Fuel engine injector control based on multiple search approach

Siwei Wu, Yanmei Dong, Kexue Yu, Xu-Qing Tang
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Abstract

The main components of high-pressure common rail fuel injection system are high-pressure common rail fuel pump, common rail pipe and injector. The high-pressure fuel from the high-pressure oil pump is supplied to the injector through the high-pressure common rail oil pipe, which is precisely controlled by the electric control system and inject fuel into the cylinder. Generally, the power of the fuel engine is determined by the speed of the high pressure oil pump, and the key to improve the efficiency of it is to keep a constant pressure in oil pipe when high pressure oil pump is at a high speed. Therefore, methods need to be taken to control pressure in pipe when the cam rotates at a high speed, such as control speed of cam, adjust number of fuel injectors and the starting time of them in a cycle, with the aim of stabilizing internal pressure of oil pipe. In this study, we discretize the problem, establish the difference equation, and multiple searching method is adopted to find out the injector configuration mode which keep the pressure of the high-pressure oil pipe, with speed of, at 100MPa. Finally, we put forward a conjecture between the cam speed and the injector configuration, and carry out simulation verification.
基于多重搜索方法的燃油发动机喷油器控制
高压共轨燃油喷射系统的主要部件是高压共轨燃油泵、共轨管和喷油器。高压油泵排出的高压燃油通过高压共轨油管供给喷油器,由电控系统精确控制,将燃油注入气缸。一般来说,燃油发动机的功率是由高压油泵的转速决定的,而提高其效率的关键是在高压油泵高速运转时保持油管内压力恒定。因此,在凸轮高速旋转时,需要采取控制油管内压力的方法,如控制凸轮的转速,调节喷油器的数量和一个周期内喷油器的启动时间,以稳定油管内压力。本文将问题离散化,建立差分方程,采用多重搜索的方法,找到了使高压油管速度保持在100MPa的喷油器配置方式。最后,提出了凸轮转速与喷油器构型之间的关系,并进行了仿真验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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