首页> 外文会议>ASME Internal Combustion Engine Division fall technical conference 2010 >MISFIRE DETECTION FOR SPARK IGNITION ENGINES BASED UPON CYCLE-BY-CYCLE EXHAUST TEMPERATURE SENSING
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MISFIRE DETECTION FOR SPARK IGNITION ENGINES BASED UPON CYCLE-BY-CYCLE EXHAUST TEMPERATURE SENSING

机译:基于逐周期排气温度感测的火花点火引擎的错误检测

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摘要

Misfiring is a serious issue for large spark-ignited industrial natural gas engines because it increases fuel consumption and emissions and can ultimately lead to engine damage. Continuous misfiring of an engine cylinder can often be diagnosed based upon vibration measurements or conventional exhaust temperature measurements. The aim of the research described in this paper was to develop a means of detecting not only frequent misfiring of a cylinder, but also isolated, individual misfires. This would make it possible to detect problems early in the progression from sporadic misfire events to the onset of continuous misfiring.The approach used in the study is based upon the sensing of cycle-by-cycle fluctuations in the exhaust temperature from each cylinder. Proprietary circuitry and signal processing techniques are used to extract high frequency temperature information from durable sheathed thermocouples similar to those commonly used for these types of engines. These signal fluctuations can be used to detect momentary drops in exhaust temperature that occur as unburned mixture from a misfire exits the cylinder.The system was developed and validated through engine dynamometer tests using an automotive engine equipped with laboratory-grade cylinder pressure sensors for reference measurements. Further testing was conducted using a medium speed stationary natural gas engine. In both cases, the system was shown to be able to detect and count individual and consecutive misfire events.
机译:对于大型火花点火式工业天然气发动机,点火不当是一个严重的问题,因为它会增加燃油消耗和排放,并最终导致发动机损坏。通常可以基于振动测量或常规排气温度测量来诊断发动机气缸的连续失火。本文所述研究的目的是开发一种不仅可以检测气缸的频繁失火,而且可以检测孤立的单个失火的方法。这样就可以在从零星失火事件到连续失火开始的过程中及早发现问题。研究中使用的方法是基于每个气缸排气温度逐周期波动的感应。专有电路和信号处理技术用于从耐用护套热电偶中提取高频温度信息,类似于这些类型的发动机常用的信息。这些信号波动可用于检测由于失火引起的未燃混合物离开汽缸而产生的排气温度的瞬时下降。该系统是通过使用装有实验室级汽缸压力传感器的汽车发动机的发动机测功机测试进行开发和验证的,用于参考测量。使用中速固定式天然气发动机进行了进一步测试。在这两种情况下,该系统都能够检测并计算单个和连续的失火事件。

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