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Simulation study on the measured difference in fuel consumption between real-world driving and ECE-15 of a hybrid electric vehicle

机译:混合动力汽车现实世界驾驶与ECE-15燃料消耗差异的仿真研究

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Hybrid electric vehicles (HEVs) are sensitive to the driving conditions under which they are used, leading to greater fuel consumption than quoted by the manufacturer, and therefore higher CO_2 emissions. Real-world driving can be very different from the legislative drive cycles as speeds are greater, there are faster changes in speed, and these changes occur at a greater frequency. This study aims to investigate where the differences between real-world driving and the ECE-15 urban drive cycle occur through development of a real-world drive cycle and via a system simulation study. A second generation 2004 Toyota Prius equipped with a GPS (Global Positioning System) data logging system was used to collect data while in use by Loughborough University Security over a period of 9 months. These data were used for the development of a drive cycle, Loughborough University Urban Drive Cycle (LUUDC), representing urban driving around the university campus and local urban area. The same vehicle was tested on a chassis dynamometer on the LUUDC against the ECE-15 cycle and others. Fuel consumption was measured and CO_2 emissions were calculated and compared. A model based on Autonomie vehicle simulation software was used to simulate and analyse the differences. The test and modelling results showed higher fuel consumption on LUUDC than ECE-15. The reasons for this will be discussed in this paper.
机译:混合动力电动车辆(HEV)对所用的驱动条件敏感,导致燃料消耗量比制造商的引用更大,因此较高的CO_2排放。当速度更大时,实际驾驶与立法驱动循环可能非常不同,速度更快,这些变化发生了更大的频率。本研究旨在调查现实世界驾驶与ECE-15城市驱动周期之间的差异,通过开发现实世界的驱动周期,并通过系统仿真研究。第二代2004年丰田普锐斯配备了GPS(全球定位系统)数据记录系统,用于收集数据,而Loughborough大学安全在9个月内使用。这些数据用于开发驱动周期,Loughborough大学城市驱动周期(Luudc),代表大学校园和地方城区的城市驾驶。在Luudc上的底盘测功机上测试了相同的车辆对抗ECE-15循环和其他车辆。测量燃料消耗,并计算CO_2排放并进行比较。使用基于Automie车辆仿真软件的模型来模拟和分析差异。测试和建模结果表明LUUDC的燃料消耗量比ECE-15更高。本文将讨论这一点的原因。

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