Challenges in Electric Vehicle NVH

Amal G Kurian, S. Thakur, S. Kunde, Kiran Sankpal, S. Wagh
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引用次数: 1

Abstract

The quest for reducing CO2 footprint by nations worldwide has propelled the automotive industry in taking the turn towards new energy sources. Electric vehicles (EV) are at the helm of this revolution. There have been many hurdles in development of EVs. Vehicle NVH tends to be one of these areas. The change in fundamental source of noise and vibration in a vehicle combined with efforts to increase range by using lighter materials has produced new challenges for NVH engineers. This paper tries to identify the disparities brought about in NVH performance of vehicle with introduction of electric powertrains. A subjective as well as objective approach using state of art is used and methodology elaborated in this paper. Henceforth providing an original and unique contribution to NVH testing of electric vehicles. The core of this work is to analyze the shift in noise and vibration trend with the introduction of electric powertrains thereby finding the challenges in NVH analysis. A multitude of test conditions are performed at vehicle level for acquiring NVH data which is further thoroughly analyzed to bring about the shift in trends observed in electric vehicles. It is observed that a huge reduction in noise levels is observed at idle conditions whereas the difference diminishes as vehicle accelerates to higher speeds. Also mount vibration ranges have significantly reduced with introduction of electric powertrains. Yet there are peculiar phenomena observed in EVs related to switching frequencies of inverter which are visible at higher frequencies. The whole work has been organized into four sections: Noise, tactile vibrations, mount vibrations and noise/vibration transfer functions.
电动汽车NVH面临的挑战
世界各国对减少二氧化碳足迹的追求推动了汽车工业转向新能源。电动汽车(EV)是这场革命的舵手。电动汽车的发展有很多障碍。车辆NVH往往是这些领域之一。车辆基本噪声源和振动源的变化,以及通过使用更轻的材料来增加行驶里程的努力,给NVH工程师带来了新的挑战。本文试图找出引入电动动力系统后,车辆NVH性能所带来的差异。本文采用了主观和客观的方法,并阐述了方法。从此,为电动汽车的NVH测试提供了原创和独特的贡献。这项工作的核心是分析随着电动动力系统的引入,噪声和振动趋势的变化,从而找到NVH分析的挑战。为了获取NVH数据,在车辆层面上进行了大量的测试条件,并对这些数据进行了进一步的深入分析,从而得出在电动汽车中观察到的趋势变化。据观察,在怠速条件下,噪音水平会大幅降低,而当车辆加速到更高的速度时,这种差异会减小。此外,随着电动动力系统的引入,安装振动范围也大大减少。然而,在电动汽车中观察到与逆变器开关频率有关的特殊现象,这些现象在较高的频率下是可见的。整个工作分为四个部分:噪声、触觉振动、底座振动和噪声/振动传递函数。
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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