Mild-Hybrid Electric Vehicle: EM management to prevent dry clutch overheating

Mario Pisaturo, A. Senatore
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引用次数: 2

Abstract

Heat power generated in dry clutch systems during repeated engagements could result in marked uncomfort and manifest damage clutch facing materials. Indeed, recent studies have highlighted as during a single launch manoeuvre the interface temperature can amount about 30–35 Celsius degree. Consequently, after only few repeated engagements in short time the clutch material temperature can attain critical values, i.e. 250–300 Celsius degree. For this reason, the electric motor contribution to reduce overheating of clutch material during the slipping phase could represent a good solution to avoid dry clutch damage. In this paper a high-level Model Predictive Controller with time-variant penalty weights accordingly with working conditions has been implemented. The goal of this study is to manage both internal combustion engine and electric motor during clutch engagements in order to relieve dry clutch during a critical launch manoeuvre. Particularly, the following scenario has been assumed: high initial clutch temperature due to previous repeated engagements, up-hill start-up manoeuvre and low initial SOC.
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轻度混合动力汽车:电磁管理防止干式离合器过热
干式离合器系统在重复接触过程中产生的热能可能导致明显的不舒适和明显的离合器表面材料损坏。事实上,最近的研究强调,在一次发射演习中,界面温度可以达到30-35摄氏度左右。因此,在短时间内仅经过几次重复接触后,离合器材料温度就可以达到临界值,即250-300摄氏度。出于这个原因,电动机有助于减少离合器材料在滑动阶段的过热,可以代表一个很好的解决方案,以避免干式离合器损坏。本文实现了一种随工况变化具有时变惩罚权的高级模型预测控制器。本研究的目标是在离合器接合期间管理内燃机和电动机,以便在关键发射机动期间缓解干离合器。特别是,假设了以下情况:由于之前的重复接合导致初始离合器温度过高,上坡启动操作以及初始SOC较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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