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Clerk labyrint Likheten formation control of mobile robots Likhus Minst Forfølge

Figure 3 | Distributed Consensus-Based Robust Adaptive Formation Control  for Nonholonomic Mobile Robots with Partial Known Dynamics
Figure 3 | Distributed Consensus-Based Robust Adaptive Formation Control for Nonholonomic Mobile Robots with Partial Known Dynamics

The architecture of the formation control of a team of n mobile robots |  Download Scientific Diagram
The architecture of the formation control of a team of n mobile robots | Download Scientific Diagram

Leader–follower formation control of nonholonomic mobile robots based on a  bioinspired neurodynamic based approach - ScienceDirect
Leader–follower formation control of nonholonomic mobile robots based on a bioinspired neurodynamic based approach - ScienceDirect

Communications-based Formation Control of Mobile Robots | Proceedings of  the 23rd International ACM Conference on Modeling, Analysis and Simulation  of Wireless and Mobile Systems
Communications-based Formation Control of Mobile Robots | Proceedings of the 23rd International ACM Conference on Modeling, Analysis and Simulation of Wireless and Mobile Systems

PDF] Formation Control of Multi-robots Via Sliding-mode Technique |  Semantic Scholar
PDF] Formation Control of Multi-robots Via Sliding-mode Technique | Semantic Scholar

Applied Sciences | Free Full-Text | Coordinated Formation Design of Multi- Robot Systems via an Adaptive-Gain Super-Twisting Sliding Mode Method | HTML
Applied Sciences | Free Full-Text | Coordinated Formation Design of Multi- Robot Systems via an Adaptive-Gain Super-Twisting Sliding Mode Method | HTML

Formation control and coordination of multiple unmanned ground vehicles in  normal and faulty situations: A review - ScienceDirect
Formation control and coordination of multiple unmanned ground vehicles in normal and faulty situations: A review - ScienceDirect

Angle-Constrained Formation Control for Circular Mobile Robots | DeepAI
Angle-Constrained Formation Control for Circular Mobile Robots | DeepAI

Adaptive Neural-Network Control of Mobile Robot Formations Including  Actuator Dynamics | Scientific.Net
Adaptive Neural-Network Control of Mobile Robot Formations Including Actuator Dynamics | Scientific.Net

PDF) Leader following formation control for omnidirectional mobile robots-The  target chasing problem
PDF) Leader following formation control for omnidirectional mobile robots-The target chasing problem

Integral Sliding Mode Formation Control of Uncertain Mobile Robots,  978-3-659-63336-2, 3659633364 ,9783659633362 by Dianwei Qian
Integral Sliding Mode Formation Control of Uncertain Mobile Robots, 978-3-659-63336-2, 3659633364 ,9783659633362 by Dianwei Qian

Decentralized behavior-based formation control of multiple robots  considering obstacle avoidance | SpringerLink
Decentralized behavior-based formation control of multiple robots considering obstacle avoidance | SpringerLink

Dynamical formation control of wheeled mobile robots based on fuzzy logic
Dynamical formation control of wheeled mobile robots based on fuzzy logic

Formation Control of Nonholonomic Mobile Robots with Omnidirectional
Formation Control of Nonholonomic Mobile Robots with Omnidirectional

Multibots
Multibots

Formation Control of Mobile Robots Using Distributed Controller With  Sampled-Data and Communication Delays | Semantic Scholar
Formation Control of Mobile Robots Using Distributed Controller With Sampled-Data and Communication Delays | Semantic Scholar

Cooperative Formation Planning and Control of Multiple Mobile Robots |  IntechOpen
Cooperative Formation Planning and Control of Multiple Mobile Robots | IntechOpen

Mathematics | Free Full-Text | Adaptive Secure Control for Leader-Follower  Formation of Nonholonomic Mobile Robots in the Presence of Uncertainty and  Deception Attacks
Mathematics | Free Full-Text | Adaptive Secure Control for Leader-Follower Formation of Nonholonomic Mobile Robots in the Presence of Uncertainty and Deception Attacks

Formation Control of Mobile Robots and Unmanned Aerial Vehicles
Formation Control of Mobile Robots and Unmanned Aerial Vehicles

Formation Control of UAVs and Mobile Robots Using Self-organized  Communication Topologies | SpringerLink
Formation Control of UAVs and Mobile Robots Using Self-organized Communication Topologies | SpringerLink

Formation control of mobile robots with obstacle avoidance based on GOACM  using onboard sensors | springerprofessional.de
Formation control of mobile robots with obstacle avoidance based on GOACM using onboard sensors | springerprofessional.de

Wireless Sensor and Robot Networks Laboratory (WSRNLab): formation control  methods
Wireless Sensor and Robot Networks Laboratory (WSRNLab): formation control methods

PDF] Modeling and control of formations of nonholonomic mobile robots |  Scinapse
PDF] Modeling and control of formations of nonholonomic mobile robots | Scinapse

Distributed Robust Tracking Control of Multiple Mobile Robots Formation |  Scientific.Net
Distributed Robust Tracking Control of Multiple Mobile Robots Formation | Scientific.Net

Output-feedback formation control of wheeled mobile robots with actuators  saturation compensation | SpringerLink
Output-feedback formation control of wheeled mobile robots with actuators saturation compensation | SpringerLink

Multi-Robot Assignment and Formation Control, 978-3-8484-0340-0, 3848403404  ,9783848403400 by Edward Macdonald
Multi-Robot Assignment and Formation Control, 978-3-8484-0340-0, 3848403404 ,9783848403400 by Edward Macdonald

PDF) A Survey of Multi-mobile Robot Formation Control
PDF) A Survey of Multi-mobile Robot Formation Control

Formation Control of Nonholonomic Mobile Robots with Omnidirectional
Formation Control of Nonholonomic Mobile Robots with Omnidirectional