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Model-Based Control System for Air Path and Premixed Combustion of Diesel Engine

机译:基于模型的空气路径控制系统和柴油发动机预混燃烧

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Premixed charge compression ignition (PCCI) combustion has a potential to achieve the low emission level while the thermal efficiency remains high. It requires more precise combustion control due to the low robustness of the premixed combustion. In this study, a model-based control system for both air path system and combustion is developed for realizing the ideal PCCI combustion in future. For the air path system control, a feedback (FB) controller based on H_∞ control theory is used. In this controller, the nonlinearity of the plant is considered as the perturbation and robustness is ensured by H_∞ control. For the combustion control, a feedforward (FF) controller is designed as an inverse model of a discretized combustion model. In this controller, the inverse model is updated cycle by cycle on-board to consider the variation of combustion characteristics depending on operation condition. The performance of the overall control system including both controllers is evaluated by the reference following test under the transient mode operation in both the simulation and the experiment for PCCI-like combustion with advanced fuel injection timing. The control system showed good tracking performance both in air path and combustion systems and the availability of the model-based control system is shown.
机译:预混合电荷压缩点火(PCCI)燃烧具有达到低排放水平的潜力,而热效率保持高。由于预混燃烧的低稳健性,它需要更精确的燃烧控制。在本研究中,开发了一种用于空气路径系统和燃烧的模型控制系统,用于实现未来理想的PCCI燃烧。对于空气路径系统控制,使用基于H_∞控制理论的反馈(FB)控制器。在该控制器中,植物的非线性被认为是通过H_∞控制确保扰动和鲁棒性。对于燃烧控制,前馈(FF)控制器被设计为离散燃烧模型的逆模型。在该控制器中,逆模型通过循环在板上更新周期,以考虑根据操作条件的燃烧特性的变化。包括两个控制器的整体控制系统的性能是通过在仿真和实验的瞬态模式操作下进行的参考测试,以及具有高级燃料喷射正时的PCCI样燃烧的实验。控制系统在空气路径和燃烧系统中显示出良好的跟踪性能,并且示出了基于模型的控制系统的可用性。

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