English

Lossless Compression Performance for PETRA III Datasets

Data Analysis, Statistics and Probability 2026-07-31 v1 Performance Instrumentation and Detectors

Abstract

Large-scale research facilities increasingly face the challenge of managing rapidly growing data volumes while maintaining sustainable archival infrastructures. We present the first comprehensive study of data heterogeneity and lossless general-purpose compression performance for representative datasets from the PETRA III synchrotron radiation source. Our corpus comprises more than 212 TiB of raw and processed data from ten experiments spanning multiple beamlines, detector systems, and scientific workflows. We observe substantial heterogeneity both between and within experiments, resulting in compression ratios that vary by more than two orders of magnitude across datasets. Evaluating nine widely used lossless compression tools, we find that Zstandard and LZ4 consistently occupy the high-throughput region of the Pareto front, whereas ZPAQ achieves the highest compression ratios. Furthermore, heterogeneous compression strategies that adapt compressor choice to the underlying file category outperform uniform compression policies. Extrapolating from the benchmarked datasets to the full PETRA III non-tape storage system, we estimate achievable compression ratios ranging from approximately 1.6 at \sim900 MiB/s throughput to 2.1 at \sim2 MiB/s. These results provide a quantitative basis for future archival and storage decisions at PETRA III, its future successor, PETRA IV, and other large-scale scientific facilities.

Cite

@article{arxiv.2608.00168,
  title  = {Lossless Compression Performance for PETRA III Datasets},
  author = {Malte Buschmann and Yannis Schumann and Christian Voss and Tigran Mkrtchyan and Philipp Neumann},
  journal= {arXiv preprint arXiv:2608.00168},
  year   = {2026}
}

Comments

18+7 pages, 9+0 figures, 5+9 tables