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High Energy Dual Coil Ignition System for Gasoline Engines with EGR or lean combustion

机译:适用于具有EGR或稀薄燃烧的汽油发动机的高能双线圈点火系统

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摘要

Improved fuel economy and reduced emissions are driven by legislation as well as by customer demands. In order to achieve higher engine efficiency and enhanced combustion, different approaches as downsizing, turbo charging, direct injection, exhaust gas recirculation or higher air-fuel ratio are applied. All these approaches require higher ignition voltage and ignition energy. A Dual Coil Ignition System (DCI) can overcome the restrictions of a single spark system, since a DCI achieves a continuous, long-lasting spark with higher total energy by subsequently charging and discharging two ignition coils inside a single housing. In a first step, the DCI is used to analyze the behavior of the spark duration and the spark deflection in a pressure chamber depending on electrical set point, pressure and flow rate. In a second step, the benefits of the DCI compared to a standard transistor coil ignition system are shown by measurements on a 1.4L DI engine with 90kW and 200Nm on a test bench at different engine operation points. For a given engine running smoothness, the DCI achieves a higher EGR-rate and enables a leaner combustion with an increased air-fuel ratio. In summary, the DCI helps the combustion process to be more efficient with lower emissions.
机译:立法以及客户需求推动了燃油经济性的提高和排放的减少。为了实现更高的发动机效率和增强的燃烧效果,采用了各种不同的方法,例如小型化,涡轮增压,直接喷射,废气再循环或更高的空燃比。所有这些方法都需要更高的点火电压和点火能量。双线圈点火系统(DCI)可以克服单个火花系统的局限性,因为DCI通过随后在单个壳体内对两个点火线圈进行充电和放电,从而获得了具有更高总能量的连续,持久的火花。第一步,根据电气设定点,压力和流量,使用DCI分析压力室中火花持续时间和火花偏转的行为。第二步,通过在测试台上以90kW和200Nm的1.4L DI发动机在不同的发动机工作点上进行测试,显示了DCI与标准晶体管线圈点火系统相比的优势。对于给定的发动机运行平稳性,DCI可获得更高的EGR率,并能够以增加的空燃比实现更稀薄的燃烧。总而言之,DCI有助于燃烧过程更高效,排放更低。

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