Performance Analysis of Hybrid and Full Electrical Vehicles Equipped with Continuously Variable Transmissions

A. Elmarakbi, Q. Ren, R. Trimble, M. Elkady
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引用次数: 3

Abstract

The main aim of this paper is to study the potential impacts in hybrid and full electrical vehicles performance by utilising continuously variable transmissions. This is achieved by two stages. First, for Electrical Vehicles (EVs), modelling and analysing the powertrain of a generic electric vehicle is developed using Matlab/Simulink-QSS Toolkit, with and without a transmission system of varying levels of complexity. Predicted results are compared for a typical electrical vehicle in three cases: without a gearbox, with a Continuously Variable Transmission (CVT), and with a conventional stepped gearbox. Second, for Hybrid Electrical Vehicles (HEVs), a twin epicyclic power split transmission model is used. Computer programmes for the analysis of epicyclic transmission based on a matrix method are developed and used. Two vehicle models are built-up; namely: traditional ICE vehicle, and HEV with a twin epicyclic gearbox. Predictions for both stages are made over the New European Driving Cycle (NEDC).The simulations show that the twin epicyclic offers substantial improvements of reduction in energy consumption in HEVs. The results also show that it is possible to improve overall performance and energy consumption levels using a continuously variable ratio gearbox in EVs.
配备无级变速器的混合动力与全电动汽车性能分析
本文的主要目的是研究使用无级变速变速器对混合动力和全电动汽车性能的潜在影响。这是通过两个阶段实现的。首先,对于电动汽车(ev),使用Matlab/Simulink-QSS工具包对通用电动汽车的动力系统进行建模和分析,包括不同复杂程度的传动系统和不含传动系统。对一辆典型电动汽车的预测结果进行了三种情况的比较:无变速箱、无级变速器(CVT)和传统的阶梯变速箱。其次,对于混合动力汽车(hev),采用双周转功率分流传动模型。基于矩阵法的周转传动分析的计算机程序被开发和使用。构建了两种车型;即:传统的ICE车辆,以及带有双周转齿轮箱的HEV。这两个阶段的预测都是在新欧洲驾驶循环(NEDC)中进行的。仿真结果表明,双星环对混合动力汽车的节能效果有显著改善。结果还表明,在电动汽车中使用无级变速变速器可以提高整体性能和能耗水平。
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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