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Exhaust Gas Recirculation Control in a Spark-Ignition LPG Engine Using Neural Networks

机译:神经网络在火花点火式液化石油气发动机中的废气再循环控制

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This paper presents a neural network approach to control Exhaust Gas Recirculation (EGR) in a Liquefied Petroleum Gas(LPG) engine. In order to meet increasingly stringent automotive exhaust emission regulations, alternative fuels such as LPG engines have been developed in many countries. HC&CO emissions of LPG engines can be easily reduced through air-fuel ratio control, but the control effect of NOx is not good enough. Consequently EGR system is introduced to achieve a significant reduction of NOx emissions. Conventional EGR control uses the mapping method. The calibration time is long and the work is complex when adopting this mapping method. Neural networks are suitable for the identification and control of nonlinear dynamic systems. Neural networks own many advantages such as parallelism, self-organization, memorization, fault-tolerance, etc. If the structure is appropriate and train times are enough, using neural networks can improve the control precision of EGR and reduce the cost and time of calibration. The software and hardware design of EGR control system are also described in this paper. Neural networks for the EGR control have been developed on a 1.46-liter 4-cylinde sparkignition LPG engine. The experimental results show that the EGR system can achieve satisfied control effect.
机译:本文提出了一种神经网络方法来控制液化石油气(LPG)发动机中的废气再循环(EGR)。为了满足日益严格的汽车尾气排放法规,许多国家已经开发了替代燃料,例如LPG发动机。通过空燃比控制可以很容易地减少液化石油气发动机的HC&CO排放,但是NOx的控制效果不够好。因此,引入了EGR系统以显着减少NOx排放。传统的EGR控制使用映射方法。采用这种映射方法时,校准时间长且工作复杂。神经网络适用于非线性动力学系统的识别和控制。神经网络具有并行性,自组织性,存储性,容错性等诸多优点。如果结构适当且训练时间足够,则使用神经网络可以提高EGR的控制精度并减少标定的成本和时间。本文还介绍了EGR控制系统的软硬件设计。在1.46升4缸火花点火LPG发动机上开发了用于EGR控制的神经网络。实验结果表明,EGR系统可以达到满意的控制效果。

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