首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Design and evaluation of a predictive powertrain control system for a plug-in hybrid electric vehicle to improve the fuel economy and the emissions
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Design and evaluation of a predictive powertrain control system for a plug-in hybrid electric vehicle to improve the fuel economy and the emissions

机译:插电式混合动力汽车的预测动力总成控制系统的设计和评估,以改善燃油经济性和排放

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In this article, a power management scheme for a plug-in power-split hybrid electric vehicle is designed on the basis of the model predictive control concept of charge depletion plus charge sustenance strategy and the blended-mode strategy. The commands of model predictive control are applied to the powertrain components through appropriate low-level controllers: standard proportional-integral controllers for electric machines, and sliding-mode controllers for engine torque control. Minimization of the engine emissions is a key factor for designing the engine's low-level controller. Applying this control scheme to a validated high-fidelity model of a plug-in hybrid electric vehicle, developed in the MapleSim environment with a chemistry-based Lithium-ion battery model, results in considerable improvements in the fuel economy and the emissions performance.
机译:在本文中,基于电量耗尽加电量维持策略和混合模式策略的模型预测控制概念,设计了插电式动力混合动力混合动力汽车的电源管理方案。通过适当的低级控制器将模型预测控制的命令应用于动力总成组件:用于电机的标准比例积分控制器和用于发动机扭矩控制的滑模控制器。最小化发动机排放是设计发动机低液位控制器的关键因素。将此控制方案应用于在MapleSim环境中开发的,基于化学的锂离子电池模型的经过验证的插电式混合动力电动汽车的高保真模型,可显着改善燃油经济性和排放性能。

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