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Designing optimal masks for a multi-object spectrometer

机译:为多对象光谱仪设计最佳掩模

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This paper concerns a new optimization problem arising in the management of a multi-object spectrometer with a configurable slit unit. The field of view of the spectrograph is divided into contiguous and parallel spatial bands, each one associated with two opposite sliding metal bars that can be positioned to observe one astronomical object. Thus several objects can be analyzed simultaneously within a configuration of the bars called a mask. Due to the high demand from astronomers, pointing the spectrograph's field of view to the sky, rotating it, and selecting the objects to conform a mask is a crucial optimization problem for the efficient use of the spectrometer. The paper describes this problem, presents a Mixed Integer Linear Programming formulation for the case where the rotation angle is fixed, presents a nonconvex formulation for the case where the rotation angle is unfixed, describes a heuristic approach for the general problem, and discusses computational results on real-world and randomly-generated instances. (c) 2021 The Author. Published by Elsevier Ltd. This is an open access article under the CC BY license ( http://creativecommons.org/licenses/by/4.0/ )
机译:本文涉及具有可配置狭缝单元的多对象光谱仪管理中产生的新优化问题。光谱仪的视野被分成连续和平行的空间带,每个空间带与两个相对的滑动金属条相关联,该滑动金属条可以定位成观察一个天文物体。因此,可以在称为掩模的条形的配置内同时分析几个目的。由于天文学家的需求很高,指向光谱仪的视野,旋转它,并选择符合光谱仪的有效使用的重要优化问题。本文描述了该问题,呈现了旋转角度固定的情况的混合整数线性编程配方,呈现旋转角度未固定的情况的非耦合配方描述了一般问题的启发式方法,并讨论了计算结果关于现实世界和随机生成的实例。 (c)2021提交人。由elsevier有限公司出版。这是CC的开放式访问文章,由许可证(http://creativecommons.org/licenses/by/4.0/)

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