{"id":220280,"date":"2016-03-06T23:05:00","date_gmt":"2016-03-06T23:05:00","guid":{"rendered":"https:\/\/eenewseurope.artwhere.co\/des-robots-humanoides-dans-les-usines-aeronautiques-de-demain\/"},"modified":"2016-03-06T23:05:00","modified_gmt":"2016-03-06T23:05:00","slug":"des-robots-humanoides-dans-les-usines-aeronautiques-de-demain","status":"publish","type":"post","link":"https:\/\/www.ecinews.fr\/fr\/des-robots-humanoides-dans-les-usines-aeronautiques-de-demain\/","title":{"rendered":"Des robots humano\u00efdes dans les usines a\u00e9ronautiques de demain"},"content":{"rendered":"<p>L&rsquo;introduction d&rsquo;humano&iuml;des sur les lignes d&rsquo;assemblage a&eacute;ronautiques permettra de d&eacute;charger les op&eacute;rateurs humains des t&acirc;ches les plus laborieuses ou dangereuses. Ils pourront ainsi se concentrer sur des t&acirc;ches &agrave; plus forte valeur ajout&eacute;e. La principale difficult&eacute; pour ces robots sera de travailler dans un environnement exigu : comment r&eacute;aliser certains mouvements sans entrer en collision avec les nombreux objets alentours ? C&rsquo;est la premi&egrave;re question &agrave; laquelle devront r&eacute;pondre les chercheurs, en d&eacute;veloppant de nouveaux algorithmes de planification et contr&ocirc;le des mouvements pr&eacute;cis. <\/p>\n<p>Du fait de la taille des appareils a&eacute;ronautiques (par exemple des avions de ligne) et du tr&egrave;s grand nombre de t&acirc;ches &agrave; effectuer sur peu d&rsquo;unit&eacute;s, l&rsquo;utilisation de robots sp&eacute;cialis&eacute;s &agrave; base fixe, d&eacute;j&agrave; utilis&eacute;s dans l&rsquo;industrie automobile, est impossible dans l&rsquo;industrie a&eacute;ronautique. D&rsquo;autres difficult&eacute;s s&rsquo;ajoutent : m&ecirc;me si des robots constitu&eacute;s d&rsquo;une base mobile et d&rsquo;un bras manipulateur peuvent &ecirc;tre utilis&eacute;s par l&rsquo;industrie (comme chez Airbus Group par exemple), ceux-ci sont limit&eacute;s dans leurs d&eacute;placements. Ils n&rsquo;ont, en effet, pas la possibilit&eacute; de monter des escaliers ou des &eacute;chelles, de passer des obstacles au sol, etc. De son c&ocirc;t&eacute;, le Joint Robotics Laboratory (JRL, CNRS\/AIST) d&eacute;veloppe, &agrave; partir des mod&egrave;les de robots HRP-2 et HRP-4, des nouvelles technologies de locomotion dites multi-contacts : en s&rsquo;aidant de tout son corps pour prendre contact avec son environnement, et non seulement avec ses pieds, ce type de robot peut monter des &eacute;chelles et entrer dans des endroits exigus. La possibilit&eacute; d&rsquo;avoir des contacts multiples permet aussi d&rsquo;accro&icirc;tre la stabilit&eacute; du robot et la force qu&rsquo;il peut appliquer lorsqu&rsquo;il effectue une t&acirc;che. De plus, la forme anthropomorphique de ces robots offre une polyvalence utile pour effectuer un grand nombre de t&acirc;ches diff&eacute;rentes dans des environnements vari&eacute;s. \n<\/p>\n<hr \/>\n<p>La collaboration entre les chercheurs du JRL et Airbus Group a donc pour but de permettre aux robots humano&iuml;des d&rsquo;effectuer des t&acirc;ches de manipulation dans un environnement contraint et limit&eacute;, les lignes d&rsquo;assemblage, o&ugrave; ils devront faire un usage coordonn&eacute; de leur corps pour mener &agrave; bien leur mission. Les espaces exigus requi&egrave;rent en effet des postures particuli&egrave;res. Le calcul