Access the full text.
Sign up today, get DeepDyve free for 14 days.
S. Thabit, Ali Mohades (2019)
Multi-Robot Path Planning Based on Multi-Objective Particle Swarm OptimizationIEEE Access, 7
M. Muni, D. Parhi, P. Kumar, Saroj Kumar (2020)
Motion control of multiple humanoids using a hybridized prim’s algorithm-fuzzy controllerSoft Computing, 25
Saroj Kumar, K. Pandey, M. Muni, D. Parhi (2020)
Path Planning of the Mobile Robot Using Fuzzified Advanced Ant Colony Optimization
Narinder Singh, S. Singh (2017)
Hybrid Algorithm of Particle Swarm Optimization and Grey Wolf Optimizer for Improving Convergence PerformanceJ. Appl. Math., 2017
Adem Tuncer, Mehmet Yildirim (2012)
Dynamic path planning of mobile robots with improved genetic algorithmComput. Electr. Eng., 38
R. Abiyev, Irfan Gunsel, N. Akkaya, E. Aytaç, Ahmet Cagman, Sanan Abizada (2017)
Fuzzy control of omnidirectional robotProcedia Computer Science, 120
Jeong-Jung Kim, Jujang Lee (2015)
Trajectory Optimization With Particle Swarm Optimization for Manipulator Motion PlanningIEEE Transactions on Industrial Informatics, 11
R. Kala, A. Shukla, R. Tiwari, Sourabh Rungta, R. Janghel (2009)
Mobile Robot Navigation Control in Moving Obstacle Environment Using Genetic Algorithm, Artificial Neural Networks and A* Algorithm2009 WRI World Congress on Computer Science and Information Engineering, 4
Shuying Peng, Wuxi Shi (2018)
Adaptive Fuzzy Output Feedback Control of a Nonholonomic Wheeled Mobile RobotIEEE Access, 6
J. Mohanta, A. Keshari (2019)
A knowledge based fuzzy-probabilistic roadmap method for mobile robot navigationAppl. Soft Comput., 79
C. Lamini, Said Benhlima, Ali Elbekri (2018)
Genetic Algorithm Based Approach for Autonomous Mobile Robot Path PlanningProcedia Computer Science, 127
B. Patle, G. L., A. Pandey, D. Parhi, A. Jagadeesh (2019)
A review: On path planning strategies for navigation of mobile robotDefence Technology
D. Parhi (2005)
Navigation of Mobile Robots Using a Fuzzy Logic ControllerJournal of Intelligent and Robotic Systems, 42
L. Moreno, J. Armingol, S. Garrido, A. Escalera, M. Salichs (1999)
A Genetic Algorithm for Mobile Robot Localization Using Ultrasonic SensorsJournal of Intelligent and Robotic Systems, 34
Liu, Changan, Yan, Xiaohu, Chun-yang, Wu, Hua (2011)
The Wolf Colony Algorithm and Its Application, 20
P. Rathee, Ritu Garg, S. Meena (2015)
USING GREY WOLF OPTIMIZER FOR IMAGE REGISTRATION
Jianhua Zhang, Yong Zhang, Yong Zhou (2018)
Path Planning of Mobile Robot Based on Hybrid Multi-Objective Bare Bones Particle Swarm Optimization With Differential EvolutionIEEE Access, 6
Baofang Wang, Sheng Li, Jian Guo, Qingwei Chen (2017)
Car-like mobile robot path planning in rough terrain using multi-objective particle swarm optimization algorithmNeurocomputing, 282
Harshal Dewang, P. Mohanty, S. Kundu (2018)
A Robust Path Planning For Mobile Robot Using Smart Particle Swarm OptimizationProcedia Computer Science, 133
B. Benhala, A. Ahaitouf, A. Mechaqrane, B. Benlahbib, F. Abdi, El Abarkan, M. Fakhfakh (2011)
Sizing of current conveyors by means of an Ant Colony Optimization technique2011 International Conference on Multimedia Computing and Systems
S. Mirjalili, S. Mirjalili, A. Lewis (2014)
Grey Wolf OptimizerAdv. Eng. Softw., 69
Argelia Bernal, Tonatiuh Matos, Darío Núñez (2003)
Flat central density profiles from scalar field dark matter halosRevista Mexicana De Astronomia Y Astrofisica, 44
M. Muni, D. Parhi, P. Kumar, Asita Rath (2020)
Navigational Analysis of Multiple Humanoids Using a Hybridized Rule Base-Sugeno Fuzzy ControllerInt. J. Humanoid Robotics, 17
Zhangjun Song, Hongliang Ren, Jianwei Zhang, S. Ge (2016)
Kinematic Analysis and Motion Control of Wheeled Mobile Robots in Cylindrical WorkspacesIEEE Transactions on Automation Science and Engineering, 13
N. Chakraborty, A. Ghosal (2004)
Kinematics of wheeled mobile robots on uneven terrainMechanism and Machine Theory, 39
Saroj Kumar, D. Parhi, K. Pandey, M. Muni (2021)
Hybrid IWD-GA: An Approach for Path Optimization and Control of Multiple Mobile Robot in Obscure Static and Dynamic EnvironmentsRobotica, 39
T. Muthu, R. Gloude, S. Swaminathan, L. Kumar (2012)
Fuzzy logic controller for autonomous navigation2012 International Conference on Communication and Signal Processing
M. Jabbarpour, H. Zarrabi, Jason Jung, Pankoo Kim (2017)
A Green Ant-Based method for Path Planning of Unmanned Ground VehiclesIEEE Access, 5
Milad Nazarahari, E. Khanmirza, Samira Doostie (2019)
Multi-objective multi-robot path planning in continuous environment using an enhanced genetic algorithmExpert Syst. Appl., 115
B. Patle, D. Parhi, A. Jagadeesh, S. Kashyap (2019)
Application of probability to enhance the performance of fuzzy based mobile robot navigationAppl. Soft Comput., 75
Ulises Orozco-Rosas, O. Montiel, R. Sepúlveda (2019)
Mobile robot path planning using membrane evolutionary artificial potential fieldAppl. Soft Comput., 77
Swarm and Evolutionary Computation, 1
Saeed Germi, M. Khosravi, Rasul Fesharakifard (2018)
Adaptive GA-based Potential Field Algorithm for Collision-free Path Planning of Mobile Robots in Dynamic Environments2018 6th RSI International Conference on Robotics and Mechatronics (IcRoM)
M. Muni, D. Parhi, P. Kumar (2020)
