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Modeling and performance of contact-free discharge systems for space inertial sensors

机译:空间惯性传感器非接触放电系统的建模和性能

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摘要

This article presents a detailed overview and assessment of contact-free ultraviolet light discharge systems (UVDSs) needed to control the variable electric charge level of free-flying test masses, which are part of high-precision inertial sensors in space. A comprehensive numerical analysis approach on the basis of experimental data is detailed. This includes ultraviolet light ray tracing, the computation of time variant electric fields inside the complex inertial sensor geometry, and the simulation of individual photoelectron trajectories. Subsequent data analysis allows determination of key parameters to set up an analytical discharge model. Such a model is an essential system engineering tool needed for requirement breakdown and subsystem specification, performance budgeting, onboard charge control software development, and instrument modeling within spacecraft end-to-end performance simulators. Different types of UVDS design concepts are presented and assessed regarding their robustness and performance. Critical hardware aspects like electron emission from air-contaminated surfaces, interfaces with other subsystems, and spacecraft operations are considered. The focus is on the modeling and performance evaluation of the existing UVDS onboard the LISA Pathfinder, a European Space Agency technology demonstrator spacecraft, which is in implementation phase. The results have motivated the design of a more robust discharge system concept for cubical test mass inertial sensors for future space missions. The analysis tools developed have been used for design optimization and performance assessment of the proposed design. A significant improvement of relevant robustness and performance figures has been achieved.
机译:本文详细介绍和评估了控制自由飞行测试质量的可变电荷水平所需的非接触式紫外线放电系统(UVDS),该质量是空间中高精度惯性传感器的一部分。详细介绍了基于实验数据的综合数值分析方法。这包括紫外线跟踪,复杂惯性传感器几何形状内部时变电场的计算以及单个光电子轨迹的模拟。随后的数据分析允许确定关键参数以建立分析排放模型。对于需求分解和子系统规格,性能预算,机载电荷控制软件开发以及航天器端到端性能模拟器中的仪器建模,这种模型是必不可少的系统工程工具。提出并评估了不同类型的UVDS设计概念的耐用性和性能。考虑了关键的硬件方面,例如从受空气污染的表面发射电子,与其他子系统的接口以及航天器的运行。重点是对LISA Pathfinder上的现有UVDS进行建模和性能评估,LISA Pathfinder是处于实施阶段的欧洲航天局技术演示航天器。结果激发了用于未来太空任务的立方测试质量惯性传感器的更强大的排放系统概念的设计。开发的分析工具已用于设计优化和拟议设计的性能评估。相关的鲁棒性和性能指标已得到显着改善。

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