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Study on Ignition Timing Control for Diesel Engines Using In-Cylinder Pressure Sensor

机译:汽缸压力传感器柴油发动机点火正时控制研究

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As technologies for simultaneously maintaining the current high thermal efficiency of diesel engines and reducing particulate matter (PM) and nitrogen oxide (NO{sub}x) emissions, many new combustion concepts have been proposed, including premixed charge compression ignition (PCCI) and low-temperature combustion. However, it is well known that since such new combustion techniques precisely control combustion temperatures and local air-fuel ratios by varying the amount of air, the exhaust gas recirculation (EGR) ratio and the fuel injection timing, they have the issues of being less stable than conventional combustion techniques and of performance that is subject to variance in the fuel and driving conditions. This study concerns a system that addresses these issues by detecting the ignition timing with in-cylinder pressure sensors and by controlling the fuel injection timing and the amount of EGR for optimum combustion onboard. This system was able to attain both cleaner emission gases and stable combustion without being affected by external factors such as the cetane number of the fuel, even with PCCI where combustion is relatively unstable.
机译:作为同时维持柴油发动机的当前高热效率和减少颗粒物质(PM)和氮氧化物(NO {Sub} X)排放的技术,已经提出了许多新的燃烧概念,包括预混合电荷压缩点火(PCCI)和低 - 温度燃烧。然而,众所周知,由于这种新的燃烧技术通过改变空气量,废气再循环(EGR)比和燃料喷射时间来精确地控制燃烧温度和局部空气燃料比,因此它们具有更少的问题稳定而不是常规燃烧技术和经受燃料和驾驶条件方差的性能。本研究涉及一种系统,通过检测缸内压力传感器的点火正时并通过控制燃料喷射正时和在船上的最佳燃烧的EGR的量来解决这些问题的系统。该系统能够获得清洁剂排放气体和稳定的燃烧,而不会受到燃料的十六烷数量的外部因素的影响,即使在燃烧相对不稳定的情况下也是如此。

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