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  • The main focus of the SYMBRION project is to investigate and develop novel principles of adaptation and evolution for symbiotic multi-robot organisms based on bio-inspired approaches and modern computing paradigms. Such robot organisms will consist of super-large-scale swarms of robots, which can dock with each other and symbiotically share energy and computational resources within a single artificial-life-form. The bio-inspired evolutionary paradigms combined with robot embodiment and swarm-emergent phenomena, enable the organisms to autonomously manage their own hardware and software organization. In this way, artificial robotic organisms become self-configuring, self-healing, self-optimizing and self-protecting from both hardware and software perspectives. This leads not only to extremely adaptive, evolve-able and scalable robotic systems, but also enables robot organisms to emerge new, previously unforeseen, functionality. The extension (SYMBRION-Enlarged EU)focuses in the area of large multi-robot simulation and introduces brand novel features for scalability and granularity control. The foreseen added-value consists in a massive performance improvement and elaboration of new techniques for a smooth transition between reality and simulator. This concept allows performing on-board and off-board simulated tests during the research and developmental phases as well as shifting evolutionary processes from reality to simulation and back. Besides that, advanced random-sampling methods will be investigated towards buildup of actuation primitives. This allows optimization of the multi-robot motion control as well as will boost research and experiments in the field of evolutionary techniques. These additional elements will increase the level of achievements of the SYMBRION project related to simulated and real robotic experiments. (en)
  • The main focus of the SYMBRION project is to investigate and develop novel principles of adaptation and evolution for symbiotic multi-robot organisms based on bio-inspired approaches and modern computing paradigms. Such robot organisms will consist of super-large-scale swarms of robots, which can dock with each other and symbiotically share energy and computational resources within a single artificial-life-form. The bio-inspired evolutionary paradigms combined with robot embodiment and swarm-emergent phenomena, enable the organisms to autonomously manage their own hardware and software organization. In this way, artificial robotic organisms become self-configuring, self-healing, self-optimizing and self-protecting from both hardware and software perspectives. This leads not only to extremely adaptive, evolve-able and scalable robotic systems, but also enables robot organisms to emerge new, previously unforeseen, functionality. The extension (SYMBRION-Enlarged EU)focuses in the area of large multi-robot simulation and introduces brand novel features for scalability and granularity control. The foreseen added-value consists in a massive performance improvement and elaboration of new techniques for a smooth transition between reality and simulator. This concept allows performing on-board and off-board simulated tests during the research and developmental phases as well as shifting evolutionary processes from reality to simulation and back. Besides that, advanced random-sampling methods will be investigated towards buildup of actuation primitives. This allows optimization of the multi-robot motion control as well as will boost research and experiments in the field of evolutionary techniques. These additional elements will increase the level of achievements of the SYMBRION project related to simulated and real robotic experiments.
Title
  • Symbiotic Evolutionary Robot Organisms (en)
  • Symbiotic Evolutionary Robot Organisms
skos:notation
  • 7E11017
http://linked.open...avai/cep/aktivita
http://linked.open...kovaStatniPodpora
http://linked.open...ep/celkoveNaklady
http://linked.open...datumDodatniDoRIV
http://linked.open...i/cep/druhSouteze
http://linked.open...ep/duvernostUdaju
http://linked.open.../cep/fazeProjektu
http://linked.open...ai/cep/hlavniObor
http://linked.open...hodnoceniProjektu
http://linked.open...vai/cep/kategorie
http://linked.open.../cep/klicovaSlova
  • robotics; evolutionary computation; evolvable and bio-inspired hardware; understanding life (en)
http://linked.open...ep/partnetrHlavni
http://linked.open...inujicichPrijemcu
http://linked.open...cep/pocetPrijemcu
http://linked.open...ocetSpoluPrijemcu
http://linked.open.../pocetVysledkuRIV
http://linked.open...enychVysledkuVRIV
http://linked.open.../prideleniPodpory
http://linked.open...iciPoslednihoRoku
http://linked.open...atUdajeProjZameru
http://linked.open...usZobrazovaneFaze
http://linked.open...ai/cep/typPojektu
http://linked.open...ep/ukonceniReseni
http://linked.open.../cep/vedlejsiObor
http://linked.open...ep/zahajeniReseni
http://linked.open...jektu+dodavatelem
  • Following the condition that the candidate of financial contribution was evaluated and afterwards selected by international provider in accordance with the rules of the program the Ministry of Education, Youth ans Sports does not realize the evaluation of project results. The project is evaluated only after its approval by an international provider. (en)
  • Hodnocení výsledků řešení ministerstvo neprovádí, neboť podmínkou podpory je, že uchazeč byl vybrán mezinárodním poskytovatelem v souladu s pravidly příslušného programu. Projekt je hodnocen až po jeho schválení mezinárodním poskytovatelem. (cs)
http://linked.open...tniCyklusProjektu
http://linked.open...n/vavai/cep/vyzva
http://linked.open.../cep/klicoveSlovo
  • robotics
  • evolutionary computation
  • evolvable and bio-inspired hardware
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