ICE Vehicle Energy Consumption Measurement and Calculation Methodology for the Purpose of EV Battery Pack Design

A. Peršič, Hrvoje Kristek, V. Peršić, M. Vrazic
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Abstract

This paper presents a standard vehicle’s energy consumption calculation for the purpose of an electric vehicle (EV) battery pack design procedure. The vehicle dynamics parameters were measured on a route located on a mountainous terrain with a standard driving profile. Vehicle used to conduct the measurements, was a standard internal combustion engine (ICE) vehicle. Afterwards the measured parameters have been used as inputs to a vehicle dynamics model to calculate the resistive forces "on the wheels" that the vehicle had to overcome to achieve the desired driving profile on the specified route. Those forces are then used to calculate the average energy consumption of the vehicle on the mentioned route, only to be scaled to the battery pack with the use of the powertrain model. Furthermore, the consumptions of the vehicle’s onboard electrical devices are added to receive the complete energy consumption of the vehicle on the specified route with the desired driving profile. The before mentioned average energy consumption (in kWh/km), can be then used for further application of this vehicle model in different scenarios.
面向电动汽车电池组设计的内燃机汽车能耗测量与计算方法
本文提出了一种用于电动汽车电池组设计的标准车辆能耗计算方法。车辆动力学参数的测量是在一条位于山区地形的路线上,采用标准的驾驶剖面。用于进行测量的车辆是一辆标准的内燃机(ICE)车辆。然后,测量的参数被用作车辆动力学模型的输入,以计算车辆必须克服的“车轮上”的阻力,以在指定路线上实现所需的行驶轮廓。然后,这些力被用来计算车辆在上述路线上的平均能耗,只有使用动力系统模型才能缩放到电池组。进而,将车辆车载电气设备的能耗相加,得到车辆在指定路线上以期望的行驶轮廓行驶的全部能耗。上述平均能耗(单位:kWh/km)可用于该车型在不同场景下的进一步应用。
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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