Architecture of Tianyu Software: Relative Photometry as a Case Study

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Rui, Yicheng, Xuan, Yifan, Zheng, Shuyue, Li, Kexin, Cui, Kaiming, Xiao, Kai, Zheng, Jie, Ng, Jun Kai, Jiang, Hongxuan, Feng, Fabo, Sun, Qinghui
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866908364177408000
author Rui, Yicheng
Xuan, Yifan
Zheng, Shuyue
Li, Kexin
Cui, Kaiming
Xiao, Kai
Zheng, Jie
Ng, Jun Kai
Jiang, Hongxuan
Feng, Fabo
Sun, Qinghui
author_facet Rui, Yicheng
Xuan, Yifan
Zheng, Shuyue
Li, Kexin
Cui, Kaiming
Xiao, Kai
Zheng, Jie
Ng, Jun Kai
Jiang, Hongxuan
Feng, Fabo
Sun, Qinghui
contents Tianyu telescope, an one-meter robotic optical survey instrument to be constructed in Lenghu, Qinghai, China, is designed for detecting transiting exoplanets, variable stars and transients. It requires a highly automated, optimally distributed, easily extendable, and highly flexible software to enable the data processing for the raw data at rates exceeding 500MB/s. In this work, we introduce the architecture of the Tianyu pipeline and use relative photometry as a case to demonstrate its high scalability and efficiency. This pipeline is tested on the data collected from Muguang observatory and Xinglong observatory. The pipeline demonstrates high scalability, with most processing stages increasing in throughput as the number of consumers grows. Compared to a single consumer, the median throughput of image calibration, alignment, and flux extraction increases by 41%, 257%, and 107% respectively when using 5 consumers, while image stacking exhibits limited scalability due to I/O constraints. In our tests, the pipeline was able to detect two transiting sources. Besides, the pipeline captures variability in the light curves of nine known and two previously unknown variable sources in the testing data. Meanwhile, the differential photometric precision of the light curves is near the theoretical limitation. These results indicate that this pipeline is suitable for detecting transiting exoplanets and variable stars. This work builds the fundation for further development of Tianyu software. Code of this work is available at https://github.com/ruiyicheng/Tianyu_pipeline.
format Preprint
id arxiv_https___arxiv_org_abs_2505_09107
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Architecture of Tianyu Software: Relative Photometry as a Case Study
Rui, Yicheng
Xuan, Yifan
Zheng, Shuyue
Li, Kexin
Cui, Kaiming
Xiao, Kai
Zheng, Jie
Ng, Jun Kai
Jiang, Hongxuan
Feng, Fabo
Sun, Qinghui
Instrumentation and Methods for Astrophysics
Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
Distributed, Parallel, and Cluster Computing
Tianyu telescope, an one-meter robotic optical survey instrument to be constructed in Lenghu, Qinghai, China, is designed for detecting transiting exoplanets, variable stars and transients. It requires a highly automated, optimally distributed, easily extendable, and highly flexible software to enable the data processing for the raw data at rates exceeding 500MB/s. In this work, we introduce the architecture of the Tianyu pipeline and use relative photometry as a case to demonstrate its high scalability and efficiency. This pipeline is tested on the data collected from Muguang observatory and Xinglong observatory. The pipeline demonstrates high scalability, with most processing stages increasing in throughput as the number of consumers grows. Compared to a single consumer, the median throughput of image calibration, alignment, and flux extraction increases by 41%, 257%, and 107% respectively when using 5 consumers, while image stacking exhibits limited scalability due to I/O constraints. In our tests, the pipeline was able to detect two transiting sources. Besides, the pipeline captures variability in the light curves of nine known and two previously unknown variable sources in the testing data. Meanwhile, the differential photometric precision of the light curves is near the theoretical limitation. These results indicate that this pipeline is suitable for detecting transiting exoplanets and variable stars. This work builds the fundation for further development of Tianyu software. Code of this work is available at https://github.com/ruiyicheng/Tianyu_pipeline.
title Architecture of Tianyu Software: Relative Photometry as a Case Study
topic Instrumentation and Methods for Astrophysics
Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
Distributed, Parallel, and Cluster Computing
url https://arxiv.org/abs/2505.09107