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Lead-acid batteries in micro-hybrid applications. Part I. Selected key parameters

机译:微混合应用中的铅酸电池。第一部分:选定的关键参数

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Micro-hybrid electric vehicles were launched by BMW in March 2007. These are equipped with brake energy regeneration (BER) and the automatic start and stop function (ASSF) of the internal combustion engine. These functions are based on common 14V series components and lead-acid (LA) batteries. The novelty is given by the intelligent onboard energy management, which upgrades the conventional electric system to the micro-hybrid power system (MHPS). In part I of this publication the key factors for the operation of LA batteries in the MHPS are discussed. Especially for BER one is high dynamic charge acceptance (DCA) for effective boost charging. Vehicle rest time is identified as a particular negative parameter for DCA. It can be refreshed by regular fully charging at elevated charge voltage. Thus, the batteries have to be outstandingly robust against overcharge and water loss. This can be accomplished for valve-regulated lead-acid (VRLA) batteries at least if they are mounted in the trunk. ASSF goes along with frequent high-rate loads for warm cranking. The internal resistance determines the drop of the power net voltage during cranking and is preferably low for reasons of power net stability even after years of operation. Investigations have to be done with aged 90 Ah VRLA-absorbent glass mat (AGM) batteries. Battery operation at partial state-of-charge gives a higher risk of deep discharging (overdischarging). Subsequent re-charging then is likely to lead to the formation of micro-short circuits in the absorbent glass mat separator.
机译:宝马于2007年3月推出了微型混合动力电动汽车。它们配备了制动能量再生(BER)和内燃机的自动启动和停止功能(ASSF)。这些功能基于常见的14V系列组件和铅酸(LA)电池。智能车载能源管理赋予了这种新颖性,它将常规的电气系统升级为微混合动力系统(MHPS)。在本出版物的第一部分中,讨论了用于MHPS中LA电池工作的关键因素。特别是对于BER而言,是一种用于有效升压充电的高动态电荷接受(DCA)。车辆休息时间被识别为DCA的特定负参数。可以通过在升高的充电电压下定期完全充电来刷新它。因此,电池必须具有出色的坚固性,以防止过度充电和水分流失。对于阀控式铅酸(VRLA)电池,至少将其安装在后备箱中才能实现。 ASSF伴随着频繁的高负荷进行热启动。内部电阻决定了起动过程中电网电压的下降,并且由于电网稳定性的原因,即使经过多年的运行,其内阻也优选较低。必须使用90 Ah VRLA吸收玻璃垫(AGM)老化电池进行调查。电池在部分充电状态下操作时,发生深度放电(过度放电)的风险更高。然后,随后的再充电很可能导致在吸收性玻璃垫隔板中形成微短路。

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