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Developing a model for analysis of the cooling loads of a hybrid electric vehicle by using co-simulations of verified submodels

机译:通过使用经过验证的子模型的协同仿真,开发用于分析混合动力汽车冷却负荷的模型

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摘要

The requirement for including the air-conditioning and the battery-cooling loads within the energy efficiency analyses of a hybrid electric vehicle is widely recognized and has promoted system-level simulations and integrated modelling, escalating the challenge of balancing the accuracy and the speed of simulations. In this paper, a hybrid electric vehicle model is created through co-simulation of the passenger cabin, the air conditioning, the battery cooling, and the powertrai. Calibration and verification of the submodels help determine their accuracy in representing the target vehicle and achieve a balance between the model fidelity and the simulation speed. The result is a model which has a higher accuracy and a higher speed than those of similar models developed previously and which provides a reliable tool for a thorough investigation of the cooling loads for different ambient conditions and different duty cycles.
机译:在混合动力电动汽车的能效分析中包括空调和电池冷却负荷的要求已得到广泛认可,并促进了系统级仿真和集成建模,从而加剧了在仿真精度和速度之间取得平衡的挑战。在本文中,通过对客舱,空调,电池冷却和动力系统的共同仿真,创建了混合动力电动汽车模型。子模型的校准和验证有助于确定其代表目标车辆的准确性,并在模型逼真度和仿真速度之间取得平衡。结果是,与以前开发的类似模型相比,该模型具有更高的精度和更高的速度,并且为深入研究不同环境条件和不同占空比的冷却负载提供了可靠的工具。

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