Artigos de revistas sobre o tema "Robotics-inspired algorithms"
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Mir, Imran, Faiza Gul, Suleman Mir, Laith Abualigah, Raed Abu Zitar, Abdelazim G. Hussien, Emad Mahrous Awwad e Mohamed Sharaf. "Multi-Agent Variational Approach for Robotics: A Bio-Inspired Perspective". Biomimetics 8, n.º 3 (7 de julho de 2023): 294. http://dx.doi.org/10.3390/biomimetics8030294.
Texto completo da fonteGutiérrez, Álvaro. "Recent Advances in Swarm Robotics Coordination: Communication and Memory Challenges". Applied Sciences 12, n.º 21 (2 de novembro de 2022): 11116. http://dx.doi.org/10.3390/app122111116.
Texto completo da fonteDu, Fengze. "Research of Bio-Inspired Motion Control in Robotics". Transactions on Computer Science and Intelligent Systems Research 5 (12 de agosto de 2024): 378–84. http://dx.doi.org/10.62051/ay9zws79.
Texto completo da fonteLatif, Rachid, Kaoutar Dahmane, Monir Amraoui, Amine Saddik e Abdelouahed Elouardi. "Evaluation of Bio-inspired SLAM algorithm based on a Heterogeneous System CPU-GPU". E3S Web of Conferences 229 (2021): 01023. http://dx.doi.org/10.1051/e3sconf/202122901023.
Texto completo da fonteVerma, Jyotsna, e Nishtha Kesswani. "A Review on Bio-Inspired Migration Optimization Techniques". International Journal of Business Data Communications and Networking 11, n.º 1 (janeiro de 2015): 24–35. http://dx.doi.org/10.4018/ijbdcn.2015010103.
Texto completo da fonteKumar, Suresh, e Patricia Sha. "Human Brain inspired Artificial Intelligence & Developmental Robotics: A Review". Sukkur IBA Journal of Computing and Mathematical Sciences 1, n.º 1 (30 de junho de 2017): 43. http://dx.doi.org/10.30537/sjcms.v1i1.6.
Texto completo da fonteMuhsen, Dena Kadhim, Ahmed T. Sadiq e Firas Abdulrazzaq Raheem. "A Survey on Swarm Robotics for Area Coverage Problem". Algorithms 17, n.º 1 (20 de dezembro de 2023): 3. http://dx.doi.org/10.3390/a17010003.
Texto completo da fonteTiago Sant’Anna e Lucas Silva. "Biology-Inspired Innovations in Soft Robotics for Efficient Locomotion". JOURNAL OF BIOENGINEERING, TECHNOLOGIES AND HEALTH 7, n.º 2 (20 de julho de 2024): 218–20. http://dx.doi.org/10.34178/jbth.v7i2.400.
Texto completo da fonteGurko, Alexander, e Volodymyr Hurko. "Bio-inspired methods for planning the path of mobile robots". Bulletin of Kharkov National Automobile and Highway University, n.º 98 (29 de novembro de 2022): 37. http://dx.doi.org/10.30977/bul.2219-5548.2022.98.0.37.
Texto completo da fonteTürkler, Levent, Taner Akkan e Lütfiye Özlem Akkan. "Usage of Evolutionary Algorithms in Swarm Robotics and Design Problems". Sensors 22, n.º 12 (11 de junho de 2022): 4437. http://dx.doi.org/10.3390/s22124437.
Texto completo da fonteBhagat, Sarthak, Hritwick Banerjee, Zion Ho Tse e Hongliang Ren. "Deep Reinforcement Learning for Soft, Flexible Robots: Brief Review with Impending Challenges". Robotics 8, n.º 1 (18 de janeiro de 2019): 4. http://dx.doi.org/10.3390/robotics8010004.
Texto completo da fonteChen, Junchi. "Algorithmic implementation and optimisation of path planning". Applied and Computational Engineering 33, n.º 1 (22 de janeiro de 2024): 176–84. http://dx.doi.org/10.54254/2755-2721/33/20230263.
Texto completo da fonteDevi, Kskn Venkata Ramana, Smitha B S, Sorabh Lakhanpal, Ravi Kalra, Vandana Arora Sethi e Sadiq Khader Thajil. "A review: Swarm Robotics: Cooperative Control in Multi-Agent Systems". E3S Web of Conferences 505 (2024): 03013. http://dx.doi.org/10.1051/e3sconf/202450503013.
