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High-throughput Cotton Phenotyping Big Data Pipeline Lambda Architecture Computer Vision Deep Neural Networks.

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Design of the delay-dependent ℒ2-gain filters for a general class of LPV time-delayed systems., and . SMC, page 1742-1747. IEEE, (2005)Heterogeneity-Aware Graph Partitioning for Distributed Deployment of Multiagent Systems., and . IEEE Trans. Cybern., 52 (4): 2578-2588 (2022)High-throughput Cotton Phenotyping Big Data Pipeline Lambda Architecture Computer Vision Deep Neural Networks., , , and . CoRR, (2023)Nigel - Mechatronic Design and Robust Sim2Real Control of an Over-Actuated Autonomous Vehicle., , , and . CoRR, (2024)Fixed-Structure Controller Design for Time-Delayed LPV Systems in Input-Output Form., , and . CDC, page 7058-7063. IEEE, (2018)Learning-based Adaptive-Scenario-Tree Model Predictive Control with Probabilistic Safety Guarantees Using Bayesian Neural Networks., , , and . ACC, page 3260-3265. IEEE, (2022)Impact of Information Flow Topology on Safety of Tightly-coupled Connected and Automated Vehicle Platoons Utilizing Stochastic Control., , , , and . ECC, page 27-33. IEEE, (2022)Delay-Dependent H∞ Filtering for State-delayed LPV Systems., and . ISIC, page 1538-1543. IEEE, (2005)Epistemic Uncertainty Quantification in State-Space LPV Model Identification Using Bayesian Neural Networks., , and . IEEE Control. Syst. Lett., 5 (2): 719-724 (2021)A New Voronoi-Based Blanket Coverage Control Method for Moving Sensor Networks., , and . IEEE Trans. Contr. Sys. Techn., 27 (1): 409-417 (2019)