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Multi-AUV Target Search Based on Bioinspired Neurodynamics Model in 3-D Underwater Environments.

, , и . IEEE Trans. Neural Networks Learn. Syst., 27 (11): 2364-2374 (2016)

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The Neural Network for Solving Convex Nonlinear Programming Problem., , и . ICIC (1), том 4113 из Lecture Notes in Computer Science, стр. 494-499. Springer, (2006)A Study of Portfolio Investment Decision Method Based on Neural Network., , и . ISNN (2), том 3174 из Lecture Notes in Computer Science, стр. 976-981. Springer, (2004)A Workload Balanced Algorithm for Task Assignment and Path Planning of Inhomogeneous Autonomous Underwater Vehicle System., и . IEEE Trans. Cognitive and Developmental Systems, 11 (4): 483-493 (2019)A Model Predictive Adaptive Control Algorithm for Human Occupied Vehicle., , и . ROBIO, стр. 1857-1862. IEEE, (2019)A multi-AUV cooperative hunting method in 3-D underwater environment with obstacle., , и . Eng. Appl. Artif. Intell., (2016)Adaptive Fuzzy Sliding Mode Diving Control for Autonomous Underwater Vehicle with Input Constraint., , , , и . Int. J. Fuzzy Syst., 20 (5): 1460-1469 (2018)Thruster Fault Tolerant Control Scheme for 4500-m Human Occupied Vehicle., , и . CAA SAFEPROCESS, стр. 226-231. IEEE, (2019)Design of a dead reckoning based motion control system for small autonomous underwater vehicle., , , , и . CCECE, стр. 728-733. IEEE, (2015)An AUV Path Planning Algorithm Based on Model Predictive Control and Obstacle Restraint., , и . ICIRA (4), том 13016 из Lecture Notes in Computer Science, стр. 617-627. Springer, (2021)Local 2-D Path Planning of Unmanned Underwater Vehicles in Continuous Action Space Based on the Twin-Delayed Deep Deterministic Policy Gradient., , и . IEEE Trans. Syst. Man Cybern. Syst., 54 (5): 2775-2785 (мая 2024)