[1] REN F,BAO Y.A review on human-computer interaction and intelligent robots[J].International Journal of Information Technology & Decision Making,2020,19(1):5-47.
[2] LAI R,LIN W.Review of research on the key technologies,application fields and development trends of intelligent robots[C]//International Conference on Intelligent Robotics and Applications.Newcastle,NSW,Australia:Springer,2018:449-458.
[3] MUHAMMAD A,ALI M A H,SHANONO I H.A review:on intelligent mobile robot path planning techniques[C]//11th IEEE Symposium on Computer Applications & Industrial Electronics.New York:IEEE,2021:53-58.
[4] MOHANTY P K,SINGH A K,KUMAR A,et al.Path planning techniques for mobile robots:a review[C]//Proceedings of the 13th International Conference on Soft Computing and Pattern Recognition.Innsbruck,Austria:[s.n.],2022:657-667.
[5] YAO T,HE T,ZHAO W,et al.Review of path planning for autonomous underwater vehicles[C]//Proceedings of the 2019 International Conference on Robotics,Intelligent Control and Artificial Intelligence.New York:[s.n.],2019:482-487.
[6] YUN X,TAN K C.A wall-following method for escaping local minima in potential field based motion planning[C]//1997 8th International Conference on Advanced Robotics.Monterey,CA,USA:IEEE,1997:421-426.
[7] LUMELSKY V,STEPANOV A.Dynamic path planning for a mobile automaton with limited information on the environment[J].IEEE Transactions on Automatic Control,1986,31:1058-1063.
[8] NOBORIO H.A path-planning algorithm for generation of an intuitively reasonable path in an unknown 2D workspace[C]//Proceedings of 1990 Japan-U.S.A.Symposium on Flexible Automation.[S.l.]:[s.n.],1990:477-480.
[9] KIM D H,SHIN K,HAN C S,et al.Sensor-based navigation of a car-like robot based on bug family algorithms[J].Proceedings of the Institution of Mechanical Engineers Part C-Journal of Mechanical Engineering Science,2013,227(C6):1224-1241.
[10] BORENSTEIN J,KOREN Y.Real-time obstacle avoidance for fast mobile robots[J].IEEE Transactions on Systems,Man and Cybernetics,1989,19:1179-1187.
[11] KANDATHIL J J,MATHEW R,HIREMATH S S.Development and analysis of a novel obstacle avoidance strategy for a multi-robot system inspired by the bug-1 algorithm[J].Simulation-Transactions of the Society for Modeling and Simulation International,2020,96(10):807-824.
[12] WANG M,LIU J N K.Fuzzy logic-based real-time robot navigation in unknown environment with dead ends[J].Robotics and Autonomous Systems,2008,56(7):625-643.
[13] JIANG J,TU D,XU S,et al.Cognitive response navigation algorithm for mobile robots using biological antennas[J].Robotica,2013,32:743-756.
[14] MOHSEN A M,SHARKAS M A,ZAGHLOL M S.New real time (m-bug) algorithm for path planning and obstacle avoidance in 2D unknown environment[C]//2019 29th International Conference on Computer Theory and Applications (ICCTA).Alexandria,Egypt:IEEE,2019:25-31.
[15] MARINO R,MASTROGIOVANNI F,SGORBISSA A,et al.A minimalistic quadrotor navigation strategy for indoor multi-floor scenarios[C]//Intelligent Autonomous Systems. Monterey:Springer,2016:1561-1570.
[16] ABAFOGI M,DURDU A,AKDEMIR B.A new approach to mobile robot navigation in unknown environments[C]//10th International Conference on Electronics,Computers and Artificial Intelligence.Singapore:IEEE,2018:1-5.
[17] HORIUCHI Y,NOBORIO H.Evaluation of path length made in sensor-based path-planning with the alternative following[C]//IEEE International Conference on Robotics and Automation.London,United Kingdom:IEEE,2001:1728-1735.
[18] LUMELSKY V J,SKEWIS T.Incorporating range sensing in the robot navigation function[J].IEEE Transactions on Systems,Man and Cybernetics,1990,20:1058-1069.
[19] YOO K,CHUN J.Analysis of optimal range sensor placement for tracking a moving target[J].IEEE Communications Letters,2020:18(2):145-149.
[20] SINGH M.Design and development of a low-cost laser range sensor[J].The Imaging Science Journal,2017,65:1-11.
[21] JUNG J W,PARK J S,KANEYAMA K,et al.Mobile robot path planning using a laser range finder for environments with transparent obstacles[J].Applied Sciences-Basel,2020,10(8):2799.
[22] 马晓辉,丁洪伟,王梦瑶,等.基于BUG理论的平行主线改进算法[J].实验科学与技术,2016,14(1):12-17.
[23] YUFKA A,PARLAKTUNA O.Performance comparison of bug algorithms for mobile robots[C]//5th International Advanced Technologies Symposium.Karabuk:Springer,2009.
[24] QUINONEZ Y,BARRERA Pincheira F,et al.Simulation and path planning for quadcopter obstacle avoidance in indoor environments using the ROS framework[C]//International Conference on Software Process Improvement.[S.l.]:IEEE,2018:295-304.
[25] SUN K,KUMAR V.Belief space planning for mobile robots with range sensors using ILQG[J].IEEE Robotics and Automation Letters,2021,6(2):1902-1909.
