Page 31 - Read Online
P. 31
Page 81 Li et al. Intell Robot 2021;1(1):58-83 I http://dx.doi.org/10.20517/ir.2021.08
42. Sun B, Zhu D, Tian C, Luo C. Complete coverage autonomous underwater vehicles path planning based on glasius bioinspired
neural network algorithm for discrete and centralized programming. IEEE Trans Cogn Commun Netw 2019;11:73–84.
43. Chen M, Zhu D. MultiAUV cooperative hunting control with improved Glasius bioinspired neural network. J Navig 2018;72:759–76.
44. Chen M, Zhu D. Realtime path planning for a robot to track a fast moving target based on improved Glasius bioinspired neural networks.
Int J Intell Robot Appl 2019;3:186–95.
45. Willms AR, Yang SX. An efficient dynamic system for realtime robotpath planning. IEEE Trans Syst Man Cybern B Cybern
2006;36:755–66.
46. Willms AR, Yang SX. Realtime robot path planning via a distancepropagating dynamic system with obstacle clearance. IEEE Trans
Syst Man Cybern B Cybern 2008;38:884–93.
47. Li S, Meng MQH, Chen W, et al. SPNN: A novel neural network approach for path planning. In: 2007 IEEE Interna tional
Conference on Robotics and Biomimetics (ROBIO); 2007 Dec 1518; Sanya, China. IEEE; 2007. pp. 1355–60.
48. Qu H, Yang SX, Willms AR, Yi Z. Realtime robot path planning based on a modified pulsecoupled neural network model. IEEE Trans
Neural Netw 2009;20:1724–39.
49. Qu H, Yi Z, Yang SX. Efficient shortestpathtree computation in network routing based on pulsecoupled neural networks. IEEE Trans
Cybern 2013;43:995–010.
50. Zhong Y, Shirinzadeh B, Tian Y. A new neural network for robot path planning. In: 2008 IEEE/ASME International Conference on
Advanced Intelligent Mechatronics; 2008 July 25; Xi’an, China. IEEE; 2008. pp. 1361–66.
51. Chen Y, Liang J, Wang Y, et al. Autonomous mobile robot path planning in unknown dynamic environments using neural dynamics.
Soft Comput 2020;24:13979–95.
52. Bueckert J, Yang SX, Yuan X, Meng MQH. Neural dynamics based multiple target path planning for a mobile robot. In: 2007 IEEE Inter
national Conference on Robotics and Biomimetics (ROBIO); 2007 Dec 518; Sanya, China. IEEE; 2007. pp. 1047–52.
53. Li H, Yang SX, Biletskiy Y. Neural network based path planning for a multirobot system with moving obstacles. In: 2008 IEEE
International Conference on Automation Science and Engineering; 2008 Aug 2326; Arlington, USA. IEEE; 2008. pp. 410–19.
54. Yuan X, Yang SX. Multirobotbased nanoassembly planning with automated path generation. IEEE ASME Trans Mechatron
2007;12:352–56.
55. Zhu A, Cai G, Yang SX. Theoretical analysis of a neural dynamics based model for robot trajectory generation. In: IEEE 2002 Inter
national Conference on Communications, Circuits and Systems and West Sino Expositions; 2002 Jun 29Jul 1; Chengdu, China. IEEE;
2002. pp. 1184–88.
56. Ni J, Yang SX. Bioinspired neural network for realtime cooperative hunting by multirobots in unknown environments. IEEE Trans
Neural Netw 2011;22:2062–77.
57. Yang SX, Luo C. A neural network approach to complete coverage path planning. IEEE Trans Syst Man Cybern B Cybern 2004;34:718–
24.
58. Godio S, Primatesta S, Guglieri G, Dovis F. A bioinspired neural networkbased approach for cooperative coverage planning of UAVs.
Information 2021;12:51.
59. Luo C, Yang SX, Yuan X. Realtime areacovering operations with obstacle avoidance for cleaning robots. In: IEEE/RSJ Interna
tional Conference on Intelligent Robots and System; 2002 Sept 30Oct 4; Lausanne, Switzerland. IEEE; 2002. pp. 2359–64.
60. Yang SX, Luo C, Meng M. A neural computational algorithm for coverage path planning in changing environments. In: IEEE 2002
International Conference on Communications, Circuits and Systems and West Sino Expositions; 2002 Jun 29Jul 1; Chengdu, China.
IEEE; 2002. pp. 1174–78.
61. Luo C, Yang SX. A realtime cooperative sweeping strategy for multiple cleaning robots. In: Proceedings of the IEEE Internatinal
Symposium on Intelligent Control; 2002 Oct 3030; Vancouver, Canada. IEEE; 2002. pp. 660–65.
62. Zhang J, Lv H, He D, et al. Discrete bioinspired neural network for complete coverage path planning. Int J Rob Autom 2017;32.
63. Luo C, Yang SX. A bioinspired neural network for realtime concurrent map building and complete coverage robot navigation in unknown
environments. IEEE Trans Neural Netw 2008;19:1279–98.
64. Luo C, Yang SX, Meng MQH. Realtime map building and area coverage in unknown environments. In: Proceedings of the 2005
IEEE International Conference on Robotics and Automation; 2005 Apr 1822; Barcelona, Spain. IEEE; 2005. pp. 1736–41.
65. Luo C, Yang S, Meng M. Neurodynamics based complete coverage navigation with realtime map building in unknown environments. In:
2006 IEEE/RSJ International Conference on Intelligent Robots and Systems; 2006 Oct 915; Beijing, China. IEEE; 2006. pp. 4228–33.
66. Luo C, Yang SX, Li X, Meng MQH. Neuraldynamicsdriven complete area coverage navigation through cooperation of multiple mobile
robots. IEEE Trans Consum Electron 2017;64:750–60.
67. Yu Z, Tao J, Xiong J, Luo A, Yang SX. Neuraldynamicsbased path planning of a bionic robotic Fish. In: 2019 IEEE Interna