首页> 外文期刊>Transactions of the Institute of Measurement and Control >A new method for measurement of air-fuel ratio based on the response time of binary-type exhaust gas oxygen (BEGO) sensor for application in small spark ignition (SI) engines
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A new method for measurement of air-fuel ratio based on the response time of binary-type exhaust gas oxygen (BEGO) sensor for application in small spark ignition (SI) engines

机译:基于二元型排气氧传感器响应时间的空燃比测量新方法,用于小型火花点火(SI)发动机

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摘要

A binary-type exhaust gas oxygen (BEGO) sensor that is usually used to maintain the air-fuel ratio (AFR) at stoichiometric conditions in current spark ignition (SI) engines is significantly lower in cost compared with the universal exhaust gas oxygen sensor. However, it can only switch from a high state (≈0.7 V) to a low state (≈0.1 V) when the mixture goes from richer to leaner than stoichiometric conditions or vice versa. Thus, it cannot indicate the actual AFR. A novel method of estimating the AFR of an SI engine using a BEGO sensor has been demonstrated in this work for leaner than stoichiometric mixtures. Experiments were conducted on a single-cylinder, manifold-injection SI engine. The air-fuel mixture was initially kept at a richer than stoichiometric level while the engine was maintained at constant speed and throttle. The mixture was suddenly changed to a leaner than stoichiometric level. The switching time of the BEGO sensor during this operation was noted. This was repeated for different initial and final AFRs. A relationship between the switching time and change in AFR was obtained for different initial AFRs. A look-up table to determine the AFR was made and used under test conditions. The error is less than 5% in the estimated AFR. The system was also incorporated on a low-cost microcontroller-based engine management system and tested under laboratory conditions.
机译:与通用排气氧传感器相比,通常用于在当前火花点火(SI)发动机中以化学计量条件保持空燃比(AFR)的二进制排气氧(BEGO)传感器的成本大大降低。但是,只有当混合物比化学计量条件从浓到稀时,它才能从高状态(≈0.7V)切换到低状态(≈0.1V),反之亦然。因此,它不能指示实际的AFR。在这项工作中,已经证明了一种使用BEGO传感器估算SI发动机的AFR的新颖方法,用于比化学计量混合物更稀薄的混合物。实验是在单缸,多缸喷射SI发动机上进行的。空气-燃料混合物最初保持在比化学计量浓的水平,而发动机则保持恒定的速度和节气门。混合物突然变为比化学计量水平更稀的水平。记录了此操作期间BEGO传感器的切换时间。对不同的初始和最终AFR重复此操作。对于不同的初始AFR,获得了切换时间与AFR变化之间的关系。在测试条件下制作并使用了确定AFR的查找表。估计的AFR中的误差小于5%。该系统还集成在基于微控制器的低成本发动机管理系统中,并在实验室条件下进行了测试。

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