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The NASA In-Space Propulsion Technology Project, Products, and Mission Applicability

机译:NASA太空推进技术项目,产品和任务适用性

摘要

The In-Space Propulsion Technology (ISPT) Project, funded by NASA s Science Mission Directorate (SMD), is continuing to invest in propulsion technologies that will enable or enhance NASA robotic science missions. This overview provides development status, near-term mission benefits, applicability, and availability of in-space propulsion technologies in the areas of aerocapture, electric propulsion, advanced chemical thrusters, and systems analysis tools. Aerocapture investments improved: guidance, navigation, and control models of blunt-body rigid aeroshells; atmospheric models for Earth, Titan, Mars, and Venus; and models for aerothermal effects. Investments in electric propulsion technologies focused on completing NASA s Evolutionary Xenon Thruster (NEXT) ion propulsion system, a 0.6 to 7 kW throttle-able gridded ion system. The project is also concluding its High Voltage Hall Accelerator (HiVHAC) mid-term product specifically designed for a low-cost electric propulsion option. The primary chemical propulsion investment is on the high-temperature Advanced Material Bipropellant Rocket (AMBR) engine providing higher performance for lower cost. The project is also delivering products to assist technology infusion and quantify mission applicability and benefits through mission analysis and tools. In-space propulsion technologies are applicable, and potentially enabling for flagship destinations currently under evaluation, as well as having broad applicability to future Discovery and New Frontiers mission solicitations.
机译:由NASA科学任务局(SMD)资助的太空推进技术(ISPT)项目正在继续投资于推动或增强NASA机器人科学任务的推进技术。该概述提供了航空航天,电力推进,先进的化学推进器和系统分析工具领域的发展状况,近期任务收益,适用性以及太空推进技术的可用性。改进了航空捕获的投资:钝体刚性机壳的制导,导航和控制模型;地球,土卫六,火星和金星的大气模型;和空气热效应模型。电力推进技术的投资重点在于完善NASA的进化型氙气推进器(NEXT)离子推进系统,这是一种0.6至7 kW可节流的可并网离子系统。该项目还将结束其高压霍尔加速器(HiVHAC)中期产品,该产品专门为低成本电动推进选件而设计。主要的化学推进投资是高温先进材料双推进火箭(AMBR)发动机,该发动机可提供更高的性能,而成本更低。该项目还将交付产品,以通过任务分析和工具协助技术注入并量化任务的适用性和收益。太空推进技术是适用的,并且有可能使目前正在评估中的旗舰目的地成为可能,并且对未来的“发现”和“新边界”任务征求具有广泛的适用性。

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