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Charging performance of automotive batteries-An underestimated factor influencing lifetime and reliable battery operation

机译:汽车电池的充电性能-影响寿命和可靠电池运行的一个低估因素

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摘要

Dynamic charge acceptance and charge acceptance under constant voltage charging conditions are for two reasons essential for lead-acid battery operation: energy efficiency in applications with limited charging time (e.g. PV systems or regenerative braking in vehicles) and avoidance of accelerated ageing due to sulphation. Laboratory tests often use charge regimes which are beneficial for the battery life, but which differ significantly from the operating conditions in the field. Lead-acid batteries in applications with limited charging time and partial-state-of-charge operation are rarely fully charged due to their limited charge acceptance. Therefore, they suffer from sulphation and early capacity loss. However, when appropriate charging strategies are applied most of the lost capacity and thus performance for the user may be recovered. The paper presents several aspects of charging regimes and charge acceptance. Theoretical and experimental investigations show that temperature is the most critical parameter. Full charging within short times can be achieved only at elevated temperatures. A strong dependency of the charge acceptance during charging pulses on the pre-treatment of the battery can be observed, which is not yet fully understood. But these effects have a significant impact on the fuel efficiency of micro-hybrid electric vehicles.
机译:动态充电接受和恒定电压充电条件下的充电接受是铅酸电池运行必不可少的两个原因:充电时间有限的应用(例如,光伏系统或车辆的再生制动)中的能效以及避免因硫酸盐加速老化。实验室测试通常使用有利于电池寿命的充电方式,但与现场的工作条件有很大差异。铅酸电池在有限的充电时间和部分充电状态下运行时,由于可接受的充电很少,因此很少充满电。因此,它们遭受硫酸化和早期容量损失。然而,当应用适当的充电策略时,大部分损失的容量,因此可以恢复用户的性能。本文介绍了收费制度和收费接受的几个方面。理论和实验研究表明温度是最关键的参数。仅在高温下才能在短时间内充满电。可以观察到充电脉冲期间充电接受对电池预处理的强烈依赖性,这尚未完全被理解。但是这些影响对微混合动力电动汽车的燃油效率有重大影响。

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