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Equalization of valve-regulated lead-acid batteries: issues and life test results

机译:阀调节铅酸电池的均衡:问题和生命测试结果

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The importance of state-of-charge (SOC) balance, or equalization, is well known. Results of accelerated life testing are presented to evaluate equalization requirements and to compare passive and active equalization approaches for valve-regulated lead-acid (VRLA) batteries. In both heavy cycling duty and high-temperature duty, battery degradation appears very early during expected life in the absence of equalization. The degree of equalization is critical: results show that voltage differences should beheld to less than 15 mV/cell to prevent SOC separation in repeated cycling. The tests confirm that conventional overcharge-based passive equalization is effective for VRLA batteries-if there is sufficient time to ensure SOC matching among cells. Most proposed active voltage equalization methods in effect transfer the problem of SOC matching to external voltage matching of sensors and magnetic elements. Matching at the 15 mV/cell level is costly. A switched-capacitor approach has been identified that avoids this limitation. Test results show that switched capacitor equalization is useful, particularly when the series string is too long to support enough time for passive equalization.
机译:充电状态(SOC)平衡或均衡的重要性是众所周知的。提出了加速寿命测试的结果,以评估均衡要求,并比较阀调节铅酸(VRLA)电池的被动和主动均衡方法。在重型循环占空比和高温占空比中,在没有均衡的情况下,在预期的寿命期间,电池劣化非常早。均衡程度至关重要:结果表明,电压差应位于少于15mV /细胞,以防止重复循环中的SOC分离。测试确认,传统的基于过充电的被动均衡为VRLA电池有效 - 如果有足够的时间来确保单元之间的SOC匹配。最提出的主动电压均衡方法实际上将SOC匹配的问题传递到传感器和磁性元件的外部电压匹配。在15 MV / CELL级别匹配成本高昂。已识别开关电容方法,以避免这种限制。测试结果表明,开关电容均衡有用,特别是当串联串太长时足以支持被动均衡的足够的时间。

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