All Videos Tagged Arduino (Grasshopper) - Grasshopper2024-04-26T11:43:13Zhttps://www.grasshopper3d.com/video/video/listTagged?tag=Arduino&rss=yes&xn_auth=noDynamic Surface : Physical Prototypetag:www.grasshopper3d.com,2014-06-17:2985220:Video:10894972014-06-17T16:36:20.619ZNick Hart-Woodshttps://www.grasshopper3d.com/profile/NickHartWoods
<a href="https://www.grasshopper3d.com/video/dynamic-surface-physical-prototype"><br />
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</a> <br></br>A prototype model consisting of a singular element of the fluid surface system. Utilising light sensors, arduino, firefly and grasshopper to control movement of the model.<br></br>
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Developed as part of the Abstract Machines MArch Unit at Leeds School Of Architecture…<br></br>
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<a href="https://www.grasshopper3d.com/video/dynamic-surface-physical-prototype"><br />
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</a><br />A prototype model consisting of a singular element of the fluid surface system. Utilising light sensors, arduino, firefly and grasshopper to control movement of the model.<br />
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Developed as part of the Abstract Machines MArch Unit at Leeds School Of Architecture<br />
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<a href="http://abstractmachine.co.uk/">http://abstractmachine.co.uk/</a> LEAP Motion + Firefly + Laser Pointertag:www.grasshopper3d.com,2013-08-13:2985220:Video:8999202013-08-13T20:04:21.947ZAndy Paynehttps://www.grasshopper3d.com/profile/AndyPayne
<a href="https://www.grasshopper3d.com/video/leap-motion-firefly-laser-pointer"><br />
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</a> <br></br>A very simple Firefly demo showing gestural hand information (from the LEAP motion sensor) driving a pan/tilt servo setup with a laser pointer mounted on the end. For more information, visit:…
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</a><br />A very simple Firefly demo showing gestural hand information (from the LEAP motion sensor) driving a pan/tilt servo setup with a laser pointer mounted on the end. For more information, visit: <a href="http://www.fireflyexperiments.com">www.fireflyexperiments.com</a> HyperBody_InteractiveBody Workshop_Presentationtag:www.grasshopper3d.com,2013-03-07:2985220:Video:8041382013-03-07T22:54:11.220ZJia-Rey CHANGhttps://www.grasshopper3d.com/profile/JiaReyCHANG
<a href="https://www.grasshopper3d.com/video/hyperbody-interactivebody-workshop-presentation"><br />
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</a> <br></br>Present by HyperBody LAB.<br></br>
Head of HyperBody: Kas Oosterhuis<br></br>
Research Manager of HyperBody: Nimish Biloria<br></br>
Education Manager of HyperBody: Henriette Bier<br></br>
Tutor(PhD Candidate): Jia-Rey Chang<br></br>
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The Interactive-Body workshop is an bio-inspired design workshop which hold the crucial concept of "Hyper-Morphology" stated below. The…
<a href="https://www.grasshopper3d.com/video/hyperbody-interactivebody-workshop-presentation"><br />
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</a><br />Present by HyperBody LAB.<br />
Head of HyperBody: Kas Oosterhuis<br />
Research Manager of HyperBody: Nimish Biloria<br />
Education Manager of HyperBody: Henriette Bier<br />
Tutor(PhD Candidate): Jia-Rey Chang<br />
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The Interactive-Body workshop is an bio-inspired design workshop which hold the crucial concept of "Hyper-Morphology" stated below. The goal of the workshop is to inspire the participants by the concept and knowledge of natural morphology within the idea of cellular based component.<br />
