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A Survey of Fiber Positioning Technologies

机译:光纤定位技术概述

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A wide range of positioning technologies has been exploited to flexibly configure fiber ends on the focal surfaces of telescopes. The earliest instruments used manual plugging, or glued buttons on the focal plane. Later instruments have used robotic fisherman-round-the-pond probes and articulated armsto position fibres, each probe or arm operated by its own motors, or buttons on fiber ends moved by pick-and-place robotic positioners. A positioner using fiber spines incorporating individual actuators operating over limited patrol areas is currently being manufactured and a derivative proposed for future large telescopes. Other techniques, using independent agents carrying the fiber ends about the focal plane have been prototyped We describe these various fiber positioning techniques and compare them, listing the issues associated with their implementation, and consider the factors which make each of them suitable for a given situation. Factors considered include: robot geometries; costs; inherent limits to the number of fibers; clustering of targets; serial and parallel positioning and reconfiguration times; adaptability to curved focal surfaces; the virtues of on-telescope versus off-telescope configuration of the field, and suitability for the various telescope foci. The design issues include selection of actuators and encoding systems, counterbalancing, configuration of fiber buttons and their associated grippers, interchanging field plates, and the need for fiber retractors. Finally we consider the competing technologies: fiber and reflective image slicer IFUs, multislit masks and reconfigurable slits.
机译:已经开发了各种各样的定位技术来灵活地在望远镜的焦面上配置光纤末端。最早的仪器使用手动插入或在焦平面上粘贴按钮。后来的仪器使用了渔民用的圆头探针和铰接的臂来定位纤维,每个探针或臂都由自己的电动机操作,或者通过拾放式机器人定位器移动光纤末端的按钮。当前正在制造一种定位器,该定位器使用结合了在有限的巡逻区域上操作的单个致动器的纤维刺,并且为未来的大型望远镜提出了一种派生工具。还使用了其他技术,这些技术使用了将纤维末端围绕焦平面承载独立代理的模型,我们对这些各种纤维定位技术进行了描述并进行了比较,列出了与它们的实现相关的问题,并考虑了使每种纤维适合于给定情况的因素。 。考虑的因素包括:机器人的几何形状;费用;纤维数量的固有限制;目标集群;串行和并行定位和重新配置时间;对弯曲焦面的适应性;现场望远镜配置与非望远镜配置的优点,以及对各种望远镜焦点的适用性。设计问题包括选择执行器和编码系统,平衡,光纤按钮及其相关夹具的配置,可互换的现场板以及对光纤卷收器的需求。最后,我们考虑竞争技术:光纤和反射式图像切片机IFU,多缝口罩和可重新配置的缝隙。

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