The industrialization of astronomical instrumentation: an industrial system and process engineering perspective

The industrialization of astronomical instrumentation: an industrial system and process engineering perspective
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天文仪器的工业化:工业系统和过程工程的视角

DOI:
10.1117/12.2562964
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发表时间:
2020
期刊:
and Project Management for Astronomy IX
影响因子:
--
通讯作者:
Mason, Jerry
Mason, Jerry
中科院分区:
--
文献类型:
--
作者:
Brandon, Christopher;Pogge, Richard W.;Derwent, Mark A.;O'Brien, Thomas P.;Jurgenson, Colby A.;Pappalardo, Daniel;Engelman, Michael;Brady, Julia;Shover, Jon;Mason, Jerry

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斯隆数字巡天五号(SDSS-V)是一个全天空的光谱巡天,对600万个以下的天体进行巡天,旨在解码银河系的历史,揭示恒星的内部运作,调查太阳系的起源,并跟踪宇宙中超大质量黑洞的生长。学术界和工业界的组织合作克服了技术挑战,并执行了与调试SDSS-V的各种机械、电气和软件子系统相关的操作指令。下一代天文仪器的规模和复杂性是一个新兴的挑战,需要工业系统和工艺工程实践在准,工业规模。在多路复用光谱勘测成功的推动下,仪器正在发展到包括具有从各种来源采购或生产的数百至数千个组件和子组件的系统。这一趋势要求在下一代天文仪器的设计、集成和测试中采用新的和现有的流程和最佳实践。以下讨论概述了目前处于操作阶段的SDSS-V焦平面系统(FPS)设计、集成和测试的工业系统和工艺工程流程、方法和实践。重点放在与多个合同制造供应商的协调和小批量制造的操作执行相关的流程,方法和实践上。
The Sloan Digital Sky Survey V (SDSS-V) is an all-sky spectroscopic survey of < 6 million objects, designed to decode the history of the Milky Way, reveal the inner workings of stars, investigate the origin of solar systems, and track the growth of supermassive black holes across the Universe. Collaboratively, organizations across both academia and industry have partnered to overcome technical challenges and execute operational directives associated with commissioning the various mechanical, electrical, and software subsystems of SDSS-V. While this type of collaboration is not unique, the scale and complexity of next generation astronomical instruments is an emerging challenge that requires industrial systems and process engineering practices at a quasi-industrial scale. Driven by the success of multiplexed spectroscopic surveys, instrumentation is evolving to include systems with hundreds to thousands of components and sub-assemblies procured or produced from various sources. This trend requires the adoption of new and existing processes and best practices in the design, integration, and test of next generation astronomical instruments. The following discussion outlines those industrial systems and process engineering processes, methods, and practices, currently in the operational phase, for the design, integration, and test of the SDSS-V Focal Plane System (FPS). An emphasis is placed on processes, methods, and practices related to coordination of multiple contract manufacturing vendors and operational execution of small batch manufacturing.
用于斯隆数字巡天 V 的 Theta/Phi 光纤定位机器人设计
DOI: 10.1117/12.2563234
发表时间: 2020
期刊: SPIE Astronomical Telescopes + Instrumentation
影响因子: --
作者:
Araujo, Ricardo;Bouri, Mohamed;Brandon, Christopher;Caseiro, Stefane;Gillet, Denis;Grossen, Loïc;Kronig, Luzius;Macktoobian, Matin;O'Brien, Thomas P.;Pogge, Richard W.
通讯作者: Pogge, Richard W.
用于斯隆数字巡天 V 的机器人焦平面系统 (FPS)
DOI: 10.1117/12.2561113
发表时间: 2020
期刊: A robotic Focal Plane System (FPS
影响因子: --
作者:
Pogge, Richard W.;Derwent, Mark A.;O'Brien, Thomas P.;Jurgenson, Colby A.;Pappalardo, Daniel;Engelman, Michael;Brandon, Christopher;Brady, Julia;Clawson, Nicholas;Shover, Jon
通讯作者: Shover, Jon