Humanoid robots in tomorrow's aircraft manufacturing 15 February 2016

Similar documents
H2020 RIA COMANOID H2020-RIA

Freeze-dried food and 1 bathroom: 6 simulate Mars in dome 20 January 2017, by Caleb Jones

ESL E-Learning for Business Consultants. A look into factory processes of the future. Muraishi Joanna

Atomic bomb test marks 70th birthday amid renewed interest 16 July 2015, byrussell Contreras

Next Generation of Collaborative Robots

ROBOTICS ENG YOUSEF A. SHATNAWI INTRODUCTION

Exhibition charts 500 years of evolution of robots 7 February 2017, by Lynne O'donnell

ROBONAUT 2: FIRST HUMANOID ROBOT IN SPACE

Glass expert digs into secrets of historic Venetian process 4 February 2016, bychris Carola

Locomotion: Legs and Artificial Muscle. SUMMARY: Many labs at the forefront of robotic research, especially locomotive

Gift Guide: Cool tech toys for the kid in your life 22 November 2016, by Bree Fowler

Humanoids. Lecture Outline. RSS 2010 Lecture # 19 Una-May O Reilly. Definition and motivation. Locomotion. Why humanoids? What are humanoids?

Three International Space Station astronauts land in Kazakhstan 18 June 2016, by Vladimir Isachenkov

All about Go, the ancient game in which AI bested a master 10 March 2016, by Youkyung Lee

Humanoid robot. Honda's ASIMO, an example of a humanoid robot

Journal of Theoretical and Applied Mechanics, Sofia, 2014, vol. 44, No. 1, pp ROBONAUT 2: MISSION, TECHNOLOGIES, PERSPECTIVES

Robotic Installation of OSI-Bolts

Zuckerberg pledges to 'keep building' in noapology

For unlikely tech hub in Russia, recession's a godsend 12 December 2016, by Natalia Suvorova

Stanford Center for AI Safety

Researchers turn to cannons to save elusive birds 20 September 2013, by Rodrique Ngowi

Cornell professor unlocks mysteries of paintings 19 November 2014, by Michael Hill

Virtual Engineering: Challenges and Solutions for Intuitive Offline Programming for Industrial Robot

Indian Astronomy Group

Chapter 1. Robot and Robotics PP

Concept and Architecture of a Centaur Robot

National Aeronautics and Space Administration

Integration of Manipulation and Locomotion by a Humanoid Robot

RESEARCHES IN THE DEVELOPPEMENT OF A SIMULATOR FOR THE TRAINING OF INTERVENTION ROBOT OPERATORS

Translation University of Tokyo Intellectual Property Policy

Development and Evaluation of a Centaur Robot

How to Install A Skylark Electric Foldaway Attic Stairs

Snake Robots. From Biology - Through University - Towards Industry I. Kristin Y. Pettersen

Concept and Architecture of a Centaur Robot

FALL 2014, Issue No. 32 ROBOTICS AT OUR FINGERTIPS

ASSEMBLY 39TH SESSION

Humanoid Robotics (TIF 160)

Two Americans win econ Nobel for work on climate and growth 8 October 2018, by Paul Wiseman And David Keyton

Aeolus Campaign Planning

ASSEMBLY 39TH SESSION

Snowy owl numbers far lower than once thought 21 December 2017, by Tammy Webber

Autonomous Stair Climbing Algorithm for a Small Four-Tracked Robot

EmagiKit. Privacy Pod Plus. Quiet. Easy. Affordable. INSTRUCTIONS ASSEMBLY

ASSEMBLY OF THE KNOCKED-DOWN LADDERS: 8 to 12 STEPS STANDARD TOP AND SAFELOCK REQUIRED TOOLS

Executive Summary. Chapter 1. Overview of Control

Robotics Laboratory. Report Nao. 7 th of July Authors: Arnaud van Pottelsberghe Brieuc della Faille Laurent Parez Pierre-Yves Morelle

User Guide. No Stress, how it works?

Research Proposal: Autonomous Mobile Robot Platform for Indoor Applications :xwgn zrvd ziad mipt ineyiil zinepehe`e zciip ziheaex dnxethlt

FalconBots RoboCup Humanoid Kid -Size 2014 Team Description Paper. Minero, V., Juárez, J.C., Arenas, D. U., Quiroz, J., Flores, J.A.

Humanoid Robotics (TIF 160)

Walking beaches, volunteers amass data on dead seabirds 8 November 2017, by Phuong Le

Trudeau, Gates raise billions for AIDS, TB and malaria fight 17 September 2016, by Rob Gillies

BENEFITS OF A DUAL-ARM ROBOTIC SYSTEM

Buzz Aldrin: Where were you when I walked on moon? (Update) 16 July 2014, by Marcia Dunn

New Solution for Walking Robot

Microsoft touts Xbox One as all-in-one entertainment (Update 4) 21 May 2013, by Barbara Ortutay

Mount to the Wall INSTALLATION MANUAL

Term Paper: Robot Arm Modeling

SECOND YEAR PROJECT SUMMARY

Medium Pro Table Top Stand

School of Computer and Information Science, Southwest University, Chongqing, China

'Fallout 4' crowned game of the year at DICE Awards 19 February 2016, by Derrik J. Lang

KINECT CONTROLLED HUMANOID AND HELICOPTER

INSTALLATION OF THE TRACK FOR THE STRAIGHT SIDE STEEL LADDER

15 Planer Stand. Model Due to continuing improvements, actual product may differ slightly from the product described herein.

ROBOTC: Programming for All Ages

LEARNING FROM THE AVIATION INDUSTRY

INSTALLATION GUIDE. This surround / suite is intended for use with electric fires only. It must never be used with a gas or solid fuel fire.

