arXiv AI

HenTwin: A Multimodal Digital Twin Framework for Longitudinal Biological State Monitoring in Laying Hens

arXiv:2607. 28652v1 Announce Type: cross Abstract: Early-life monitoring in laying hens remains constrained by fragmented single-modality sensing and the absence of formal system-level state representations.

arXiv AI
Aug 24

A Hybrid Edge Cloud Digital Twin for Welfare-Constrained Control in Poultry Production

The paper presents a hybrid edge‑cloud digital twin for welfare‑constrained environmental control in poultry farms. It combines distributed sensing, on‑device state estimation, a physics‑based thermodynamic model with a learned residual, and model predictive control to adaptively manage temperature and ammonia levels. Experiments in a broiler testbed show significant improvements: temperature prediction error drops from 1.8 °C to 0.4 °C, ammonia violations fall by 90 %, and communication needs are reduced 30‑fold, with a Domain Transfer Score of 0.92 indicating strong cross‑facility robustness.

By Suresh Neethirajan
arXiv Machine Learning
Jul 2

Timesynth: A Temporal Fidelity Framework for Health Signal Digital Twins

arXiv:2607. 00431v1 Announce Type: new Abstract: Forecasting models for health-signal digital twins must preserve the oscillatory, frequency, phase, and state-transition dynamics of physiological signals, yet the pointwise metrics used to benchmark them cannot detect when these fundamental properties are lost.

By Md Rakibul Haque, Shireen Elhabian, Warren Woodrich Pettine
arXiv Machine Learning
Aug 12

EweAcT: Ewe behaviour aligned to accelerometer data for activity monitoring in extensive grazing systems

arXiv:2608. 09943v1 Announce Type: cross Abstract: Monitoring livestock behaviour under extensive conditions would provide valuable insights to assess animal adaption to environmental perturbations in agroecological systems (e.

By Lucile Riaboff (GenPhySE, INRAE), Ny Aina Andriamampandry (GenPhySE, GenPhySE), Jean-Fran\c{c}ois Bompa (GenPhySE, GenPhySE), Mathias Aletru (GenPhySE, GenPhySE), Christian Durand (UEF), S\'ebastien Douls (UEF), Ga\"etan Bonnafe (UEF), Morgane Costes-Thir\'e (GenPhySE, GenPhySE), Guillaume Delosi\`eres (GenPhySE, GenPhySE), Jean- Marc Mongrelet (GenPhySE, GenPhySE), Enzo Niro (GenPhySE, GenPhySE), N\'emuel Tadi (GenPhySE, GenPhySE), S\'everine Deretz (DEPT GA, UEF, INRAE), Sara Parisot (UEF), Margot Lamarque (UEF), Dominique Hazard (GenPhySE), Emilie Cobo (GenPhySE)
arXiv AI
3d ago

CAMOS: Coupled Oscillatory State-Space Model for Multimodal Clinical Time-Series

CAMOS is a coupled oscillatory state‑space model designed for multimodal clinical time‑series that are irregularly sampled and often incomplete. It addresses a representational limitation of linear state‑space models by allowing the transition operator to depend on which modalities are present, using a bank of second‑order oscillators coupled through a gated matrix. On the ADNI dataset, CAMOS outperforms both uncoupled oscillatory models and clinical fusion models in same‑visit staging, landmark prediction, and longitudinal forecasting, and uniquely avoids collapsing to the majority class when transferred zero‑shot to OASIS‑3.

By Maxx Richard Rahman, Mostafa Hammouda, Wolfgang Maass
Hugging Face Trending Papers
Jun 8

Transition-Based Digital Twin Modelling for Alzheimer's Disease under Sparse Longitudinal Data

Alzheimer's disease (AD) progression is highly heterogeneous and is typically observed through sparse and irregular longitudinal data, posing challenges for prediction and personalised monitoring. Existing machine learning approaches have improved AD prediction using multimodal data, yet often focus on static classification or cohort-level risk estimation, providing limited support for subject-specific modelling and uncertainty-aware reasoning.

arXiv AI
Jul 21

A Continual Validation, Updating, and Decision-Making Framework for Self-Adaptive Digital Twins via Robust Model Predictive Control: A Case Study in Additive Manufacturing

arXiv:2607. 18164v1 Announce Type: cross Abstract: Digital Twins rely on surrogate models to mirror physical systems in real time, yet these models can degrade as operating conditions evolve, a phenomenon known as concept drift.

By Yi-Ping Chen, Ying-Kuan Tsai, Vispi Karkaria, Seul Lee, Daniel Apley, Wei Chen