de telles postures s&rsquo;av&eacute;rant math&eacute;matiquement complexe, les chercheurs devront tout d&rsquo;abord d&eacute;velopper de nouveaux algorithmes, bien plus puissants que ceux existants actuellement, tout en gardant ces calculs suffisamment rapides pour que les mouvements des robots restent efficaces. Les t&acirc;ches typiques que les robots auront &agrave; effectuer seront, par exemple, de serrer un &eacute;crou, de nettoyer une zone de ses poussi&egrave;res m&eacute;talliques ou d&rsquo;ins&eacute;rer des pi&egrave;ces dans la structure de l&rsquo;appareil. Ils pourront &eacute;galement v&eacute;rifier le bon fonctionnement des syst&egrave;mes une fois la fabrication termin&eacute;e. <\/p>\n<p>Ces algorithmes seront test&eacute;s sur un ensemble de sc&eacute;narios tir&eacute;s des besoins des diff&eacute;rentes branches d&rsquo;Airbus Group (Aviation Civile, H&eacute;licopt&egrave;res, et Spatial), et dont le r&eacute;alisme ira croissant au fil des ann&eacute;es. Du c&ocirc;t&eacute; de la recherche en robotique, en plus de l&rsquo;apport des nouveaux algorithmes, cette collaboration mettra peut-&ecirc;tre en lumi&egrave;re des insuffisances des robots actuels (design, pr&eacute;cision ou puissance, par exemple). Elle pourrait &eacute;galement permettre de sp&eacute;cifier le cahier des charges de la premi&egrave;re g&eacute;n&eacute;ration de robots humano&iuml;des d&eacute;di&eacute;s &agrave; la manufacture de grandes structures, d&rsquo;ici 10 &agrave; 15 ans.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>D\u00e9velopper des technologies de robotique humano\u00efde pour effectuer des t\u00e2ches difficiles dans les usines a\u00e9ronautiques, c&rsquo;est le programme de recherche commun, d&rsquo;une dur\u00e9e de quatre ans, du Joint Robotics Laboratory (CNRS\/ National Institute of Advanced Industrial Science and Technology (AIST, Japon)) et d&rsquo;Airbus Group. Il a \u00e9t\u00e9 officiellement lanc\u00e9 le 12 f\u00e9vrier dernier \u00e0 l&rsquo;ambassade de France \u00e0 Tokyo.<\/p>\n","protected":false},"author":22,"featured_media":220281,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"footnotes":""},"categories":[],"tags":[],"domains":[47],"ppma_author":[1149],"class_list":["post-220280","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","domains-electronique-eci"],"acf":[],"yoast_head":"<title>Des robots humano\u00efdes dans les usines a\u00e9ronautiques de demain ...<\/title>\n<meta name=\"description\" content=\"D\u00e9velopper des technologies de robotique humano\u00efde pour effectuer des t\u00e2ches difficiles dans les usines a\u00e9ronautiques, c&#039;est le programme de recherche...\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/www.ecinews.fr\/fr\/wp-json\/wp\/v2\/posts\/220280\/\" \/>\n<meta property=\"og:locale\" content=\"fr_FR\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Des robots humano\u00efdes dans les usines a\u00e9ronautiques de demain\" \/>\n<meta property=\"og:description\" content=\"D\u00e9velopper des technologies de robotique humano\u00efde pour effectuer des t\u00e2ches difficiles dans les usines a\u00e9ronautiques, c&#039;est le programme de recherche commun, d&#039;une dur\u00e9e de quatre ans, du Joint Robotics Laboratory (CNRS\/ National Institute of Advanced Industrial Science and Technology (AIST, Japon)) et d&#039;Airbus Group. 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