Design and development of an Equipotential Voltage Reference (grounding) system for a low-cost rapid-development modular spacecraft architecture

J. Lukash, E. Daley
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Abstract

This work describes the design and development effort to adapt rapid-development space hardware by creating a ground system using solutions of low complexity, mass, & cost. The Lunar Atmosphere and Dust Environment Explorer (LADEE) spacecraft is based on the modular common spacecraft bus architecture developed at NASA Ames Research Center. The challenge was building upon the existing modular common bus design and development work and improving the LADEE spacecraft design by adding an Equipotential Voltage Reference (EVeR) system, commonly referred to as a ground system. This would aid LADEE in meeting Electromagnetic Environmental Effects (E3) requirements, thereby making the spacecraft more compatible with itself and its space environment. The methods used to adapt existing hardware are presented, including provisions which may be used on future spacecraft.
面向低成本快速发展的模块化航天器结构的等电位基准电压(接地)系统的设计与开发
这项工作描述了通过使用低复杂性、低质量和低成本的解决方案创建地面系统来适应快速发展的空间硬件的设计和开发工作。月球大气和尘埃环境探测器(LADEE)航天器是基于NASA艾姆斯研究中心开发的模块化通用航天器总线架构。挑战是建立在现有的模块化公共总线设计和开发工作的基础上,并通过增加等电位基准电压(EVeR)系统(通常称为地面系统)来改进LADEE航天器的设计。这将有助于LADEE满足电磁环境效应(E3)要求,从而使航天器与自身及其空间环境更加兼容。介绍了适应现有硬件的方法,包括可能用于未来航天器的规定。
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