Texto completo da fonteValdez, Fevrier, Oscar Castillo, Amita Jain e Dipak K. Jana. "Nature-Inspired Optimization Algorithms for Neuro-Fuzzy Models in Real-World Control and Robotics Applications". Computational Intelligence and Neuroscience 2019 (15 de abril de 2019): 1–2. http://dx.doi.org/10.1155/2019/9128451.
Texto completo da fonteChang, C. K., C. Siagian e L. Itti. "Hardware and software computing architecture for robotics applications of neuroscience-inspired vision and navigation algorithms". Journal of Vision 10, n.º 7 (13 de agosto de 2010): 1056. http://dx.doi.org/10.1167/10.7.1056.
Texto completo da fonteSun, Boai, Weikun Li, Zhangyuan Wang, Yunpeng Zhu, Qu He, Xinyan Guan, Guangmin Dai et al. "Recent Progress in Modeling and Control of Bio-Inspired Fish Robots". Journal of Marine Science and Engineering 10, n.º 6 (2 de junho de 2022): 773. http://dx.doi.org/10.3390/jmse10060773.
Texto completo da fonteZangana, Hewa Majeed, Zina Bibo Sallow, Mohammed Hazim Alkawaz e Marwan Omar. "Unveiling the Collective Wisdom: A Review of Swarm Intelligence in Problem Solving and Optimization". Inform : Jurnal Ilmiah Bidang Teknologi Informasi dan Komunikasi 9, n.º 2 (10 de maio de 2024): 101–10. http://dx.doi.org/10.25139/inform.v9i2.7934.
Texto completo da fonteMALIM, MUHAMMAD ROZI, e FARIDAH ABDUL HALIM. "IMMUNOLOGY AND ARTIFICIAL IMMUNE SYSTEMS". International Journal on Artificial Intelligence Tools 21, n.º 06 (dezembro de 2012): 1250031. http://dx.doi.org/10.1142/s0218213012500315.
Texto completo da fonteOlari, Viktoriya, Kostadin Cvejoski e Øyvind Eide. "Introduction to Machine Learning with Robots and Playful Learning". Proceedings of the AAAI Conference on Artificial Intelligence 35, n.º 17 (18 de maio de 2021): 15630–39. http://dx.doi.org/10.1609/aaai.v35i17.17841.
Texto completo da fonteSang, Ash Wan Yaw, Zhenyuan Yang, Lim Yi, Chee Gen Moo, Rajesh Elara Mohan e Anh Vu Le. "Inter-Reconfigurable Robot Path Planner for Double-Pass Complete Coverage Problem". Mathematics 12, n.º 6 (19 de março de 2024): 902. http://dx.doi.org/10.3390/math12060902.
Texto completo da fonteShigaki, Shunsuke, Mayu Yamada, Daisuke Kurabayashi e Koh Hosoda. "Robust Moth-Inspired Algorithm for Odor Source Localization Using Multimodal Information". Sensors 23, n.º 3 (28 de janeiro de 2023): 1475. http://dx.doi.org/10.3390/s23031475.
Texto completo da fonteJovanovic, Kosta, Jovana Vranic e Nadica Miljkovic. "Hill’s and Huxley’s muscle models - tools for simulations in biomechanics". Serbian Journal of Electrical Engineering 12, n.º 1 (2015): 53–67. http://dx.doi.org/10.2298/sjee1501053j.
Texto completo da fonteLuo, Yandong, Jianwen Guo, Zhenpeng Lao, Shaohui Zhang e Xiaohui Yan. "Swarm Robot Exploration Strategy for Path Formation Tasks Inspired by Physarum polycephalum". Complexity 2021 (19 de maio de 2021): 1–17. http://dx.doi.org/10.1155/2021/6698421.
Texto completo da fonteSrinivasan, Mandyam V. "Honeybees as a Model for the Study of Visually Guided Flight, Navigation, and Biologically Inspired Robotics". Physiological Reviews 91, n.º 2 (abril de 2011): 413–60. http://dx.doi.org/10.1152/physrev.00005.2010.
Texto completo da fonteDiaf, Moussa, Kamal Hammouche e Patrick Siarry. "From the Real Ant to the Artificial Ant". International Journal of Signs and Semiotic Systems 2, n.º 2 (julho de 2012): 45–68. http://dx.doi.org/10.4018/ijsss.2012070103.
Texto completo da fonteKrontiris, Athanasios, Ryan Luna e Kostas Bekris. "From Feasibility Tests to Path Planners for Multi-Agent Pathfinding". Proceedings of the International Symposium on Combinatorial Search 4, n.º 1 (20 de agosto de 2021): 114–22. http://dx.doi.org/10.1609/socs.v4i1.18289.
