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The NEXT-C Power Processing Unit: Lessons Learned from the Design, Build, and Test of the NEXT-C PPU for APL's DART Mission

机译:下C电源处理单元:从Design,Build和Rest的设计,构建和测试获取APL的DART任务的经验教训

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NASA's Double Asteroid Redirection Test (DART) will be the first-ever planetary defense mission to demonstrate asteroid deflection using kinetic impactor technology. The DART spacecraft will utilize the NASA Evolutionary Xenon Thruster (NEXT), which is a successor to the NSTAR ion propulsion system that successfully propelled NASA's Deep Space 1 and Dawn spacecraft. In 2015, NASA teamed with Aerojet Rocketdyne and ZIN Technologies on the NEXT-Commercial (NEXT-C) effort to manufacture a Flight-Qualified (TRL 8) power processing unit (PPU). The NEXT-C PPU was based on the heritage gridded ion thruster PPU from NSTAR and NEXT, but with significant improvements in performance and manufacturability. The design goals of the NEXT-C PPU were to achieve the technical performance goals of the PPU in size, mass, and efficiency over a wide range of input voltage and output power. This paper discusses the lessons learned from the design, build, and test of the NEXT-C PPU, and how challenges were overcome to deliver a Flight PPU.
机译:美国宇航局的双令战小行星重定向测试(DART)将是第一个使用动力学撞击型技术展示小行星偏转的行星防御任务。飞镖宇宙飞船将利用美国宇航局进化的氙气推进器(下一个),这是NSTAL离子推进系统的继任者,该系统成功推进了NASA的深空1和黎明航天器。 2015年,美国宇航局与Aerojet Rocketdyne和Zin Technologies合作,在下一步商业(下一C)努力制造飞行合格(TRL 8)电源处理单元(PPU)。 Next-C PPU基于NSTAR和Next的遗产包装离子推进器PPU,但具有显着提高性能和可制造性。 Next-C PPU的设计目标是在广泛的输入电压和输出功率范围内实现PPU的技术性能目标。本文讨论了从下一组PPU的设计,构建和测试中汲取的经验教训,以及如何克服挑战以提供PPU。

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