Development of Proportional Integral Derivative Controller of High-Pressure Pump in Stand-Alone Common Rail Injection System for Engine Research

Nawee Nuntapap, Prathan Srichai, P. Yeunyongkul, Ronnachart Munsin
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Abstract

This paper aims to develop a technique for controlling fuel pressure in a common rail injection system using proportional integral derivative control (PID). Test fuel was blended fuel between diesel and biodiesel of 93:7 %vol. The multiple injection strategies were tested under the injection pressure of 350 to 800 bar. Injection duration was varied in the range of 0.82-5 ms with a constant dwell time of 6.4 ms. Injection period was set as 171 ms, corresponding to the engine idle speed of 750 rpm. Suction control valve was controlled by pulse width modulation. The results showed that fuel pressure in the common rail can be controlled by PID controller for different injection strategies with fluctuation pressure in the rail less than 1%. The fluctuation pressure trends to have lower fluctuation pressure in case of higher pressure.
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发动机单机共轨喷射系统高压泵比例积分导数控制器的研制
研究了一种用比例积分导数控制(PID)控制共轨喷射系统燃油压力的方法。试验燃料为93:7%体积的柴油与生物柴油混合燃料。在350 ~ 800 bar的注入压力下,对多种注入策略进行了测试。注射时间为0.82 ~ 5ms,固定停留时间为6.4 ms。喷射周期设定为171 ms,对应发动机怠速750 rpm。吸气控制阀采用脉宽调制控制。结果表明:采用PID控制器对不同喷油策略的共轨燃油压力进行控制,且共轨燃油压力波动小于1%。压力越高,波动压力越小。
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