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A Review of Research on Industrial Time Series Classification for Machinery based on Deep Learning.

, , , , and . MENACOMM, page 89-94. IEEE, (2022)

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Designing a quasi-spherical module for a huge modular robot to create programmable matter., and . Auton. Robots, 42 (8): 1619-1633 (2018)Going for large scale with nano-wireless simulations., , and . NANOCOM, page 25:1-25:2. ACM, (2015)Implementing a Consistent Cut Algorithm in a Message Passing Library., , and . PARCO, volume 11 of Advances in Parallel Computing, page 577-580. Elsevier, (1995)Flexible Multipoint-to-Multipoint Routing Protocol in Ultra-Dense Nanonetworks., , and . MobiWac, page 81-87. ACM, (2019)P2PPerf: a framework for simulating and optimizing peer-to-peer-distributed computing applications., , and . Concurr. Comput. Pract. Exp., 20 (6): 693-712 (2008)Distributed Size-constrained Clustering Algorithm for Modular Robot-based Programmable Matter., , , and . ACM Trans. Auton. Adapt. Syst., 18 (1): 1:1-1:21 (March 2023)Space Ants: Episode II - Coordinating Connected Catoms (Media Exposition)., , , , , , and . SoCG, volume 224 of LIPIcs, page 65:1-65:6. Schloss Dagstuhl - Leibniz-Zentrum für Informatik, (2022)Fault- Tolerance Mechanism for Self-Reconfiguration of Modular Robots., , , , and . IWCMC, page 360-365. IEEE, (2022)RePoSt: Distributed Self-Reconfiguration Algorithm for Modular Robots Based on Porous Structure., , , and . IROS, page 12651-12658. IEEE, (2022)Efficient scene encoding for programmable matter self-reconfiguration algorithms., , and . SAC, page 256-261. ACM, (2017)