Implementation of grey wolf optimization controller for multiple humanoid navigationComputer Animation and Virtual Worlds, 31
A. Pandey, Saroj Kumar, K. Pandey, D. Parhi (2016)
Mobile robot navigation in unknown static environments using ANFIS controllerPerspectives on Science, 8
Saroj Kumar, D. Parhi, M. Muni, K. Pandey (2020)
Optimal path search and control of mobile robot using hybridized sine-cosine algorithm and ant colony optimization techniqueInd. Robot, 47
D. Parhi, M. Singh (2008)
Intelligent fuzzy interface technique for the control of an autonomous mobile robotProceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 222
A. Dastanpour, R. Mahmood (2013)
Feature Selection Based on Genetic Algorithm and SupportVector Machine for Intrusion Detection System
S. Pradhan, D. Parhi, A. Panda (2009)
Fuzzy logic techniques for navigation of several mobile robotsAppl. Soft Comput., 9
A. Rao, K. Ramji, T. Kumar (2018)
Intelligent Navigation of Mobile Robot Using Grey Wolf Colony OptimizationMaterials Today: Proceedings, 5
Saroj Kumar, D. Parhi, A. Kashyap, M. Muni (2021)
Static and dynamic path optimization of multiple mobile robot using hybridized fuzzy logic-whale optimization algorithmProceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 235
R. Poli, J. Kennedy, T. Blackwell (1995)
Particle swarm optimizationSwarm Intelligence, 1
M. Muni, Saroj Kumar, D. Parhi, K. Pandey (2021)
Water cycle algorithm: an approach for improvement of navigational strategy of multiple humanoid robotsRobotica, 40
Lanfei Wang, Jun Guo, Qu (王曲), Jiangming Kan (2018)
Ground Robot Path Planning Based on Simulated Annealing Genetic Algorithm2018 International Conference on Cyber-Enabled Distributed Computing and Knowledge Discovery (CyberC)
R. Rashid, N. Perumal, I. Elamvazuthi, M. Tageldeen, M.K.A.Ahmed Khan, S. Parasuraman (2016)
Mobile robot path planning using Ant Colony Optimization2016 2nd IEEE International Symposium on Robotics and Manufacturing Automation (ROMA)
M. Pedersen (2010)
Good Parameters for Particle Swarm Optimization
M. Muni, D. Parhi, P. Kumar (2020)
Improved Motion Planning of Humanoid Robots Using Bacterial Foraging OptimizationRobotica, 39
Qi-Lei Xu, Man-Man Cai, Lei Zhao (2017)
The robot path planning based on ant colony and particle swarm fusion algorithm2017 Chinese Automation Congress (CAC)
Azzeddine Bakdi, A. Hentout, Hakim Boutami, Abderraouf Maoudj, O. Hachour, B. Bouzouia (2017)
Optimal path planning and execution for mobile robots using genetic algorithm and adaptive fuzzy-logic controlRobotics Auton. Syst., 89
Smooth and autonomous navigation of mobile robot in a cluttered environment is the main purpose of proposed technique. That includes localization and path planning of mobile robot. These are important aspects of the mobile robot during autonomous navigation in any workspace. Navigation of mobile robots includes reaching the target from the start point by avoiding obstacles in a static or dynamic environment. Several techniques have already been proposed by the researchers concerning navigational problems of the mobile robot still no one confirms the navigating path is optimal.Design/methodology/approachTherefore, the modified grey wolf optimization (GWO) controller is designed for autonomous navigation, which is one of the intelligent techniques for autonomous navigation of wheeled mobile robot (WMR). GWO is a nature-inspired algorithm, which mainly mimics the social hierarchy and hunting behavior of wolf in nature. It is modified to define the optimal positions and better control over the robot. The motion from the source to target in the highly cluttered environment by negotiating obstacles. The controller is authenticated by the approach of V-REP simulation software platform coupled with real-time experiment in the laboratory by using Khepera-III robot.FindingsDuring experiments, it is observed that the proposed technique is much efficient in motion control and path planning as the robot reaches its target position without any collision during its movement. Further the simulation through V-REP and real-time experimental results are recorded and compared against each corresponding results, and it can be seen that the results have good agreement as the deviation in the results is approximately 5% which is an acceptable range of deviation in motion planning. Both the results such as path length and time taken to reach the target is recorded and shown in respective tables.Originality/valueAfter literature survey, it may be said that most of the approach is implemented on either mathematical convergence or in mobile robot, but real-time experimental authentication is not obtained. With a lack of clear evidence regarding use of MGWO (modified grey wolf optimization) controller for navigation of mobile robots in both the environment, such as in simulation platform and real-time experimental platforms, this work would serve as a guiding link for use of similar approaches in other forms of robots.
International Journal of Intelligent Unmanned Systems – Emerald Publishing
Published: Apr 10, 2023
Keywords: Wheeled mobile robot; Navigation; GWOC (grey wolf optimization controller); Khepera-III; V-REP
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.