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Scaling effects in multi-robot control
1: Scaling of some mechanic quantities. L is the characteristic length... | Download Table
Milli-scale cellular robots that can reconfigure morphologies and behaviors simultaneously | Nature Communications
PDF] Scaling effects in multi-robot control.
Multi-Robot Formation Shape Control Using Convex Optimization and Bottleneck Assignment
Small-scale soft-bodied robot with multimodal locomotion | Nature
Millimeter-scale flexible robots with programmable three-dimensional magnetization and motions | Science Robotics
Toward an interdisciplinary integration between multi-agents systems and multi-robots systems: a case study | The Knowledge Engineering Review | Cambridge Core
Scaling Effects in Multi-Robot Control
A multi-axis robot-based bioprinting system supporting natural cell function preservation and cardiac tissue fabrication - ScienceDirect
Robotics | Free Full-Text | Service Robots in the Healthcare Sector
How Can We Make Robotics More like Generative Modeling? | Eric Jang
A Critical Review of Communications in Multi-robot Systems | SpringerLink
Applied Sciences | Free Full-Text | Multi-Robot Leader Grouping Consistent Formation Control Method Research with Low Convergence Time Based on Nonholonomic Constraints
Robotic surfaces with reversible, spatiotemporal control for shape morphing and object manipulation | Science Robotics
PDF] Scaling effects in multi-robot control.
Reinforcement learning for robot research: A comprehensive review and open issues - Tengteng Zhang, Hongwei Mo, 2021
Scaling Effects in Multi-robot Control
Robotics - Wikipedia
Service humanoid robotics: a novel interactive system based on bionic-companionship framework [PeerJ]
Multi-Loop PI Control of a Robotic Arm - MATLAB & Simulink
Applied Sciences | Free Full-Text | Multi-Robot Leader Grouping Consistent Formation Control Method Research with Low Convergence Time Based on Nonholonomic Constraints
RT-1: Robotics Transformer for Real-World Control at Scale – Google AI Blog
Discovering New Chemistry with an Autonomous Robotic Platform Driven by a Reactivity-Seeking Neural Network | ACS Central Science