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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Experimental investigation of the noise, vibration and harshness performances of a range-extended electric vehicle
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Experimental investigation of the noise, vibration and harshness performances of a range-extended electric vehicle

机译:增程电动车的噪声,振动和粗糙度性能的实验研究

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The electrification of vehicles has caused a great change in the characteristics of noise, vibration and harshness. A range-extended electric vehicle has complicated noise and vibration problems because it behaves both like a traditional vehicle and like a battery electric vehicle as well as having its own specific noise, vibration and harshness properties. Therefore, increasing attention should be paid to these issues. This paper is intended as a contribution to the current research on the noise, vibration and harshness of a range-extended electric vehicle. The electric driveline, the auxiliary power unit and the accessories, including the power steering pump, the electric vacuum pump and the air conditioner compressor, are tested and their noise, vibration and harshness performances are analysed. The results indicate that the high-frequency noise of the electric driveline and the vibrations of the auxiliary power unit and the air conditioner compressor are crucial noise, vibration and harshness issues of a range-extended electric vehicle. Some improvement methods are implemented or proposed for better comfort in the passenger compartment. Application of a material which is sound insulating and sound absorbing proved to be an effective countermeasure. The design and refinement of a vibration isolation system for the auxiliary power unit and the air conditioner compressor are of great importance. A reduction in the low-frequency torsional resonance of the auxiliary power unit shaft during a start-stop process is a new problem compared with that of a conventional engine. It is necessary to find a well-balanced compromise between the expected acoustic feedback and the power demand.
机译:车辆的电气化已导致噪音,振动和恶劣环境的特性发生了巨大变化。增程电动车辆具有复杂的噪声和振动问题,因为它的行为既类似于传统车辆又类似于电池电动车辆,并且具有其自身的特定噪声,振动和粗糙度特性。因此,应更加重视这些问题。本文旨在为当前有关增程电动车的噪声,振动和粗糙度的研究做出贡献。对电动动力传动系统,辅助动力装置和附件(包括转向助力泵,电动真空泵和空调压缩机)进行了测试,并分析了它们的噪音,振动和恶劣环境性能。结果表明,电力传动系统的高频噪声以及辅助动力装置和空调压缩机的振动是增程电动汽车的关键噪声,振动和粗糙度问题。实施或提出了一些改善方法,以提高乘客车厢的舒适度。事实证明,应用隔音和吸声材料是有效的对策。辅助动力装置和空调压缩机的隔振系统的设计和改进非常重要。与常规发动机相比,在起动-停止过程期间减小辅助动力单元轴的低频扭转共振是一个新问题。有必要在预期的声学反馈和功率需求之间找到一个平衡良好的折衷方案。

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