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Investigation of nickel hydrogen battery technology for the RADARSAT spacecraft

机译:RADARSAT航天器镍氢电池技术研究

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摘要

The low Earth orbit (LEO) operations of the RADARSAT spacecraft require high performance batteries to provide energy to the payload and platform during eclipse period. Nickel Hydrogen cells are currently competing with the more traditional Nickel Cadmium cells for high performance spacecraft applications at geostationary Earth orbit (GEO) and Leo. Nickel Hydrogen cells appear better suited for high power applications where high currents and high Depths of Discharge are required. Although a number of GEO missions have flown with Nickel Hydrogen batteries, it is not readily apparent that the LEO version of the Nickel Hydrogen cell is able to withstand the extended cycle lifetime (5 years) of the RADARSAT mission. The problems associated with Nickel Hydrogen cells are discussed in the contex of RADARSAT mission and a test program designed to characterize cell performance is presented.
机译:RADARSAT航天器的低地球轨道(LEO)操作需要高性能电池才能在日食期间为有效载荷和平台提供能量。镍氢电池目前正在与更传统的镍镉电池竞争,用于地球静止轨道(GEO)和狮子座的高性能航天器应用。镍氢电池似乎更适合需要高电流和高放电深度的高功率应用。尽管许多GEO任务都使用镍氢电池进行飞行,但尚不很明显LEO型镍氢电池能够承受RADARSAT任务延长的寿命(5年)。在RADARSAT任务的核心中讨论了与镍氢电池有关的问题,并提出了旨在表征电池性能的测试程序。

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