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Small gain conditions for finite time input-to-state stability of interconnected discrete time systems., and . CDC, page 7714-7719. IEEE, (2022)A Framework for Self-Adaptive Dispersal of Computing Services., , , , , , , , , and 3 other author(s). FAS*W@SASO/ICAC, page 98-103. IEEE, (2019)Finite Time Input-to-State Stability of Discrete Time Autonomous Systems., , , and . IEEE Control. Syst. Lett., (2023)Stability and Resilience of Distributed Information Spreading in Aggregate Computing., , and . IEEE Trans. Autom. Control., 68 (1): 454-461 (2023)Improved small gain conditions for input-to-state stability with respect to measurement functions: Discrete time networked system., , and . CDC, page 3875-3880. IEEE, (2021)Robustness of the Adaptive Bellman -Ford Algorithm: Global Stability and Ultimate Bounds., , and . IEEE Trans. Automat. Contr., 64 (10): 4121-4136 (2019)Priority-enabled Load Balancing for Dispersed Computing., , , , , , , , and . ICFEC, page 1-8. IEEE, (2021)Robust Stability of Spreading Blocks in Aggregate Computing., , and . CDC, page 6007-6012. IEEE, (2018)Global Uniform Asymptotic Stability of a Generalized Adaptive Bellman-Ford Algorithm., , and . CDC, page 1868-1873. IEEE, (2019)Razumikhin-type ISS Lyapunov function and small gain theorem for discrete time time-delay systems with application to a biased min-consensus protocol., , , and . CoRR, (2023)