Texto completo da fonteDing, Zhiyuan. "Analysis of Mechanical Structure in Mobile Robots". Highlights in Science, Engineering and Technology 106 (16 de julho de 2024): 157–64. http://dx.doi.org/10.54097/rhm6we30.
Texto completo da fonteUrbanowicz, Ryan J., e Jason H. Moore. "Learning Classifier Systems: A Complete Introduction, Review, and Roadmap". Journal of Artificial Evolution and Applications 2009 (22 de setembro de 2009): 1–25. http://dx.doi.org/10.1155/2009/736398.
Texto completo da fontePham, Quang Anh, Hoong Chuin Lau, Minh Hoàng Hà e Lam Vu. "An Efficient Hybrid Genetic Algorithm for the Quadratic Traveling Salesman Problem". Proceedings of the International Conference on Automated Planning and Scheduling 33, n.º 1 (1 de julho de 2023): 343–51. http://dx.doi.org/10.1609/icaps.v33i1.27212.
Texto completo da fonteJuhászné Bíró, T., e P. Németh. "Innovative methods and research directions in the field of logistics". IOP Conference Series: Materials Science and Engineering 1237, n.º 1 (1 de maio de 2022): 012011. http://dx.doi.org/10.1088/1757-899x/1237/1/012011.
Texto completo da fontePransky, Joanne. "The Pransky interview: Dr Maja Matarić, Professor, University of Southern California; Pioneer, field of socially assistive robotics; co-founder of Embodied". Industrial Robot: the international journal of robotics research and application 46, n.º 3 (20 de maio de 2019): 332–36. http://dx.doi.org/10.1108/ir-04-2019-0069.
Texto completo da fonteArshad, Jehangir, Adan Qaisar, Atta-Ur Rehman, Mustafa Shakir, Muhammad Kamran Nazir, Ateeq Ur Rehman, Elsayed Tag Eldin, Nivin A. Ghamry e Habib Hamam. "Intelligent Control of Robotic Arm Using Brain Computer Interface and Artificial Intelligence". Applied Sciences 12, n.º 21 (25 de outubro de 2022): 10813. http://dx.doi.org/10.3390/app122110813.
Texto completo da fonteVorobyev, V. V., V. V. Karpov e A. S. Nasedkin. "On one implementation of collective behavior in a group of underwater robots". Transactions of the Krylov State Research Centre S-I, n.º 2 (21 de dezembro de 2021): 7–16. http://dx.doi.org/10.24937/2542-2324-2021-2-s-i-7-16.
Texto completo da fonteChen, Yujin, Ruizhi Chen, Mengyun Liu, Aoran Xiao, Dewen Wu e Shuheng Zhao. "Indoor Visual Positioning Aided by CNN-Based Image Retrieval: Training-Free, 3D Modeling-Free". Sensors 18, n.º 8 (16 de agosto de 2018): 2692. http://dx.doi.org/10.3390/s18082692.
Texto completo da fonteLópez-Muñoz, Raúl, Edgar A. Portilla-Flores, Leonel G. Corona-Ramírez, Eduardo Vega-Alvarado e Mario C. Maya-Rodríguez. "Inverse Kinematics: An Alternative Solution Approach Applying Metaheuristics". Applied Sciences 13, n.º 11 (27 de maio de 2023): 6543. http://dx.doi.org/10.3390/app13116543.
Texto completo da fonteAntonelli, Michele Gabrio, Pierluigi Beomonte Zobel e Nicola Stampone. "Response Surface Methodology for Kinematic Design of Soft Pneumatic Joints: An Application to a Bio-Inspired Scorpion-Tail-Actuator". Machines 12, n.º 7 (26 de junho de 2024): 439. http://dx.doi.org/10.3390/machines12070439.
Texto completo da fonteOLSON, BRIAN, KEVIN MOLLOY, S. FARID HENDI e AMARDA SHEHU. "GUIDING PROBABILISTIC SEARCH OF THE PROTEIN CONFORMATIONAL SPACE WITH STRUCTURAL PROFILES". Journal of Bioinformatics and Computational Biology 10, n.º 03 (junho de 2012): 1242005. http://dx.doi.org/10.1142/s021972001242005x.
Texto completo da fonteSosa-Ceron, Arturo Daniel, Hugo Gustavo Gonzalez-Hernandez e Jorge Antonio Reyes-Avendaño. "Learning from Demonstrations in Human–Robot Collaborative Scenarios: A Survey". Robotics 11, n.º 6 (15 de novembro de 2022): 126. http://dx.doi.org/10.3390/robotics11060126.
