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Crank Event Based Fuel Injection and Spark Ignition Timing Control Strategy for SI Engines

机译:基于曲柄事件的SI发动机燃油喷射和火花点火正时控制策略

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摘要

For the controlled gasoline engine MR479Q, the crank speed, camshaft position, fuel injection, spark ignition timing signals and their relationships under control mode of group ignition and fuel sequential injection were deeply analyzed, then an electronic control unit (ECU) hardware platform solution based on Freescale 16-bit microcontroller MC9S12XEP100 was given out. Taking advantages of the hardware platform itself, a crank event based fuel injection and spark ignition timing control strategy was proposed to enhance traditional fuel injection and ignition reliability. Fuel pulse width, ignition coil dwell time and spark advance control under different engine operating conditions were then designed in detail respectively. The bench test results show that, the fuel injection and spark ignition timing control signals of ECU are accurate and stable enough under steady operating conditions, even under transient operating conditions when step disturbance exists in throttle opening, the fuel pulse width, dwell time and spark advance are also delivered correctly and reliably. The strategy is feasible enough to accomplish precise control of fuel injection and spark ignition.
机译:对于受控的汽油发动机MR479Q,曲柄速度,凸轮轴位置,燃料喷射,火花点火正时信号及其在控制模式下的控制模式下进行深度分析,然后基于电子控制单元(ECU)硬件平台解决方案在飞思卡尔16位微控制器MC9S12XEP100被发出。采取硬件平台本身的优势,提出了一种基于曲柄事件的燃油喷射和火花点火正时控制策略,以增强传统的燃油喷射和点火可靠性。然后分别详细设计了不同发动机操作条件下的燃料脉冲宽度,点火线圈停留时间和火花提前控制。台面测试结果表明,在稳定的操作条件下,ECU的燃料喷射和火花点火正时控制信号在稳定的操作条件下,即使在节气门开口中存在速度操作条件,燃料脉冲宽度,停留时间和火花也是如此。提前也被正确可靠地交付。该策略足以实现精确控制燃料喷射和火花点火。

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