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Optimal Kullback-Leibler Aggregation via Information Bottleneck.

, , , and . IEEE Trans. Automat. Contr., 60 (4): 1010-1022 (2015)

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Inferring causal molecular networks: empirical assessment through a community-based effort, , , , , , , , , and 163 other author(s). Nature Methods, 13 (4): 310--318 (Feb 22, 2016)Optimal Kullback-Leibler Aggregation via Information Bottleneck., , , and . IEEE Trans. Automat. Contr., 60 (4): 1010-1022 (2015)Modeling Quality of Experience for Compressed Point Cloud Sequences based on a Subjective Study., , , , , , , and . QoMEX, page 135-140. IEEE, (2023)A Comprehensive Analysis of Swarming-based Live Streaming to Leverage Client Heterogeneity., , , , and . CoRR, (2018)Scalable Task-Driven Robotic Swarm Control via Collision Avoidance and Learning Mean-Field Control., , , and . CoRR, (2022)Hypergraphon Mean Field Games., , and . CoRR, (2022)Load Balancing in Compute Clusters With Delayed Feedback., , , and . IEEE Trans. Computers, 72 (6): 1610-1622 (June 2023)Trajectory enclosures for nonlinear systems with uncertain initial conditions and parameters., , and . ACC, page 1488-1493. IEEE, (2012)Computationally implementable sufficient conditions for the synchronisation of coupled dynamical systems with time delays in the coupling., , , , and . ACC, page 839-844. IEEE, (2011)Scalable inference using PMCMC and parallel tempering for high-throughput measurements of biomolecular reaction networks., and . CDC, page 770-775. IEEE, (2016)