most citedHCGrid: A Convolution-based Gridding Framework for RadioAstronomy in Hybrid Computing Environments

7 citations · 8 across the 4 of their papers we have counts for

collaborators

5 papers

astro-ph.IM20207 cited

HCGrid: A Convolution-based Gridding Framework for RadioAstronomy in Hybrid Computing Environments

Hao Wang, Ce Yu, Bo Zhang +2

Gridding operation, which is to map non-uniform data samples onto a uniformly distributedgrid, is one of the key steps in radio astronomical data reduction process. One of the main…

astro-ph.IM20201 cited

A Redistribution Tool for Long-Term Archive of Astronomical Observation Data

Chao Sun, Ce Yu, Chenzhou Cui +5

Astronomical observation data require long-term preservation, and the rapid accumulation of observation data makes it necessary to consider the cost of long-term archive storage. I…

astro-ph.IM2020

Towards an Astronomical Science Platform: Experiences and Lessons Learned from Chinese Virtual Observatory

Chenzhou Cui, Yihan Tao, Changhua Li +16

In the era of big data astronomy, next generation telescopes and large sky surveys produce data sets at the TB or even PB level. Due to their large data volumes, these astronomical…

astro-ph.IM2020

Deep residual detection of radio frequency interference for FAST

Zhicheng Yang, Ce Yu, Jian Xiao +1

Radio frequency interference (RFI) detection and excision are key steps in the data-processing pipeline of the Five-hundred-meter Aperture Spherical radio Telescope (FAST). Because…

cs.DC2018

A hybrid architecture for astronomical computing

Changhua Li, Chenzhou Cui, Boliang He +17

With many large science equipment constructing and putting into use, astronomy has stepped into the big data era. The new method and infrastructure of big data processing has becom…