。然而,对于采用行星自动变速器的车辆,需要额外的控制系统来产生最佳性能,无论是汽油还是液化石油气操作,特别是在上坡道路上。老式的行星自动变速器车辆没有配备道路坡度角传感器,因此在上坡道路上,驾驶员还没有掌握路况,发动机容易突然熄火。因此,本研究的目标是在行星自动变速器上开发燃料控制系统(LPG操作),以根据道路坡度控制换挡。通过MATLAB Simulink仿真建立了控制系统,确定了目标函数和约束条件。因此,控制系统可以识别道路坡度的水平来控制变速。该控制系统在实际应用中具有良好的应用前景和可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fuel Control Systems for Planetary Transmission Vehicles: A Contribution to the LPG-fueled Vehicles Community
The bi-fuel system vehicle (gasoline/LPG) has been developed for a long time because it has the ability to switch fuels, both built as an original equipment manufacturer (OEM) or as a modified vehicle. However, on vehicles with planetary automatic transmissions, additional control systems are needed to produce optimal performance, both on gasoline and LPG operations, especially on uphill roads. Old vehicles with planetary automatic transmissions are not equipped with road slope angle sensors, so on uphill roads and the driver has not mastered road conditions, the engine tends to stop suddenly. Therefore, this study aims to develop a fuel control system (LPG operation) on a planetary automatic transmission to control gear shifts based on the level of the road slope. A simulation with MATLAB Simulink we used to create a control system, with objective function and constraint defined. As a result, the control system can recognize the level of the road slope to control the speed gear shift. This control system is promising and reliable to be implemented in real conditions.
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