Apple turns stores into galleries for ipad, iphone artists 8 January 2015, bybarbara Ortutay

Converting Motion between Different Types of Humanoid Robots Using Genetic Algorithms

Can Artificial Intelligence pass the CPL(H) Skill Test?

Humanoid Robots. by Julie Chambon

Figure 3.1: This ranging sensor can measure the distance to nearby objects.

By SP Partners, LLC. INSTALLATION GUIDE. ProTech

IRH 2017 / Group 10. Hosen Gakuen High School Risu inter. Takeru Saito, Akitaka Fujii. Theme3 Most advanced technologies of robots

OWNER'S MANUAL. Parts list Check that all of the following items are present ENGLISH GERMAN FRENCH ITALIAN SPANISH. Before installation.

Essential Functions and Physical Demands Analysis

KI-SUNG SUH USING NAO INTRODUCTION TO INTERACTIVE HUMANOID ROBOTS

TM5. Guide Book. Hardware Version: 2.00 Software Version: 1.62

Affordance based Human Motion Synthesizing System

Lab Design of FANUC Robot Operation for Engineering Technology Major Students

Wireless Transceiver - Bell & Tone Scheduling Troubleshooting Guide

KPI is one of the oldest and biggest technical universities in Ukraine. It was founded in 1898.

This document is a preview generated by EVS

Drilling solutions for Construction,Mining and Quarrying Industy

Testimony to the President s Commission on Implementation of the United States Space Exploration Policy

European Boat Design Innovation Group: Applications of RAMSIS in the marine industry

ECE-C690: Dependable Computing Midterm Exam

Tele-Operated Anthropomorphic Arm and Hand Design

UKEMI: Falling Motion Control to Minimize Damage to Biped Humanoid Robot

ISO INTERNATIONAL STANDARD. Ergonomics of human-system interaction Part 910: Framework for tactile and haptic interaction

Rapid Development System for Humanoid Vision-based Behaviors with Real-Virtual Common Interface

Copyright Teletronics International, Inc. Patent Pending

Dream Chaser Frequently Asked Questions

SOPHIE CABIN STATION - BED

Robots Leaving the Production Halls Opportunities and Challenges

Embraer: Brazil s pioneering aviation giant

Appendix B: Example Research-Activity Description

An Interview with Ian McClelland. Senior Director of Systems and Software at Thales Inflight Entertainment and Connectivity (IFEC)

MEASURED ENGINE INSTALLATION EFFECTS OF FOUR CIVIL TRANSPORT AIRPLANES

Transcription:

Humanoid robots in tomorrow's aircraft manufacturing 15 February 2016 value-added ones. The primary difficulty for these robots will be to work in a confined environment and move without colliding with the numerous surrounding objects. This is the first issue researchers will have to solve by developing new algorithms for the planning and control of precise movements. Planning and control of multi-contact movements by Developing humanoid robotic technology to perform difficult tasks in aircraft manufacturing facilities is the goal of a four-year joint research project, which is being conducted by the Joint Robotics Laboratory and Airbus Group. It will officially be launched on 12 February 2016 at the French Embassy in Tokyo. The introduction of humanoids on aircraft assembly lines will make it possible to relieve human operators of the most laborious and dangerous tasks, thus allowing them to concentrate on higher Due to the size of aircraft (for example airliners), and the very high number of tasks to be executed on a limited number of units, the use of specialized fixed-base robots, like those already in use by the automotive industry, is impossible in the aeronautical industry. There are other difficulties as well, for even if robots with mobile bases and robotic arms can be used by the industry (as with Airbus Group for example), they are limited in their ability to move, since they cannot climb stairs or ladders, or move past obstacles on the floor, etc. For its part, the Joint Robotics Laboratory (JRL, CNRS/AIST) is developing, by way of HRP-2 et HRP-4 robot models, new technologies known as multi-contact locomotion: by making use of its entire body to make contact with its environment, and not just its feet, this type of robot can climb ladders and enter confined spaces. Multiple points of contact also make it possible to increase a robot's stability, as well as the force it can apply when executing a task. Moreover, the anthropomorphic form of these robots offers greater versatility of use to execute a large number of different tasks in varied environments. The collaboration between JRL researchers and Airbus Group therefore aims to enable humanoid robots to execute manipulation tasks in the limited and confined environment of assembly lines, where they must make coordinated use of their bodies in order to successfully complete their mission. In fact, these cramped spaces necessitate particular postures. With the calculations for such postures proving to be mathematically complex, the researchers must firstly develop new algorithms that are much more powerful than existing ones, 1 / 5

while keeping the calculations sufficiently fast in order for the movement of the robot to remain efficient. Typical tasks to be executed by robots include, for instance, tightening a bolt, cleaning metallic dust from an area, or inserting parts in the structure of an airplane. They could also verify that systems are functioning properly once manufacturing is complete. These algorithms will be tested on a set of scenarios drawn from the needs of the different branches of Airbus Group (Civil Aviation, Helicopters, and Space), which will become increasingly realistic over the years. With regard to research in robotics, in addition to the contribution of new algorithms, this collaboration will perhaps highlight the deficiencies of current robots (design, precision or power, for example). It could also make it possible to define, in the next 10 to 15 years, the specifications for the first generation of humanoid robots dedicated to the manufacture of large structures. Planning and control of multi-contact movements by 2 / 5

Planning and control of multi-contact movements by 3 / 5

Planning and control of multi-contact movements by Provided by CNRS 4 / 5

Powered by TCPDF (www.tcpdf.org) APA citation: Humanoid robots in tomorrow's aircraft manufacturing (2016, February 15) retrieved 31 December 2017 from https://phys.org/news/2016-02-humanoid-robots-tomorrow-aircraft.html This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no part may be reproduced without the written permission. The content is provided for information purposes only. 5 / 5