用燃烧电离法检测汽油直喷发动机失火、爆震和零星预点火

Samuel Ayad, Swapnil Sharma, R. Verma, N. Henein
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摘要

检测与燃烧有关的现象,如失火、爆震和零星预燃,对于开发汽油直喷发动机所需的电子控制系统以满足动力、燃油经济性和低排放的生产目标是非常重要的。本文应用了几种类型的燃烧电离传感器、一种直接感知缸内燃烧的压力传感器和一种检测燃烧对发动机结构振动影响的加速度传感器——爆震传感器。在产生上述现象的涡轮增压四缸汽油直喷发动机上进行了实验研究。其中一个气缸配备了压电石英压力传感器,MSFI(多传感燃油喷射器),一个独立的离子电流探头和一个火花塞,用于充当离子电流传感器。比较了压力传感器、离子电流传感器和爆震传感器检测上述现象的能力。来自缸内燃烧传感器的信号提供了比爆震传感器更准确的燃烧信息。就其在量产车辆中应用的可行性和成本而言,火花塞传感器和MSFI似乎是最有利的,其次是独立安装的传感器,这是发动机的一个补充。
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Combustion Ionization for Detection of Misfire, Knock, and Sporadic Pre-Ignition in a Gasoline Direct Injection Engine
Detection of combustion related phenomena such as misfire, knock and sporadic preignition is very important for the development of electronic controls needed for the gasoline direct injection engines to meet the production goals in power, fuel economy, and low emissions. This paper applies several types of combustion ionization sensors, and a pressure transducer that directly sense the in-cylinder combustion, and the knock sensor which is an accelerometer that detects the impact of combustion on engine structure vibration. Experimental investigations were conducted on a turbocharged four cylinders gasoline direct injection engine under operating conditions that produce the above phenomena. One of the cylinders is instrumented with a Piezo quartz pressure transducer, MSFI (Multi sensing fuel injector), a standalone ion current probe, and a spark plug applied to act as an ion current sensor. A comparison is made between the capabilities of the pressure transducer, ion current sensors, and the knock sensor in detecting the above phenomena. The signals from in-cylinder combustion sensors give more accurate information about combustion than the knock sensor. As far as the feasibility and cost of their application in production vehicles the spark plug sensor and MSFI appear to be the most favorable, followed by the Standalone mounted sensor which is an addition to the engine.
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