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ION SENSING FOR OFF-HIGHWAY DIESEL ENGINES TO MEET FUTURE EMISSIONS REGULATIONS

机译:非公路用柴油机的离子传感满足未来排放法规

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摘要

Emissions regulations for off-highway engines are tightening towards those of on-highway engines. Present designs will not be able to meet these more stringent regulations because of their use of mechanical fuel injection timing control; more advanced timing control will be required. Ion sensing combined with variable fuel injection timing may help these engines meet the emissions requirements without the drastic price increase that usually accompanies a switch to advanced fuel injection technology. Ion sensing can detect the start of combustion and this signal can be used for closed loop control for the injection timing. The integrity of the ion signal is highly dependent on combustion chamber geometry, sensor placement, and even the polarity of the charge across the sensor. Optimizing all of these effects could improve the detection of the start of combustion from an ion sensor to less than one crank angle degree and provide a signal for closed loop control of the injection timing.
机译:非公路用发动机的排放法规越来越严格,非公路用发动机的排放法规也越来越严格。当前的设计由于使用机械燃料喷射正时控制而无法满足这些更严格的规定;需要更高级的时序控制。离子感测与可变的燃油喷射正时相结合可以帮助这些发动机满足排放要求,而不会伴随着向先进的燃油喷射技术的转变而出现急剧的价格上涨。离子感测可以检测到燃烧的开始,并且该信号可以用于喷射正时的闭环控制。离子信号的完整性高度取决于燃烧室的几何形状,传感器的位置,甚至取决于传感器两端的电荷极性。优化所有这些效果可以改善离子传感器对燃烧开始的检测,使其小于一个曲柄角度,并为注入正时的闭环控制提供信号。

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