[26] KAMON I,RIMON E,RIVLIN E.A new range-sensor based globally convergent navigation algorithm for mobile robots[C]//Proceedings of the 1996 IEEE International Conference on Robotics and Automation.[S.l.]:[s.n.],1995:429-435.
[27] KAMON I,RIMON E,RIVLIN E.TangentBug:a range-sensor based navigation algorithm[J].International Journal of Robotic Research,1998,17:934-953.
[28] DIB L.E-bug:new bug path-planning algorithm for autonomous robot in unknown environment[C]//15 Proceedings of the International Conference on Intelligent Information Processing,Security and Advanced Communication.New York:ACM,2015:1-8.
[29] MISTRI A,DUTTA A.Automated navigation of a mobile robot using ultrasonic range sensor based on modified e-bug algorithm[C]//3rd International Conference on Energy and Power.[S.l.]:IEEE,2022:1-7.
[30] MAGID E,RIVLIN E.CautiousBug:a competitive algorithm for sensory-based robot navigation[C]//2004 IEEE/RSJ Intelligent Robots and Systems.Sendai,Japan:IEEE,2004,3:2757-2762.
[31] 徐望宝,张进.基于改进的CautiousBug算法的机器人局部路径规划[J].控制工程,2014,21(4):510-514.
[32] XU Q,TANG G.Vectorization path planning for autonomous mobile agent in unknown environment[J].Neural Computing & Applications,2013,23(7/8):2129-2135.
[33] GURUPRASAD K R.EgressBug:a real time path planning algorithm for a mobile robot in an unknown environment[C]//Proceedings of the 2011 international conference on Advanced Computing,Networking and Security.[S.l.]:IEEE,2011:228-236.
[34] GURUPRASAD K R.Egress:an online path planning algorithm for boundary exploration[C]//2012 IEEE International Conference on Robotics and Automation.[S.l.]:IEEE,2012:3991-3996.
[35] 朱毅,张涛,宋靖雁.未知环境下势场法路径规划的局部极小问题研究[J].自动化学报,2010,36(8):1122-1130.
[36] ZHU Y,ZHANG T,SONG L,et al.A new bug-type navigation algorithm for mobile robots in unknown environments containing moving obstacles[J].Industrial Robot-the International Journal of Robotics Research and Application,2012,39(1):27-39.
[37] ZHU Y,ZHANG T,SONG J,et al.A new bug-type navigation algorithm considering practical implementation issues for mobile robots[C]//2010 IEEE International Conference on Robotics and Biomimetics.Tianjin:IEEE,2010:531-536.
[38] 徐胜,邢强,王浩.解决势场法路径规划中局部极小问题的角度累积法[J].控制与决策,2022,37(8):1997-2007.
[39] 马家辰,张琦.基于多行为融合的移动机器人路径规划方法[J].北京理工大学学报,2014,34(6):576-581.
[40] 谭民,王硕.多机器人系统[M].北京:清华大学出版社,2005.
[41] 康亮,赵春霞.未知环境下改进的基于BUG算法的移动机器人路径规划[J].系统仿真学报,2009,21(17):5414-5422.
[42] NOBORIO H,MAEDA Y,URAKAWA K.Three or more dimensional sensor-based path-planning algorithm HD-I[C]//Proceedings 1999 IEEE/RSJ International Conference on Intelligent Robots and Systems.[S.l.]:IEEE,1999:1699-1706.
[43] HACENE N,MENDIL B.Fuzzy behavior-based control of three wheeled omnidirectional mobile robot[J].Interna-tional Journal of Automation and Computing,2019,16(2):163-185.
[44] 郭娜,李彩虹,王迪,等.结合预测和模糊控制的移动机器人路径规划[J].计算机工程与应用,2020,56(8):104-109.
[45] 魏立新,吴绍坤,孙浩,等.基于多行为的移动机器人路径规划[J].控制与决策,2019,34(12):2721-2726.
[46] XU Q L,TANG G,LIU H,et al.Radom intermediate points based path planning in unknown environment[J].Applied Mechanics and Materials,2013,325-326:1688-1691.
[47] XU Q L.RandomBug:novel path planning algorithm in unknown environment[J].The Open Electrical & Electronic Engineering Journal,2014,8:252-257.
[48] YE M,DONG X,ZHAO J,et al.Path planning of manipulator based on improved RRT* algorithm[J].Journal of Physics:Conference Series,2022,2365:012038.
[49] 彭艳,鲍凌志,瞿栋,等.Multi-bug全局路径规划算法研究[J].农业机械学报,2020,51(6):375-384.
[50] XU Q,YU T,BAI J.The mobile robot path planning with motion constraints based on bug algorithm[C]//2017 Chinese Automation Congress.Jinan:IEEE,2017:2348-2352.
[51] HU Y,ZHANG Q,QIN L,et al.Escaping depressions in lrts with wall following method[C]//2017 Ninth International Conference on Intelligent Human-Machine Systems and Cybernetics.New York:IEEE,2017:134-138.
[52] SALAH A,SABATTO Z S.Development of behavior-based control systems for autonomous vehicle navigation[C]//World Congress on Industrial Control Systems Security.London,United Kingdom:Institute of Electrical and Electronics Engineers,2020:19-24.
[53] KHAZAEE M,SADEDEL M,DAVARPANAH A.Behavior-based navigation of an autonomous hexapod robot using a hybrid automaton[J].Journal of Intelligent & Robotic Systems,2021,102(2):29. |