An Improved Spinal Neural System-Based Approach for Heterogeneous AUVs Cooperative Hunting
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J. Ni | Xinnan Fan | Liuying Wu | Liu Yang
[1] Qin Zhang,et al. On intelligent risk analysis and critical decision of underwater robotic vehicle , 2017 .
[2] Caoyang Yu,et al. Robust fuzzy 3D path following for autonomous underwater vehicle subject to uncertainties , 2017, Comput. Oper. Res..
[3] Chaomin Luo,et al. A Bio-Inspired Approach to Task Assignment of Swarm Robots in 3-D Dynamic Environments , 2017, IEEE Transactions on Cybernetics.
[4] Pengfei Shi,et al. A Dynamic Bioinspired Neural Network Based Real-Time Path Planning Method for Autonomous Underwater Vehicles , 2017, Comput. Intell. Neurosci..
[5] Bo Wang,et al. An Acoustic Communication Time Delays Compensation Approach for Master–Slave AUV Cooperative Navigation , 2017, IEEE Sensors Journal.
[6] Hyun Myung,et al. Localization of AUVs using visual information of underwater structures and artificial landmarks , 2017, Intell. Serv. Robotics.
[7] Anibal Matos,et al. Accounting for uncertainty in search operations using AUVs , 2017, 2017 IEEE Underwater Technology (UT).
[8] Yuxin Zhao,et al. Convergence Analysis on Multi-AUV Systems With Leader-Follower Architecture , 2017, IEEE Access.
[9] Xiang Cao,et al. Multi-AUV Target Search Based on Bioinspired Neurodynamics Model in 3-D Underwater Environments , 2016, IEEE Transactions on Neural Networks and Learning Systems.
[10] Mei-Yung Chen,et al. Design of Path Planning and Obstacle Avoidance for a Wheeled Mobile Robot , 2016, Int. J. Fuzzy Syst..
[11] Caoyang Yu,et al. Subsea Cable Tracking by Autonomous Underwater Vehicle with Magnetic Sensing Guidance , 2016, Sensors.
[12] Weisheng Yan,et al. Mutual Information-Based Multi-AUV Path Planning for Scalar Field Sampling Using Multidimensional RRT* , 2016, IEEE Transactions on Systems, Man, and Cybernetics: Systems.
[13] Mingyong Liu,et al. Cooperative path planning for multi-AUV in time-varying ocean flows , 2016 .
[14] Mingyong Liu,et al. A bio-inspired geomagnetic navigation model based on course constraint strategy under anomalies field disturbing for AUV , 2016, OCEANS 2016 - Shanghai.
[15] Bidyadhar Subudhi,et al. Co-operative control coordination of a team of underwater vehicles with communication constraints , 2016 .
[16] Daqi Zhu,et al. A multi-AUV cooperative hunting method in 3-D underwater environment with obstacle , 2016, Eng. Appl. Artif. Intell..
[17] Ali Hamzeh,et al. A PSO-based multi-robot cooperation method for target searching in unknown environments , 2016, Neurocomputing.
[18] Simon X. Yang,et al. Bioinspired Intelligent Algorithm and Its Applications for Mobile Robot Control: A Survey , 2015, Comput. Intell. Neurosci..
[19] Simon X. Yang,et al. Multi-AUV Hunting Algorithm Based on Bio-inspired Neural Network in Unknown Environments , 2015 .
[20] Caihong Li,et al. Mathematical Modeling and Analysis of Multirobot Cooperative Hunting Behaviors , 2015, J. Robotics.
[21] Simon X. Yang,et al. The Path Planning of AUV Based on D-S Information Fusion Map Building and Bio-Inspired Neural Network in Unknown Dynamic Environment , 2014 .
[22] Simon X. Yang,et al. A Bio-Inspired Cascaded Approach for Three-Dimensional Tracking Control of Unmanned underwater Vehicles , 2014, Int. J. Robotics Autom..
[23] Hong Qu,et al. An improved genetic algorithm with co-evolutionary strategy for global path planning of multiple mobile robots , 2013, Neurocomputing.
[24] Simon X. Yang,et al. Dynamic Task Assignment and Path Planning of Multi-AUV System Based on an Improved Self-Organizing Map and Velocity Synthesis Method in Three-Dimensional Underwater Workspace , 2013, IEEE Transactions on Cybernetics.
[25] Feng Ding,et al. Dynamic task assignment and path planning for multi-AUV system in 2D variable ocean current environment , 2012, 2012 24th Chinese Control and Decision Conference (CCDC).
[26] Simon Lacroix,et al. A cooperative architecture for target localization using multiple AUVs , 2012, Intell. Serv. Robotics.
[27] Chih-Min Lin,et al. Supervisory Recurrent Fuzzy Neural Network Guidance Law Design for Autonomous Underwater Vehicle , 2012 .
[28] Chao Liu,et al. Synchronized path following control of multiple homogenous underactuated AUVs , 2012, J. Syst. Sci. Complex..
[29] Michel Couillard,et al. Optimizing Constrained Search Patterns for Remote Mine-Hunting Vehicles , 2012, IEEE Journal of Oceanic Engineering.
[30] Simon X. Yang,et al. A Fuzzy-Logic Based Chaos GA for Cooperative Foraging of Multi-Robots in Unknown Environments , 2012, Int. J. Robotics Autom..
[31] Simon X. Yang,et al. Bioinspired Neural Network for Real-Time Cooperative Hunting by Multirobots in Unknown Environments , 2011, IEEE Transactions on Neural Networks.
[32] Chunming Qiao,et al. Cooperative Search and Survey Using Autonomous Underwater Vehicles (AUVs) , 2011, IEEE Transactions on Parallel and Distributed Systems.
[33] Ali Yalcin,et al. Dynamic Task Allocation in Cooperative Robot Teams , 2009, Robotica.
[34] Gwyn Griffiths,et al. Nature in Engineering for Monitoring the Oceans: Towards a Bio-Inspired Flexible Autonomous Underwater Vehicle Operating in an Unsteady Flow , 2010 .
[35] Abdennour El Rhalibi,et al. Moving-Target Pursuit Algorithm Using Improved Tracking Strategy , 2010, IEEE Transactions on Computational Intelligence and AI in Games.
[36] Gao Qing-wei. Heuristic Search for Moving Underwater Targets Based on Markov Process , 2010 .
[37] Ching-Chang Wong,et al. Fuzzy Control of Humanoid Robot for Obstacle Avoidance , 2008 .
[38] Nazmul H. Siddique,et al. Bio-inspired behaviour-based control , 2007, Artificial Intelligence Review.
[39] Xiaoping Wu,et al. GA-based path planning for multiple AUVs , 2007, Int. J. Control.
[40] Cao Zhi,et al. Cooperative Hunting of Multiple Mobile Robots in an Unknown Environment , 2003 .
[41] Henrik Schmidt,et al. A low-frequency sonar for sensor-adaptive, multistatic, detection and classification of underwater targets with AUVs , 2003, Oceans 2003. Celebrating the Past ... Teaming Toward the Future (IEEE Cat. No.03CH37492).
[42] Emil M. Petriu,et al. Behavior-based neuro-fuzzy controller for mobile robot navigation , 2002, IMTC/2002. Proceedings of the 19th IEEE Instrumentation and Measurement Technology Conference (IEEE Cat. No.00CH37276).
[43] Maja J. Mataric,et al. Getting Humanoids to Move and Imitate , 2000, IEEE Intell. Syst..