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Radioactive Source Seeking using Bayesian Optimisation with Movement Penalty

Lysander Miller, Joshua Keene, Jeremy M. C. Brown, Airlie Chapman

arXiv:2605.14942Published May 14, 20260 citations
  • physics.app-ph
  • eess.SY
  • robot
  • robotic

Abstract

The use of mobile robotics in radioactive source seeking has become an important part of modern radiation-safety practices, supporting timely mitigation of contamination risks and helping protect public health. However, measuring radiation is often time-consuming, rendering traditional gradient-based source-seeking methods less effective due to lower sample efficiency. This paper proposes a sample-efficient Bayesian-Optimisation source-seeking strategy that utilises a heteroscedastic Gaussian process surrogate to balance exploration and exploitation. Excessive inter-sample travel is discouraged through a movement switching cost. The strategy is shown to generate sublinear regret in the source-seeking task, while simulations demonstrate its effectiveness in localising radioactive sources.

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