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Common rail pressure controller for diesel engines using an empirical model

机译:使用经验模型的柴油发动机公共轨道压力控制器

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This paper proposes a common rail pressure controller based on an empirical rail pressure model for passenger car diesel engines. The controller consists of pressure control valve (PCV) control algorithm and metering unit (MeUn) control algorithm. The PCV control algorithm controls the leakage fuel flow of the common rail based on the empirical rail pressure model. The proposed rail pressure model describes the relation between the common rail pressure and the driving current of the PCV as a quadratic function. This model is applied to the feedforward part of the PCV control algorithm. The MeUn control algorithm is designed to control the inlet fuel flow of the common rail. This algorithm is composed of a feedforward and feedback parts. The feedforward action is effective to reduce the rail pressure variation in a steady operating condition, and the feedback action reinforces the tracking performance of the rail pressure controller. In order to validate the proposed control algorithm, engine experiments were performed. The experiments include step change tests of the desired rail pressure and engine operating condition and the new European driving cycle test. The test results show that the empirical model based rail pressure controller is effective for the desired pressure tracking and reduction of pressure variation in the steady state.
机译:本文提出了一种基于乘用车柴油发动机经验轨道压力模型的公共轨道压力控制器。控制器由压力控制阀(PCV)控制算法和计量单元(MEUN)控制算法组成。基于经验轨压力模型,PCV控制算法控制公共轨道的漏燃燃料流量。所提出的轨道压力模型描述了公共轨道压力与PCV的驱动电流作为二次函数的关系。该模型应用于PCV控制算法的馈电部分。 Meun控制算法旨在控制公共轨道的入口燃料流量。该算法由馈电和反馈部件组成。前馈动作有效地减少稳定操作条件下的轨道压力变化,并且反馈动作加强了轨道压力控制器的跟踪性能。为了验证所提出的控制算法,进行发动机实验。实验包括所需轨道压力和发动机操作条件的步骤变化试验和新的欧洲驾驶循环试验。测试结果表明,基于经验模型的轨道压力控制器对于所需的压力跟踪和稳态压力变化的降低是有效的。

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