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Monitoring Aquatic Debris Using Smartphone-Based Robots., , , , , , и . IEEE Trans. Mob. Comput., 15 (6): 1412-1426 (2016)ECG and Respiration Signal Reconstruction from an IMU at Various Orientations during Rest or Sleep for Dog Welfare Monitoring., , , , и . ACI, стр. 7:1-7:9. ACM, (2021)FCM-GCN-based upstream and downstream dependence model for air traffic flow networks., , , и . Knowl. Based Syst., (2023)Energy-Efficient Aquatic Environment Monitoring Using Smartphone-Based Robots., , , , , и . ACM Trans. Sens. Networks, 12 (3): 25:1-25:28 (2016)Accuracy-aware aquatic diffusion process profiling using robotic sensor networks., , , , и . IPSN, стр. 281-292. IEEE Computer Society / ACM, (2012)Profiling Aquatic Diffusion Process UsingRobotic Sensor Networks., , , , и . IEEE Trans. Mob. Comput., 13 (4): 880-893 (2014)Evolutionary Design and Experimental Validation of a Flexible Caudal Fin for Robotic Fish., , , , и . ALIFE, MIT Press, (2012)PVNet: A novel semantic segmentation model for extracting high-quality photovoltaic panels in large-scale systems from high-resolution remote sensing imagery., , , , , и . Int. J. Appl. Earth Obs. Geoinformation, (мая 2023)Averaging Tail-Actuated Robotic Fish Dynamics Through Force and Moment Scaling., и . IEEE Trans. Robotics, 31 (4): 906-917 (2015)UGRoadUpd: An Unchanged-Guided Historical Road Database Updating Framework Based on Bi-Temporal Remote Sensing Images., , , , , , и . IEEE Trans. Intell. Transp. Syst., 23 (11): 21465-21477 (2022)