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	<title>IROS 2012 &#8211; Robohub</title>
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		<title>Photos: Robots at IROS 2012</title>
		<link>https://robohub.org/slideshow-robots-at-iros-2012/</link>
		
		<dc:creator><![CDATA[Markus Waibel]]></dc:creator>
		<pubDate>Thu, 18 Oct 2012 08:00:02 +0000</pubDate>
				<category><![CDATA[articles]]></category>
		<category><![CDATA[humanoids]]></category>
		<category><![CDATA[IROS 2012]]></category>
		<category><![CDATA[modular]]></category>
		<guid isPermaLink="false">http://robohub.org/?p=4335</guid>

					<description><![CDATA[Some interesting robots at IROS 2012  &#8230; &#160; For more photos, check out the IROS 2012 Expo Gallery our friends at the IEEE Automaton blog just put up.]]></description>
										<content:encoded><![CDATA[<p>Some interesting robots at <a href="http://iros2012.org/" data-wpel-link="external" target="_blank" rel="follow external noopener noreferrer">IROS 2012</a>  &#8230;</p>
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<div id="attachment_4501" style="width: 1010px" class="wp-caption aligncenter"><a href="http://robohub.org/wp-content/uploads/2012/10/Robohub_Modular_Self_reconfigurable_robot-Enhanced-Robotic-Body-Extension-with-Modular-Units.jpg" data-wpel-link="internal"><img fetchpriority="high" decoding="async" aria-describedby="caption-attachment-4501" class="size-full wp-image-4501" title="Robohub_Modular_Self_reconfigurable_robot - Enhanced Robotic Body Extension with Modular Units" src="http://robohub.org/wp-content/uploads/2012/10/Robohub_Modular_Self_reconfigurable_robot-Enhanced-Robotic-Body-Extension-with-Modular-Units.jpg" alt="" width="1000" height="563" srcset="https://robohub.org/wp-content/uploads/2012/10/Robohub_Modular_Self_reconfigurable_robot-Enhanced-Robotic-Body-Extension-with-Modular-Units.jpg 1000w, https://robohub.org/wp-content/uploads/2012/10/Robohub_Modular_Self_reconfigurable_robot-Enhanced-Robotic-Body-Extension-with-Modular-Units-300x168.jpg 300w, https://robohub.org/wp-content/uploads/2012/10/Robohub_Modular_Self_reconfigurable_robot-Enhanced-Robotic-Body-Extension-with-Modular-Units-500x281.jpg 500w" sizes="(max-width: 1000px) 100vw, 1000px" /></a><p id="caption-attachment-4501" class="wp-caption-text">Researchers from ETH Zurich showed a robot capable of robotic body extension. By melting adhesives such as hot glue, the robot can additively fabricate and assemble tools, and integrate them into its own body. (L. Brodbeck, F. Iida: Enhanced Robotic Body Extension with Modular Units, IROS 2012).</p></div>
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<div id="attachment_4500" style="width: 1329px" class="wp-caption aligncenter"><a href="http://robohub.org/wp-content/uploads/2012/10/Robohub_Modular_Self_reconfigurable_robot-Enhanced-Robotic-Body-Extension-with-Modular-Units-2.png" data-wpel-link="internal"><img decoding="async" aria-describedby="caption-attachment-4500" class="size-full wp-image-4500" title="Robohub_Modular_Self_reconfigurable_robot - Enhanced Robotic Body Extension with Modular Units 2" src="http://robohub.org/wp-content/uploads/2012/10/Robohub_Modular_Self_reconfigurable_robot-Enhanced-Robotic-Body-Extension-with-Modular-Units-2.png" alt="" width="1319" height="1044" srcset="https://robohub.org/wp-content/uploads/2012/10/Robohub_Modular_Self_reconfigurable_robot-Enhanced-Robotic-Body-Extension-with-Modular-Units-2.png 1319w, https://robohub.org/wp-content/uploads/2012/10/Robohub_Modular_Self_reconfigurable_robot-Enhanced-Robotic-Body-Extension-with-Modular-Units-2-300x237.png 300w, https://robohub.org/wp-content/uploads/2012/10/Robohub_Modular_Self_reconfigurable_robot-Enhanced-Robotic-Body-Extension-with-Modular-Units-2-1024x810.png 1024w, https://robohub.org/wp-content/uploads/2012/10/Robohub_Modular_Self_reconfigurable_robot-Enhanced-Robotic-Body-Extension-with-Modular-Units-2-379x300.png 379w" sizes="(max-width: 1319px) 100vw, 1319px" /></a><p id="caption-attachment-4500" class="wp-caption-text">Such robotic body extension allows these class of reconfigurable modular robots to accomplish passive pick-and-place tasks (A); perform simple construction tasks (B); active pick-and-place tasks (C); extend gripper range (D); and combined tasks (E). (L. Brodbeck, F. Iida: Enhanced Robotic Body Extension with Modular Units, IROS 2012).</p></div>
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<div id="attachment_4338" style="width: 692px" class="wp-caption aligncenter"><a href="http://robohub.org/wp-content/uploads/2012/10/Robohub_Robots_Constructing_Environment_Amorphous_Material.png" data-wpel-link="internal"><img decoding="async" aria-describedby="caption-attachment-4338" class="size-full wp-image-4338" title="Robohub_Robots_Constructing_Environment_Amorphous_Material" src="http://robohub.org/wp-content/uploads/2012/10/Robohub_Robots_Constructing_Environment_Amorphous_Material.png" alt="" width="682" height="453" srcset="https://robohub.org/wp-content/uploads/2012/10/Robohub_Robots_Constructing_Environment_Amorphous_Material.png 682w, https://robohub.org/wp-content/uploads/2012/10/Robohub_Robots_Constructing_Environment_Amorphous_Material-300x199.png 300w, https://robohub.org/wp-content/uploads/2012/10/Robohub_Robots_Constructing_Environment_Amorphous_Material-451x300.png 451w" sizes="(max-width: 682px) 100vw, 682px" /></a><p id="caption-attachment-4338" class="wp-caption-text">Researchers from Harvard University and Worcester Polytechnic Institute have developed bio-inspired robots capable of using cheap materials, including foam and toothpicks, to build structures larger than themselves. The research was inspired by constructions in the animal kingdom, including those by weaver birds, termites, and beavers.</p></div>
