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Improved Fuel Metering for Port Fuel Injection by Controlled Valve Operation

机译:通过受控阀门操作改进了端口燃料喷射的燃油计量

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Engine management systems combined with fuel injectors allow a precise fuel metering for a robust combustion process. Stricter emission legislations increase the requirements for these port fuel injection systems (PFI), whereas the price is still the main driver in the emerging low cost 2-wheeler market. Therefore, a holistic mechatronic approach is developed by Bosch, which allows an improved fuel metering over life time and furthermore provides new possibilities for diagnosis without changing the injector itself. This example of an intelligent software solution provides the possibility to further improve the accuracy of the fuel metering of an injector. By use of the information contained in the actuation voltage and current, the opening and closing times of the injector are derivable. The present paper illustrates how these features can be used to extend the dynamic flow range of injectors (minimum amount of fuel compared to the maximum amount of fuel) and how the deviations from injector to injector can be reduced. In order to improve the robustness of the system regarding varying operating conditions (battery voltage, pressure, temperature...), an adaptation algorithm is introduced. This adaptation algorithm reduces air fuel ratio deviations in dynamics and by that the emissions, which cannot be directly reduced by an oxygen sensor. Besides the possible reduction of emissions, cylinder imbalances can be compensated and thereby the engine smoothness especially in idling is improved. In addition to the potential analysis, new possibilities for upcoming system trends are discussed.
机译:发动机管理系统与燃料喷射器相结合,允许精确的燃料计量进行稳健的燃烧过程。更严格的排放立法提高了这些端口燃料喷射系统(PFI)的要求,而该价格仍然是新兴低成本2轮位市场的主要驱动因素。因此,通过博世开发了整体机电方法,这允许改善寿命的燃料计量,并且还提供了在不改变喷射器本身的情况下诊断的新可能性。智能软件解决方案的此示例提供了进一步提高注射器燃料计量的准确性的可能性。通过使用包含在致动电压和电流中的信息,可衍出喷射器的打开和闭合时间。本文说明了这些特征如何用于延长喷射器的动态流量范围(与最大燃料量相比的最小燃料量)以及如何降低从喷射器到喷射器的偏差。为了提高关于不同操作条件的系统的稳健性(电池电压,压力,温度......),介绍了一种自适应算法。该适配算法降低了动态的空燃比和通过氧传感器不能直接减少的排放来降低空燃比偏差。除了可能的排放量减少之外,可以补偿气缸的不平衡,从而改善了尤其是怠速的发动机光滑度。除了潜在的分析外,还讨论了即将到来的系统趋势的新可能性。

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