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Injection control strategy of diesel engine based on speed segment PID and operating parameter adaptation

机译:基于调速段PID及运行参数自适应的柴油机喷射控制策略

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摘要

Aiming at the problems of low precision, poor anti-interference and poor follow-up in the control parameters for the diesel engine fuel injection system, this paper studies the control method of the high-pressure common rail electronic control fuel injection system of the diesel engine, constructs the high-pressure common rail fuel injection control system based on the ECU, and establishes the speed segment PID control model of fuel injection quantity, common rail pressure, fuel injection timing and fuel injection rate by using MATLAB/Simulink The fuel injection quantity and timing are simulated. In order to realize all-round and flexible control of the diesel engine under different working conditions, and to achieve the desired optimal performance in all aspects, the optimization control method of the injection law for the diesel engine is studied. The diesel engine fuel injection control strategy based on speed segment PID and operating parameter adaptation is proposed to realize precise control of the common rail pressure, injection quantity, injection timing and injection rate under different working conditions. The simulation calculation and bench test show that the maximum fluctuation of rail pressure at idle speed is only 5 MPa, and the time to reach stability is only 1.25 s, which greatly improves the control accuracy, anti-interference and follow-up ability of the injection parameters.
机译:针对柴油机燃油喷射系统控制参数精度低、抗干扰性差、跟进不力等问题,研究了柴油机高压共轨电控喷油系统的控制方法,构建了基于ECU的高压共轨燃油喷射控制系统, 利用MATLAB/Simulink建立喷油量、共轨压力、喷油正时和喷油速率的速度段PID控制模型,对喷油量和正时进行仿真。为了实现柴油机在不同工况下的全方位、灵活控制,并在各方面达到理想的最佳性能,研究了柴油机喷射规律的优化控制方法。提出了基于转速段PID和运行参数自适应的柴油机燃油喷射控制策略,实现不同工况下共轨压力、喷油量、喷油正时和油射速率的精确控制。仿真计算和台架试验表明,怠速时钢轨压力的最动仅为5 MPa,达到稳定的时间仅为1.25 s,大大提高了注射参数的控制精度、抗干扰和跟踪能力。

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