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Low rate trickle charging of nickel-hydrogen batteries

机译:镍氢电池的低速率trick流充电

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Nickel-hydrogen battery management, during spacecraft prelaunch activities, traditionally includes active cooling if high state of charge is required at launch. The NASA AXAF-I Program has been investigating techniques for managing nickel-hydrogen battery state of charge, during prelaunch and launch operations, in the absence of active cooling. These investigations demonstrate that high states of charge can be achieved and maintained, in the absence of active cooling, utilizing adiabatic charging and low rate trickle charging techniques. This paper describes the experimental determination of steady state battery capacity and temperature, during low rate trickle charging, in a simulated prelaunch ambient environment. Initial parametric data was obtained with individual cells. Subsequently a six-cell battery module, simulating the 22-cell flight battery thermal characteristics, was designed and fabricated. The module was mounted in a structure simulating the thermal environment the battery would experience in the spacecraft, during prelaunch operations. The test set up was fully instrumented. The six-cell module was trickle charged at rates in the range C/100 to C/1000. Steady state capacities and temperatures were determined. Test results indicate that trickle charge rates less than or equal to the self discharge rate (/spl sim/C/750) do not significantly increase dissipation beyond that due to the self discharge. Accordingly, significant trickle charge rates (/spl sim/C/500) result in battery temperatures only a few degrees (F) higher than observed during periods of open circuit stand.
机译:在航天器预发射活动中,镍氢电池管理通常包括主动冷却,如果发射时需要高充电状态的话。 NASA AXAF-I计划一直在研究在没有主动冷却的情况下,在预发射和发射操作期间管理镍氢电池充电状态的技术。这些研究表明,在没有主动冷却的情况下,利用绝热充电和低速rate流充电技术可以实现并维持高充电状态。本文介绍了在模拟的预启动环境下低速trick流充电期间稳态电池容量和温度的实验确定。初始参数数据是使用单个单元格获得的。随后,设计并制造了一个六节电池模块,模拟了22节飞行电池的热特性。该模块安装在模拟发射前操作期间电池在航天器中会经历的热环境的结构中。测试设置已全面测试。六节电池模块的trick流充电速率为C / 100至C / 1000。确定稳态容量和温度。测试结果表明,小于或等于自放电率(/ spl sim / C / 750)的trick流充电率不会显着增加自放电引起的耗散。因此,显着的trick流充电速率(/ spl sim / C / 500)导致电池温度仅比断路待机期间所观察到的温度高几度(F)。

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