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Throttling Impacts on Hall Thruster Performance, Erosion, and Qualification for NASA Science Missions

机译:节流对霍尔推进器性能,侵蚀和NASA科学任务资格的影响

摘要

With the SMART-1, Department of Defense, and commercial industry successes in Hall thruster technologies, NASA has started considering Hall thrusters for science missions. The recent Discovery proposals included a Hall thruster science mission and the In-Space Propulsion Project is investing in Hall thruster technologies. As the confidence in Hall thrusters improve, ambitious multi-thruster missions are being considered. Science missions often require large throttling ranges due to the 1/r(sup 2) power drop-off from the sun. Deep throttling of Hall thrusters will impact the overall system performance. Also, Hall thrusters can be throttled with both current and voltage, impacting erosion rates and performance. Last, electric propulsion thruster lifetime qualification has previously been conducted with long duration full power tests. Full power tests may not be appropriate for NASA science missions, and a combination of lifetime testing at various power levels with sufficient analysis is recommended. Analyses of various science missions and throttling schemes using the Aerojet BPT-4000 and NASA 103M HiVHAC thruster are presented.
机译:凭借SMART-1,国防部和商业领域在霍尔推进器技术方面的成功经验,NASA已开始考虑将霍尔推进器用于科学任务。发现号的最新提议包括霍尔推进器科学任务,太空推进项目正在投资霍尔推进器技术。随着人们对霍尔推进器的信心不断提高,正在考虑进行雄心勃勃的多推力飞行任务。由于1 / r(sup 2)的能量从太阳落下,科学任务通常需要较大的节流范围。霍尔推进器的深度节流将影响整个系统的性能。同样,霍尔推力器可以通过电流和电压进行节流,从而影响腐蚀速率和性能。最后,以前已经通过长时间的全功率测试对电动推进器进行了寿命鉴定。全面功率测试可能不适用于NASA科学任务,建议将各种功率水平下的寿命测试与足够的分析相结合。介绍了使用Aerojet BPT-4000和NASA 103M HiVHAC推进器进行的各种科学任务和节流方案的分析。

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