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International space station nickel-hydrogen battery start-up and initial performance

机译:国际空间站镍 - 氢电池启动和初始性能

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International Space Station (188) Electric Power System (EPS) utilizes Nickel-Hydrogen (Ni-H{sub}2) batteries as part of its power system to store electrical energy. The batteries are charged during insolation and discharged during eclipse. The batteries are designed to operate at a 35% depth of discharge (DOD) maximum during normal operation. Thirty eight individual pressure vessel (IPV) Ni-H{sub}2 battery cells are series-connected and packaged in an Orbital Replacement Unit (ORU). Two ORUs are series-connected utilizing a total of 76 cells, to form one battery. The 155 is the first application for low earth orbit (LEO) cycling of this quantity of series-connected eel Is. The P6 Integrated Equipment Assembly (WA) containing the initial 188 high-power components was successfully launched on November 30, 2000. The WA contains 12 Battery Subassembly ORUs (6 batteries) that provide station power during eclipse periods. This paper will describe the battery hardware configuration, operation, and role in providing power to the main power system of the 188. We will also discuss initial battery start-up and performance data.
机译:国际空间站(188)电力系统(EPS)利用镍 - 氢(Ni-H {Sub} 2)电池作为其电力系统的一部分,以存储电能。电池在剥离期间充电并在日食期间放电。电池设计用于在正常操作期间在35%的放电深度(DOD)中运行。三十八个单独的压力容器(IPV)Ni-H {Sub} 2电池单元电池电池串联连接并封装在轨道替换单元(ORU)中。两个orus是连续的,使用总共76个细胞,形成一个电池。该155是第一个用于低地球轨道(LEO)循环此数量的串联鳗鱼的应用。包含初始188个高功率组件的P6集成设备组件(WA)于2000年11月30日成功推出.WA包含12个电池子组件ORU(6个电池),在日食期间提供电台电源。本文将描述电池硬件配置,操作和在为188的主电源系统提供电源的作用。我们还将讨论初始电池启动和性能数据。

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