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Lithium ion batteries for Mars exploration missions

机译:用于火星探测任务的锂离子电池

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The upcoming NASA missions aimed at exploring our Planetary system require batteries that can operate at extreme operating temperatures, with high specific energy and energy densities. Conventional aerospace rechargeable battery systems are inadequate to meet the demands. Lithium ion rechargeable batteries are thus being chosen for these missions. The Mars 2001 (Mars Surveyor Program MSP 01) Lander and the 2003 Mars Sample Return/Athena Rover are among the first of NASA's missions to utilize the lithium ion technology. One common feature of these two missions is the need for the battery to operate well at sub-zero temperatures (down to -30/spl deg/C), at moderate rates of charge and discharge. Elsewhere are therefore focussing on improving the low temperature performance of Li ion cells. Preliminary evaluations of the prototype cells reveal the adequacy of their performance to the needs of these missions.
机译:即将进行的旨在探索我们的行星系统的NASA任务需要能够在极端工作温度下运行,具有高比能量和能量密度的电池。常规的航空可充电电池系统不足以满足需求。因此,锂离子可充电电池被选择用于这些任务。 2001年的火星(火星测量师计划MSP 01)着陆器和2003年的火星样品归还/雅典娜漫游者是NASA利用锂离子技术的首批任务之一。这两个任务的一个共同特征是需要电池在零度以下的温度(低至-30 / spl deg / C)下以适度的充电和放电速率良好运行。因此,其他地方都集中在改善锂离子电池的低温性能上。对原型单元的初步评估表明,它们的性能足以满足这些任务的需要。

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