Potentiality of automatic parameter tuning suite available in ACTS track reconstruction software framework
Rocky Bala Garg, Corentin Allaire, Andreas Salzburger, Hadrien, Grasland, Lauren Tompkins, Elyssa Hofgard

TL;DR
This paper discusses the use of ACTS framework's auto-tuning suite for automatic parameter optimization in particle track reconstruction, improving efficiency and maintainability over traditional hand-tuning methods.
Contribution
It introduces an auto-tuning suite in ACTS that enables flexible, automated parameter optimization for various track reconstruction algorithms and detector geometries.
Findings
Auto-tuning improves parameter optimization efficiency.
Demonstrated on multiple reconstruction algorithms.
Applicable to different detector geometries.
Abstract
Particle tracking is among the most sophisticated and complex part of the full event reconstruction chain. A number of reconstruction algorithms work in a sequence to build these trajectories from detector hits. These algorithms use many configuration parameters that need to be fine-tuned to properly account for the detector/experimental setup, the available CPU budget and the desired physics performance. The most popular method to tune these parameters is hand-tuning using brute-force techniques. These techniques can be inefficient and raise issues for the long-term maintainability of such algorithms. The open-source track reconstruction software framework known as "A Common Tracking Framework (ACTS)" offers an alternative solution to these parameter tuning techniques through the use of automatic parameter optimization algorithms. ACTS comes equipped with an auto-tuning suite that…
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Taxonomy
TopicsMass Spectrometry Techniques and Applications · Nuclear Physics and Applications · Radiation Detection and Scintillator Technologies
