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All-to-All Personalized Communication on Fat-Trees Using Latin Squares.

, and . SoftCOM, page 1-6. IEEE, (2022)

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Autonomous Deployment of Self-Organizing Mobile Sensors for a Complete Coverage, , , , and . (2008)Push & Pull: autonomous deployment of mobile sensors for a complete coverage., , , , and . Wireless Networks, 16 (3): 607-625 (2010)Variable Density Deployment and Topology Control for the Solution of the Sink-Hole Problem., , , and . QSHINE, volume 22 of Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering, page 167-182. Springer, (2009)Optimal all-to-all personalized communication on Butterfly networks through a reduced Latin square., and . HPCC/DSS/SmartCity, page 1065-1072. IEEE, (2020)All-to-All Personalized Communication on Fat-Trees Using Latin Squares., and . SoftCOM, page 1-6. IEEE, (2022)High Performance Parallelization of COMPSYN on a Cluster of Multicore Processors with GPUs., , and . ICCS, volume 9 of Procedia Computer Science, page 966-975. Elsevier, (2012)Anytime System Level Verification via Random Exhaustive Hardware in the Loop Simulation., , , , and . DSD, page 236-245. IEEE Computer Society, (2014)The Shuffled Mesh: a flexible and efficient model for parallel computing., , , and . Telecommun. Syst., 13 (1): 21-27 (2000)An optimal layout of multigrid networks., and . Inf. Process. Lett., 72 (3-4): 137-141 (1999)P&P protocol: local coordination of mobile sensors for self-deployment., , and . MSWiM, page 305-314. ACM, (2009)