基于分析目标级联的cvt电动传动系统集成设计

C. A. Fahdzyana, Mauro Salazar, Tijs Donkers, T. Hofman
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引用次数: 2

摘要

作为传统发动机汽车的有效替代品,电动汽车的势头正在增强。为了满足市场的高期望,他们必须争取类似的,如果不是更好的,性能和行驶里程。为此,他们的动力系统必须精心设计,并考虑到各种组件之间的相互连接。在本文中,我们提出了一个电动动力系统的协同设计框架,在此框架中,我们共同优化电机(EM)的尺寸和无级变速器(CVT)的几何形状及其传动比轨迹,以最小化车辆的能耗为目标。具体来说,我们首先以一种综合的方式构建了最小能量协同设计问题,考虑了CVT的几何形状和动力学以及EM尺寸。考虑到问题的复杂性,我们将其分解为EM-design和CVT-design子问题,共同优化CVT-ratio轨迹,并利用分析目标级联(ATC)有效地解决设计问题。最后,我们在新欧洲驾驶循环(NEDC)中展示了我们的框架,强调了以一体化方式设计动力系统的重要性:与仅优化EM、CVT或控制系统的情况相比,我们的EM-CVT联合设计可以将车辆的能耗提高22%。
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Integrated Design of a CVT-equipped Electric Powertrain via Analytical Target Cascading
Electric vehicles are gaining momentum as a valid alternative to conventional engine-based cars. In order to meet the high expectation of the market, they must strive for a similar, if not better, performance and driving range. To this end, their powertrain must be carefully designed and account for the interconnections among the various components in an integrated fashion. In this paper, we present a co-design framework for electric powertrains, whereby we jointly optimize the size of the electric machine (EM) and the geometry of a continuously variable transmission (CVT) together with its ratio trajectory, with the goal of minimizing the energy consumption of the vehicle. Specifically, we first frame the minimum-energy co-design problem in an integrated manner, accounting for the CVT geometry and dynamics, and the EM size. Given the problem complexity, we decompose it into an EM-design and a CVT-design subproblem, whereby we jointly optimize the CVT-ratio trajectory, and leverage analytical target cascading (ATC) to effectively solve the design problem. Finally, we showcase our framework on the New European Driving Cycle (NEDC), highlighting the importance of designing powertrains in an integrated fashion: Compared to the case whereby only the EM, the CVT, or the control are optimized, our joint EM-CVT design can improve the energy consumption of the vehicle by up to 22%.
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