Scensory uses low-cost VOC sensor arrays and deep learning on short time series to simultaneously identify fungal species and localize their source under ambient indoor conditions.
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2 Pith papers cite this work. Polarity classification is still indexing.
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Physics-based structural causal models are used on n<10 multi-modal datasets to quantitatively disentangle support-to-catalyst ratio and loading effects on manganese-antimony oxide ORR performance in alkaline RDE tests.
citing papers explorer
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Scensory: Real-Time Robotic Olfactory Perception for Joint Identification and Source Localization
Scensory uses low-cost VOC sensor arrays and deep learning on short time series to simultaneously identify fungal species and localize their source under ambient indoor conditions.
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Bridging electrode preparation and electrocatalyst performance with physics-based causal AI
Physics-based structural causal models are used on n<10 multi-modal datasets to quantitatively disentangle support-to-catalyst ratio and loading effects on manganese-antimony oxide ORR performance in alkaline RDE tests.