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Development of a CubeSat-Scale Green Monopropellant Propulsion System for NASA's Lunar Flashlight Mission

机译:美国宇航局的月球手电筒使命的立方体鳞片绿色单普利特推进系统的开发

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NASA's Lunar Flashlight is a low-cost 6U CubeSat whose mission is to search for ice and mineral deposits inside of the scattered craters at Moon's southern pole. To conduct its primary science mission, Lunar Flashlight must be placed in a stable lunar polar orbit which requires the utilization of an on-board propulsion system. However, to this date, most CubeSats have been propelled by cold-gas or electric propulsion systems that have proven to scale well but lack sufficient impulse to conduct large △V maneuvers such as orbit insertions. To this end, the Lunar Flashlight mission has chosen to utilize a custom-designed green monopropellant propulsion system developed by the Georgia Institute of Technology under the leadership of NASA's Marshall Space Flight Center and support from the Jet Propulsion Laboratory. The developed system is capable of providing more than the required propulsive capability for full mission success while fitting inside of a 2.5U volume and weighing less than six kilograms. The system utilizes the Advanced Spacecraft Energetic Non Toxic (ASCENT) green monopropellant that provides higher specific impulse compared to traditional hydrazine while also being safer to handle. If successful, the presented propulsion system will enable Lunar Flashlight to be the first CubeSat to reach the Moon, the first to conduct an orbit insertion, and will be the first CubeSat demonstration of the ASCENT propellant.
机译:美国宇航局的月球手电筒是一个低成本的6U立方体,其使命是在月球南极的散射陨石坑内搜索冰和矿物沉积物。为了进行其主要科学使命,月球手电筒必须放在稳定的月球极性轨道中,需要利用车载推进系统。然而,在此日期,大多数立方体都被冷气或电动推进系统推动,这些系统已经被证明是井井空间,但缺乏足够的冲动来进行轨道插入等轨道。为此,月球手电使命选择利用由佐治亚州理工学院开发的定制设计的绿色单板推进系统,该系统在美国宇航局的马歇尔航天飞行中心的领导下,并从喷气式推进实验室的支持下。开发系统能够提供超过所需的推进能力,以满足全方位的成功,同时拟合2.5U体积的内部,重量不到六公斤。该系统利用先进的航天器能量无毒(上升)绿色单普林,与传统的肼相比,提供更高的特异性脉冲,同时也更安全地处理。如果成功的话,所提出的推进系统将使月球手电筒能够成为到达月球的第一个立方体,首先进行轨道插入,并将是第一章的推进剂的立方体演示。

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