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Understanding vibration frequencies experienced by electric vehicle batteries

机译:了解电动车辆电池经历的振动频率

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There has been comparably little research published critically examining the mechanical integration of the high voltage (HV) battery within either a battery electric vehicle (BEV) or a hybrid electric vehicle (HEV). The effects of vibration on electrical and electronic components and subsystems are potentially a major cause of in market durability failures. If excessive warranty claims are to be avoided, it is important that engineers tasked with the design of the HV battery system properly understand the magnitude and frequency of the vibration inputs that the system will be exposed to during the vehicle's predicted life. This paper outlines a study into the typical vibration input levels experienced by a range of BEV's and their battery packs when subjected to customer representative road surfaces. This research was conducted through the instrumentation and measurement of the vibration behaviour of the HV battery packs installed within a selection of commercially available BEVs and HEVs when driven over the repeatable surfaces at Millbrook Proving Ground. The primary conclusions are that there is evidence to suggest that the RESS construction, the associated cooling strategy and surfaces associated with a vehicles operational environment will impact the vibration behaviour observed by the energy storage device. There is also evidence to suggest that Engineers need to consider vibration frequencies above 300Hz when designing HV battery systems as it has been observed within this study that high frequency vibration from power electronics, electric drives and thermal management, can all be transmitted to the on-board energy storage device. Finally, results are presented within this document highlight the necessity for engineers to consider the battery vibration isolation strategy and the RESS to body integration as mod
机译:在电池电动车(BEV)或混合动力电动车辆(HEV)内,已经批判性地检查了高压(HV)电池的机械集成的较少研究。振动对电气和电子元件和子系统的影响可能是市场耐用性失败的主要原因。如果要避免过度保修索赔,重要的是,工程师任务的设计HV电池系统的设计正确地理解系统将在车辆预测的寿命期间暴露在振动输入的幅度和频率。本文概述了在经过客户代表性道路表面时由一系列BEV及其电池组经历的典型振动输入水平的研究。该研究通过仪器进行,测量HV电池组的振动行为,当在米尔布鲁克证明地面的可重复表面上时,在商业上可获得的BEV和HEV中安装。主要结论是有证据表明,与车辆操作环境相关联的RESS结构,相关的冷却策略和表面将影响能量存储装置观察到的振动行为。还有证据表明,工程师在设计HV电池系统时需要考虑300Hz以上的振动频率,因为它在这项研究中观察到,从电力电子设备,电动驱动器和热管理的高频振动都可以传输到ON - 板储能设备。最后,在本文档中介绍了结果突出了工程师的必要性,以考虑电池振动隔离策略和ress作为mod的身体集成

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