论文标题

CTA的MST原型的结构监测

The structure monitoring of the MST prototype of CTA

论文作者

Martins, Victor Barbosa, Garczarczyk, Markus

论文摘要

Cherenkov望远镜阵列(CTA)是下一代地面伽马射线天文台。天文台将由两个阵列组成,一个阵列位于南半球(辣椒,智利),另一个位于北半球(西班牙金丝雀岛),覆盖了整个天空。计划将100多个望远镜运行长达30年,这激发了对单个望远镜进行连续状态监测的发展。监测的主要目标是在发生严重损害赔偿之前检测降解和失败。考虑了两种方法:结构监测系统,其中测量和监测望远镜及其阻尼率的特征频率;以及驱动器监测,其中在望远镜运动过程中测量了旋转组件的功率光谱。结构监测概念系统应用于2018年底和2019年柏林CTA的原型中型望远镜(MST)原型,此处介绍了第一个结果。该系统在望远镜结构不变的时期内显示出合理的稳定性。该系统还能够检测机械变化,例如摄像机支撑结构的钢绳的张力各不相同。结构监控系统的成功实施支持在未来所有MST中实施系统的决定。

The Cherenkov Telescope Array (CTA) is the next generation of ground-based gamma-ray observatory. The observatory will consist of two arrays, one located in the southern hemisphere (Paranal,Chile) and the other in the northern hemisphere (Canary Island, Spain), covering the whole sky in the range of observation. More than 100 telescopes are planned to be in operation for as long as 30 years, which motivated the development of a continuous condition monitoring of the individual telescopes. The main goal of the monitoring is to detect degradation and failures before critical damages occur. Two approaches are considered: the structure monitoring system, in which the Eigenfrequencies of the telescope and their damping rates are measured and monitored; and the drive monitoring, in which the power spectra of rotating components are measured during telescope movements. The structure monitoring concept system was applied to the prototype Medium Size telescope (MST) prototype of CTA in Berlin during late 2018 and in 2019, and the first results are presented here. The system showed reasonable stability during periods, in which the telescope structure was unchanged. The system was also capable to detect mechanical changes, e.g. varying tension in the steel ropes of the camera support structure. The successful implementation of the structure monitoring system supports the decision of implementing the system in all future MSTs.

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