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Moondoggie1 (talk | contribs) Added multiple new headings for new information, added areas where adaptable robotics are applied as well as challenges. More info added to introduction. Tags: nowiki added Visual edit |
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'''Adaptable robotics''' are generally based in [[robot kit|robot developer kits]]. This technology is distinguished from static [[automation]] due to its capacity to adapt to changing environmental conditions and material features while retaining a degree of predictability required for [[collaboration]] (e.g. human-robot collaboration).<ref>{{Cite book |title=Robotic Fabrication in Architecture, Art and Design 2018 |last=Willmann |first=Jan |last2=Block |first2=Philippe |last3=Hutter |first3=Marco |last4=Byrne |first4=Kendra |last5=Schork|first5=Tim|publisher=Springer|year=2018|isbn=9783319922935|___location=Cham, Switzerland|pages=45}}</ref> The degree of adaptability is demonstrated in the way these can be moved around and used in different tasks.<ref>{{Cite book|title=Industrial Robotics Handbook|last=Hunt|first=V. Daniel|publisher=Industrial Press|year=1983|isbn=0831111488|___location=New York|pages=[https://archive.org/details/industrialroboti0000hunt/page/152 152]|url-access=registration|url=https://archive.org/details/industrialroboti0000hunt/page/152}}</ref>
Unlike static or factory robots, which have pre-defined way of operating, adaptable robots can function even if a component breaks, making them useful in cases like caring for the elderly, doing household tasks, and rescue work.<ref>{{Cite news|url=https://www.bbc.com/news/science-environment-32884768|title=Robots adapt to damage in seconds|last=Ghosh|first=Pallab|date=2015-05-27|work=BBC News|access-date=2018-10-04|language=en-GB}}</ref>
Adaptable Robotics systems successfully adapt to their environment using techniques such as [[modular design]], [[machine learning]], and sensor feedback. Using this, they have revolutionized various industries and have the ability to address many real-world challenges.
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