1 element and 2 elements
Základní element ve tvaru os úhlů pravidelného čtyřstěnu (tetrahedronu). Dva základní elementy se vůči sobě mohou natáčet. To umožňuje vytvářet struktury jako uhlík, základní stavební kámen života
na Zemi.
Basic element of artificial symbiont has form of angle bisectors of tetrahedron. Two basic elements can rotate each other. It enable emerging of carbon like structures which are fundamental construction matter of live on the Earth.
1 element and 2 elements
12 and 36 elements
12 elementů tvoří spirálu. Tři spirály tvoří trubičku.
12 elements emerged to spiral. Three spirals makes tube.
36 elements
16 elements
Spirála se prodlužuje nebo zkracuje, popřípadě ohýbá, pomocí vzájemného otáčení elementů.
Spiral made by elements can stretch or bend in response to rotation of elements each other.
16 elements
artificial symbiont from alert on Vimeo.
2009/02/25
new images - organization of construction /01
2009/02/24
new images - organization of construction /02
1296 elements
Element umožňuje struktury stejné jako diamant, které mají vysokou pevnost.
Elements enable emerging of diamond like structures with high hardness (Mohs scale of mineral hardness 10).
1296 elements
144 elements
Elementy vytváří stromově dělené struktury.
Elements emerged to tree like structures.
144 elements
144 elements
new images - organization of construction /03
768 elements
Elementy tvoří povrch koule a efektivně vyplňují její objem.
Elements emerged to surface construction of a sphere or a cube with efective subconstruction in volume of form.
768 elements
768 elements
768 elements
Elementy homogenně vyplňují objem koule.
Cloud of elements emerged to homogenous construction in spherical volume.
768 elements
new images - organization of construction /04
around 4000 elements
Elementy tvoří organické buněčné a vláknité struktury.
Cellular and fibrous structures emerged.
2880 elements
5760 elements
4320 elements
2009/02/23
new images - organization of construction /05
327680 elements
1024 elementů se formuje do tvaru stejného jako je element sám. Spirály tvořící ramena umožňují elasticitu celé konstrukce.
1024 elements can self-organize to bigger form with same shape like one element. Struts made of spirals enable elasticity of whole construction.
327680 elements
327680 elements
327680 elements
327680 elements
327680 elements
2009/02/16
Similar projects
An Evolutionary Architecture
John and Julia Frazer (with Pete Silver and Guy Westbrook)
http://www.aaschool.ac.uk/publications/ea/intro.html
ANTS
http://ants.gsfc.nasa.gov/
SYMBRION
Symbiotic Evolutionary Robot Organisms
REPLICATOR
Robotic Evolutionary Self-Programming and Self-Assembling Organisms
http://www.symbrion.org/
Claytronics
http://www.cs.cmu.edu/~claytronics/
Polymorphic Robotics Laboratory
http://www.isi.edu/robots/
2007/11/12
aeonScope v Praze
Tai2 Vás zve na minivýstavu projektu aeonScope, který se po světové tour vrací zpět do Prahy..
Přijdtě si projít virtuální galerii, vyzkoušet interaktivní instalaci, prohlédnout vize budoucnosti očima studentů architektury nebo se s nimi přímo setkat v prostorách Tai2. map
výstava bude přístupná 15/11/2007-18/11/2007
ve všední dny 18.00-20.00
o víkendu 16.00-20.00
Těšíme se na Vás
2007/09/26
2007/09/12
interactive installation
concept by: Zbynek Krulich & Marura
programming: Marura (interactivity, visuals - Max/MSP Jitter)
sound programming: Cabowitz (Pure Data) http://www.cabowitz.com/
visual data: Zbynek Krulich
Similarly to natural living systems, Artificial Symbiont interacts with its surroundings. It alters and changes its form according to its own needs and the needs of the living systems in its presence. With some of them (human beings in particular), it has developed symbiotic relationship.
interactive installation of artificial symbiont on Vimeo
Interactive installation in this exhibition is an illustration of this principle.
Visitors influence the image and create the sound every time they enter the installation space.
The “behind the scene” part of the installation consists of three little programmes, so-called patches, created in Max/MSP Jitter and Pure Data.
Max/MSP – Jitter and Pure Data are graphical programming environments used mostly for programming multimedia.
The first one - motion tracking patch - detects the movements of the visitor, analyzes it and sends the data into visuals and sound patches.
The second one - visuals patch - uses animation rendered in 3D software and modifies it further, depending on the data received from the motion tracking programme.
The third programme used in the installation is the sound generating engine created by Cabowitz. It receives data from the motion tracking patch and transfers them into sound.