Texto completo da fonteChen, Chao, Jiacheng Xu, Weijian Liao, Hao Ding, Zongzhang Zhang, Yang Yu e Rui Zhao. "Focus-Then-Decide: Segmentation-Assisted Reinforcement Learning". Proceedings of the AAAI Conference on Artificial Intelligence 38, n.º 10 (24 de março de 2024): 11240–48. http://dx.doi.org/10.1609/aaai.v38i10.29002.
Texto completo da fonteBorkar, Kailash Kumar, Turki Aljrees, Saroj Kumar Pandey, Ankit Kumar, Mukesh Kumar Singh, Anurag Sinha, Kamred Udham Singh e Vandana Sharma. "Stability Analysis and Navigational Techniques of Wheeled Mobile Robot: A Review". Processes 11, n.º 12 (26 de novembro de 2023): 3302. http://dx.doi.org/10.3390/pr11123302.
Texto completo da fonteAlbani, Dario, Wolfgang Hönig, Daniele Nardi, Nora Ayanian e Vito Trianni. "Hierarchical Task Assignment and Path Finding with Limited Communication for Robot Swarms". Applied Sciences 11, n.º 7 (31 de março de 2021): 3115. http://dx.doi.org/10.3390/app11073115.
Texto completo da fonteNobuhara, Hajime. "Selected Papers from SCIS & ISIS 2006 – No.2". Journal of Advanced Computational Intelligence and Intelligent Informatics 11, n.º 7 (20 de setembro de 2007): 727. http://dx.doi.org/10.20965/jaciii.2007.p0727.
Texto completo da fonteO., KOLLAROV, e KARDASH D. "Application of the particle swarm method in optimization problems of energy." Journal of Electrical and power engineering 29, n.º 2 (19 de dezembro de 2023): 50–54. http://dx.doi.org/10.31474/2074-2630-2023-2-50-54.
Texto completo da fonteKravchenko, Oleksandr, Anastasiia Varava, Florian T. Pokorny, Didier Devaurs, Lydia E. Kavraki e Danica Kragic. "A Robotics-Inspired Screening Algorithm for Molecular Caging Prediction". Journal of Chemical Information and Modeling 60, n.º 3 (4 de março de 2020): 1302–16. http://dx.doi.org/10.1021/acs.jcim.9b00945.
Texto completo da fonteVijayan, Asha, Chaitanya Nutakki, Dhanush Kumar, Krishnashree Achuthan, Bipin Nair e Shyam Diwakar. "Enabling a Freely Accessible Open Source Remotely Controlled Robotic Articulator with a Neuro-Inspired Control Algorithm". International Journal of Online Engineering (iJOE) 13, n.º 01 (18 de janeiro de 2017): 61. http://dx.doi.org/10.3991/ijoe.v13i01.6288.
Texto completo da fonteŁOŚ, ALEKSANDRA, MAŁGORZATA BIEŃKOWSKA e ANETA STRACHECKA. "Honey bee as an alternative model invertebrate organism". Medycyna Weterynaryjna 74, n.º 10 (2025): 6140–2025. http://dx.doi.org/10.21521/mw.6140.
Texto completo da fonteRasouli, Samira, Kerstin Dautenhahn e Chrystopher L. Nehaniv. "Simulation of a Bio-Inspired Flocking-Based Aggregation Behaviour in Swarm Robotics". Biomimetics 9, n.º 11 (1 de novembro de 2024): 668. http://dx.doi.org/10.3390/biomimetics9110668.
Texto completo da fonteMartinez, Fredy, Holman Montiel e Fernando Martinez. "A novel visual tracking scheme for unstructured indoor environments". International Journal of Electrical and Computer Engineering (IJECE) 13, n.º 6 (1 de dezembro de 2023): 6216. http://dx.doi.org/10.11591/ijece.v13i6.pp6216-6227.
Texto completo da fonteLi, Jialong. "A path planning generator based on the Chaos Game Optimization algorithm". Applied and Computational Engineering 55, n.º 1 (25 de julho de 2024): 222–31. http://dx.doi.org/10.54254/2755-2721/55/20241526.
Texto completo da fonteLi, Junfei, e Simon X. Yang. "Intelligent Fish-Inspired Foraging of Swarm Robots with Sub-Group Behaviors Based on Neurodynamic Models". Biomimetics 9, n.º 1 (1 de janeiro de 2024): 16. http://dx.doi.org/10.3390/biomimetics9010016.
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