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A Model Predictive Controller for the Cooling System of Internal Combustion Engines

机译:内燃机冷却系统的模型预测控制器

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The paper presents some results of the Model Predictive Controller (MPC) methodology applied to the case of the cooling system of an Internal Combustion Engine. To this end, a small spark ignition engine, about 1.2 dm~3 displacement volume, is equipped with an electric pump, which is actuated by the controller, independently of engine speed. The goal of the proposed control is to achieve a faster engine warm-up and an effective engine cooling with a much lower coolant flow rate than the one usually adopted, by bringing the cooling system to operate around the onset of nucleate boiling. The developed Model Predictive Control application makes use of a lumped-parameter model, which predicts the heat transfer both in the case of a single-phase forced convection condition and in the presence of nucleate boiling. The performance of the proposed controller is evaluated during the city driving part of the NEDC homologation cycle, which was replicated at the engine test rig. The results show that the proposed controller is robust in terms of disturbance rejection and is effective in reducing warm-up time.
机译:本文介绍了应用于内燃机冷却系统的模型预测控制器(MPC)方法的一些结果。为此,小火花点火发动机,约1.2 dm〜3位移量,配有电动泵,该电动泵由控制器致动,独立于发动机速度。所提出的控制的目标是通过使冷却系统在核心沸腾的开始围绕核心沸腾的开始,实现更快的发动机预热和具有远低冷却剂流量的有效发动机冷却。开发的模型预测控制应用利用大量参数模型,其在单相强制对流条件和核心沸腾存在下预测热传递。在NEDC同源周期的城市驱动部分期间评估所提出的控制器的性能,该部件在发动机试验台上复制。结果表明,在干扰抑制方面,该拟议控制器具有稳健性,有效地减少热预热时间。

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