JOURNAL ARTICLE

Solar electric propulsion breadboard thrust subsystem test results

Abstract

Work providing a firm basis for building an engineering model thrust subsystem (TSS) is described. A 1500-hr functional demonstration test revealed the impact of each element on TSS integration, operation, and future development. The primary conclusions are: accurate and specific definition of interfaces is essential to a timely system integration program. In addition to normal operating requirements, this definition must include requirements for preflight checkout, self-protection of all interfaces, capability expansion, failure modes, maximum input power, interelement power losses, noise and transient sensitivity and production, packaging for vacuum, thermal control, electrical grounding, cabling, mounting, and handling. In any future design, each phase of the TSS operation (startup, throttling, switching, etc.) should be considered in detail to anticipate and account for possible in-flight variations in element characteristics and performance.

Keywords:
Breadboard Propulsion Aerospace engineering Thrust Electrically powered spacecraft propulsion Test (biology) Astrobiology Ion thruster Aeronautics Engineering Computer science Electrical engineering Automotive engineering Environmental science Physics Geology

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3
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2.64
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1
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0.90
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Topics

Rocket and propulsion systems research
Physical Sciences →  Engineering →  Aerospace Engineering
Spacecraft Design and Technology
Physical Sciences →  Engineering →  Aerospace Engineering
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Physical Sciences →  Engineering →  Electrical and Electronic Engineering
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