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Development of a High-Pressure Injector Driving Circuit for Controlling the Air-Fuel Ratio of GDI Engines

机译:开发用于控制GDI发动机空燃比的高压喷油器驱动电路

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An electric driving circuit for the high-pressure (H.P.) injector is required to be designed to be capable of rapid response and precise air-fuel ratio control for GDI engines. In this study, a three-stage power MOSFETs driving circuit for the H.P. injector is designed and tested to verify its feasibility. The experiments for the fuel injection quantities of the H.P. injector are conducted under the conditions of 60-100 bar fuel pressures, 1200~2000µs injecting pulse durations and DC 40~70V executing supply voltages. Next, PWM control is introduced to the last pulse holding current in the three-stage power MOSFETs driving circuit for the rapid response to turn off the H.P. injector. Also, the measured data of the H.P. injector fed by the three-stage MOSFETs driving circuit are defined as the fuel injection curves. The coefficients of polynomial equations can be determined from the fuel injection curves by the Polynomial Curve Fitting (PCF) method and can be implemented in the developed ECU. The ECU demonstrates the ability to control the fuel injection quantities and injection timing rapidly and precisely.
机译:需要设计用于高压(H.P.)喷射器的电驱动电路,以便能够对GDI发动机进行快速响应并进行精确的空燃比控制。在这项研究中,H.P。的三级功率MOSFET驱动电路喷油器经过设计和测试,以验证其可行性。 H.P.的燃油喷射量的实验喷油器在60-100 bar的燃油压力,1200〜2000μs的喷油脉冲持续时间和DC 40〜70V执行电源电压的条件下进行。接下来,将PWM控制引入到三级功率MOSFET驱动电路中的最后一个脉冲保持电流,以实现快速响应以关闭H.P。注射器。另外,H.P。的测量数据。由三级MOSFET驱动电路馈电的喷油嘴定义为喷油曲线。多项式方程的系数可以通过多项式曲线拟合(PCF)方法从燃油喷射曲线中确定,并且可以在已开发的ECU中实现。 ECU展示了快速而精确地控制燃油喷射量和喷射正时的能力。

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