论文标题

Simons天文台:数据采集,控制,监视和计算机基础架构的概述

The Simons Observatory: Overview of data acquisition, control, monitoring, and computer infrastructure

论文作者

Koopman, Brian J., Lashner, Jack, Saunders, Lauren J., Hasselfield, Matthew, Bhandarkar, Tanay, Bhimani, Sanah, Choi, Steve K., Duell, Cody J., Galitzki, Nicholas, Harrington, Kathleen, Hincks, Adam D., Ho, Shuay-Pwu Patty, Newburgh, Laura, Reichardt, Christian L., Seibert, Joseph, Spisak, Jacob, Westbrook, Benjamin, Xu, Zhilei, Zhu, Ningfeng

论文摘要

Simons天文台(SO)是即将到来的偏光宇宙微波背景(CMB)调查实验,该测量实验具有三个小孔望远镜和一个大孔望远镜,将从智利的Atacama沙漠中观察到。总体而言,在以27至280 GHz为中心的六个光谱频段中,将超过60,000个过渡边缘传感器(TES)施加仪,以达到测量或限制众多宇宙学参数所需的灵敏度,包括张张量与量表比,有效的相对论物种数量,中性群体的总和。如此科学的目标需要协调和控制现场四个望远镜之间的硬件。为了满足这种需求,我们设计并建立了一个开源平台,用于分布式系统管理,称为天文台控制系统(OCS)。该控制系统与包括望远镜控制单元,微波多路复用读数电子设备和低温温度计(包括望远镜控制单元)在内的所有子系统互动。我们还开发了一个用于对管家数据和警报的实时监视的系统,这对于远程观察至关重要。我们利用现有的开源项目,例如用于RPC和Pubsub的Crossbar,用于异步事件,用于在线远程监视的Grafana以及用于容器化的Docker。我们提供了SO软件和计算机基础架构的概述,包括在我们准备部署时在SO Labs开发硬件系统的SO开发代码与开源资源和经验教训的集成。

The Simons Observatory (SO) is an upcoming polarized cosmic microwave background (CMB) survey experiment with three small-aperture telescopes and one large-aperture telescope that will observe from the Atacama Desert in Chile. In total, SO will field over 60,000 transition-edge sensor (TES) bolometers in six spectral bands centered between 27 and 280 GHz to achieve the sensitivity necessary to measure or constrain numerous cosmological parameters, including the tensor-to-scalar ratio, effective number of relativistic species, and sum of the neutrino masses. The SO scientific goals require coordination and control of the hardware distributed among the four telescopes on site. To meet this need, we have designed and built an open-sourced platform for distributed system management, called the Observatory Control System (ocs). This control system interfaces with all subsystems including the telescope control units, the microwave multiplexing readout electronics, and the cryogenic thermometry. We have also developed a system for live monitoring of housekeeping data and alerting, both of which are critical for remote observation. We take advantage of existing open source projects, such as crossbar for RPC and PubSub, twisted for asynchronous events, grafana for online remote monitoring, and docker for containerization. We provide an overview of the SO software and computer infrastructure, including the integration of SO-developed code with open source resources and lessons learned while testing at SO labs developing hardware systems as we prepare for deployment.

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