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<div id="attachment_4336" style="width: 460px" class="wp-caption aligncenter"><a href="http://robohub.org/wp-content/uploads/2012/10/Robohub_Inflatable-Limb-Robot.jpg" data-wpel-link="internal"><img decoding="async" aria-describedby="caption-attachment-4336" class="size-full wp-image-4336" title="Robohub_Inflatable_Limb_Robot" src="http://robohub.org/wp-content/uploads/2012/10/Robohub_Inflatable-Limb-Robot.jpg" alt="Inflatable Limb Robot" width="450" height="290" srcset="https://robohub.org/wp-content/uploads/2012/10/Robohub_Inflatable-Limb-Robot.jpg 450w, https://robohub.org/wp-content/uploads/2012/10/Robohub_Inflatable-Limb-Robot-300x193.jpg 300w" sizes="(max-width: 450px) 100vw, 450px" /></a><p id="caption-attachment-4336" class="wp-caption-text">Researchers at the Italian Institute of Technology and Kings College London have created a robot with inflatable limbs. The robot&#39;s arms (or legs) can be controlled by altering air pressure. The inflatable limbs are inherently compliant, which increases safety, but makes them more difficult to control.</p></div>
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<div id="attachment_4337" style="width: 680px" class="wp-caption aligncenter"><a href="http://robohub.org/wp-content/uploads/2012/10/Robohub_Iuro_Interactive-Urban-Robot.jpg" data-wpel-link="internal"><img decoding="async" aria-describedby="caption-attachment-4337" class="size-full wp-image-4337" title="Robohub_Iuro_Interactive Urban Robot" src="http://robohub.org/wp-content/uploads/2012/10/Robohub_Iuro_Interactive-Urban-Robot.jpg" alt="" width="670" height="670" srcset="https://robohub.org/wp-content/uploads/2012/10/Robohub_Iuro_Interactive-Urban-Robot.jpg 670w, https://robohub.org/wp-content/uploads/2012/10/Robohub_Iuro_Interactive-Urban-Robot-290x290.jpg 290w, https://robohub.org/wp-content/uploads/2012/10/Robohub_Iuro_Interactive-Urban-Robot-300x300.jpg 300w, https://robohub.org/wp-content/uploads/2012/10/Robohub_Iuro_Interactive-Urban-Robot-100x100.jpg 100w, https://robohub.org/wp-content/uploads/2012/10/Robohub_Iuro_Interactive-Urban-Robot-120x120.jpg 120w" sizes="(max-width: 670px) 100vw, 670px" /></a><p id="caption-attachment-4337" class="wp-caption-text">Researchers at the University of Salzburg, ETH Zurich, TUM, and its spin-off Accrea Engineering are collaborating on an EU funded project on robot navigation through human-robot interaction. They have developed and will use IURO (Interactive Urban RObot), a new humanoid service robot with a highly expressive face, to &quot;develop and implement methods and technologies enabling robots to navigate and interact in densely populated, unknown human-centred environments and retrieve information from human partners in order to achieve a given navigation or interaction goal&quot;.</p></div>
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<div id="attachment_4339" style="width: 540px" class="wp-caption aligncenter"><a href="http://robohub.org/wp-content/uploads/2012/10/Robohub_samsung-roboray-humanoid-robot.jpg" data-wpel-link="internal"><img decoding="async" aria-describedby="caption-attachment-4339" class="size-full wp-image-4339" title="Robohub_samsung-roboray-humanoid-robot" src="http://robohub.org/wp-content/uploads/2012/10/Robohub_samsung-roboray-humanoid-robot.jpg" alt="" width="530" height="297" srcset="https://robohub.org/wp-content/uploads/2012/10/Robohub_samsung-roboray-humanoid-robot.jpg 530w, https://robohub.org/wp-content/uploads/2012/10/Robohub_samsung-roboray-humanoid-robot-300x168.jpg 300w, https://robohub.org/wp-content/uploads/2012/10/Robohub_samsung-roboray-humanoid-robot-500x280.jpg 500w" sizes="(max-width: 530px) 100vw, 530px" /></a><p id="caption-attachment-4339" class="wp-caption-text">Researchers at Samsung have created a new humanoid. Roboray builds on developments with an earlier humanoid - Mahru 3 developed in 2007. With a height of 150cm, weight of 62kg and 32 joints (excluding fingers) it is a full humanoid - albeit still without capabilities for human-robot interaction.</p></div>
<p>&nbsp;</p>
<p>For more photos, check out the <a href="http://spectrum.ieee.org/automaton/robotics/industrial-robots/iros-2012-expo-gallery" data-wpel-link="external" target="_blank" rel="follow external noopener noreferrer">IROS 2012 Expo Gallery</a> our friends at the IEEE Automaton blog just put up.</p>
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