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Auxiliary Model Review for Design Analysis of Hybrid Electric Heavy-Duty Long-Haul Vehicles

机译:混合电力重载长途车辆设计分析辅助模型综述

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The upcoming of CO_2 emission legislations for heavy-duty long-haul vehicles, causes a shift of the focus of powertrain design for heavy-duty vehicles towards the reduction of CO_2 emissions. In order to combine several interesting complex solutions for CO_2 reduction, such as hybridization of the powertrain, electrification of auxiliaries and the use of a waste heat recovery system, an integrated powertrain design optimization has to be performed. This requires to incorporate all components of the vehicle to be integrated in the optimization process, and thereby requires design analysis models of all vehicle components. In this work, we focus on modeling of two electrified auxiliary components; the power steering unit and the air compressor. An overview will be given of the type of models currently used in literature, which will be evaluated on whether they are suitable for an integrated design optimization process. This will be followed by an discussion of ideas for future research. The trade off between accuracy and computational efficiency of the models is one of the key parameters in this study.
机译:即将到来的重型长途车辆的CO_2排放法规,导致动力系设计的重点转向重型车辆朝向减少CO_2排放。为了将多个有趣的复合体解决方案结合用于CO_2还原,例如动力总成的杂交,助剂的电气化和废热回收系统的使用,必须执行集成的动力系设计优化。这需要将车辆的所有组件结合到优化过程中,从而需要所有车辆组件的设计分析模型。在这项工作中,我们专注于两个电气化辅助部件的建模;动力转向单元和空气压缩机。概述将给出目前在文献中使用的模型类型,将评估它们是否适合于集成设计优化过程。这将是对未来研究的思想讨论。模型的准确性和计算效率之间的折衷是本研究中的关键参数之一。

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