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Laura Jones

Publications and source records attributed to Laura Jones.

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SAFE-CHEM: Uncertainty-Aware Policy Switching for Robust Robotic Chemistry

The deployment of autonomous robotic systems in chemistry laboratories is accelerating experimental workflows and providing the foundational data for AI-driven scientific discovery. However, despite the success of data-driven methods in acquiring dexterous skills, safety remains a primary barrier to their deployment in high-risk domains, such as early-stage materials chemistry experiments. Specifically, learning-based policies frequently struggle to distinguish between safe and unsafe actions, leading to overconfident extrapolation and potentially catastrophic failures. To mitigate these safety risks, we propose SAFE-CHEM, an uncertainty-aware framework designed for robust, learning-based robotic chemists. Our approach leverages an ensemble of recurrent neural network-based imitation learning policies to quantify epistemic uncertainty online through the variance of action predictions. By characterising the success-conditioned density of this variance using kernel density estimation, we introduce a hybrid control architecture that autonomously switches from the learned policy to a deterministic, rule-based backup controller when uncertainty exceeds a calibrated safety threshold. We evaluate SAFE-CHEM across three fundamental laboratory manipulation tasks, where our empirical results demonstrate that this hybrid strategy improves overall task success rates and reduces critical safety violations compared to traditional single-policy baselines. Finally, we demonstrate the practical viability of the framework through zero-shot sim-to-real transfer onto a physical Franka Production 3 robot manipulator.

cs.RO

Niche to normality -- an interdisciplinary review of Vehicle-to-Grid

Vehicle-to-Grid (V2G) capabilities, which enable electric vehicles to discharge power from their batteries for external uses, epitomise the coupling of the electricity and transport sectors. To thrive at the nexus of these large and well-established sectors V2G services must deliver technical, economic and social values to many stakeholders. In this Review we present a holistic and interdisciplinary examination of V2G services, highlighting the wide range of potential benefits as well as the challenges slowing the technology's evolution from niche trials to mainstream adoption. We find that benefits tend to be siloed by value proposition and stakeholder while the challenges tend to stem from stacking multiple values and connecting multiple stakeholders. Consequently, we identify key areas for future research, industry and policy activities that will accelerate and smoothen the realisation of V2G's potential as an essential pillar of clean transport-electricity systems.

physics.soc-ph