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[Hyper-Morphology]: Hyper-Morphology outlines a bio-inspired evolutionary design process with a primary focus on cellular differentiation, adaptation and self-organization via collective decision-making processes. This idea of Hyper-Morphology will be considered as the main guideline for developing the workshop's design projects. Participants need to know the basic generic process of cellular differentiation to see how the genetic rule sets drive the whole morphologic growing process of organisms in nature. Meanwhile, by understanding the logic of Signal Induction, which refers to cascades of signaling events, during which a cell or tissue signals to another cell or tissue to influence its developmental fate, participants will get the inspiration of how they can implement and experiment this kind of bio-inspired evolutionary design processes for adaptive spaces via collective decision making of autonomous architectural components.<br />
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Participants will be separated into 6 groups. Each group will be assigned to different architectural element as a task for developing the project, as: Ceiling, Wall, Floor, Facade, Stairs/Ramp, Opening and combine their own architectural elements with any furniture function (defined by groups) to come up with the transformation result between architectural element and furniture though geometric transformation, such as:Open/Close, Expand/Shrink/Scale, Rotation, Twist, Bend...etc<br />
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Music by: AIR, Modular Mix<br />
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More info:<br />
<a href="http://multimod.hyperbody.nl/index.php/WorkshopB:frontpage">http://multimod.hyperbody.nl/index.php/WorkshopB:frontpage</a><br />
<a href="http://pandalabccc.blogspot.nl/2013/02/hyperbodyinteractivebody-workshop-for.html">http://pandalabccc.blogspot.nl/2013/02/hyperbodyinteractivebody-workshop-for.html</a><br />
<a href="http://pandalabccc.blogspot.nl/2013/03/hyperbodyinteractivebodypresentation.html">http://pandalabccc.blogspot.nl/2013/03/hyperbodyinteractivebodypresentation.html</a> choreography in spacetag:www.grasshopper3d.com,2012-12-31:2985220:Video:7577572012-12-31T21:34:50.822Zbehnazhttps://www.grasshopper3d.com/profile/behnaz
<a href="https://www.grasshopper3d.com/video/choreography-in-space"><br />
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</a> <br></br>Alloplastic Architecture is a project by USC Post Professional MArch student, Behnaz Farahi, involving an adaptive tensegrity structure that responds to human movement. In this video a performance artist, Nicole Ives, dances with the structure that reacts to her presence without any actual physical contact. A Kinect motion sensor device tracks the movement of the dancer, and thereby…
<a href="https://www.grasshopper3d.com/video/choreography-in-space"><br />
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</a><br />Alloplastic Architecture is a project by USC Post Professional MArch student, Behnaz Farahi, involving an adaptive tensegrity structure that responds to human movement. In this video a performance artist, Nicole Ives, dances with the structure that reacts to her presence without any actual physical contact. A Kinect motion sensor device tracks the movement of the dancer, and thereby reconfigures the entire structure through the use of an Arduino control board and Shape Memory Alloy [SMA] springs. The project was supervised by Alvin Huang, Neil Leach and Michael Fox. Laser Cutters and Circuit Boardstag:www.grasshopper3d.com,2012-10-24:2985220:Video:7124542012-10-24T17:11:35.448Zlmntshttps://www.grasshopper3d.com/profile/lmnts
<a href="https://www.grasshopper3d.com/video/laser-cutters-and-circuit-boards"><br />
<img alt="Thumbnail" height="135" src="https://storage.ning.com/topology/rest/1.0/file/get/2778166682?profile=original&width=240&height=135" width="240"></img><br />
</a> <br></br>Here's our first test at laser cutting a circuit board to be an external toggle for Grasshopper.<br></br>
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More info:…
<a href="https://www.grasshopper3d.com/video/laser-cutters-and-circuit-boards"><br />
<img src="https://storage.ning.com/topology/rest/1.0/file/get/2778166682?profile=original&width=240&height=135" width="240" height="135" alt="Thumbnail" /><br />
</a><br />Here's our first test at laser cutting a circuit board to be an external toggle for Grasshopper.<br />
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More info: <a href="http://lmnts.lmnarchitects.com/fabrication/remote-controls/">http://lmnts.lmnarchitects.com/fabrication/remote-controls/</a>