National Repository of Grey Literature 6 records found  Search took 0.00 seconds. 
Framework for Development and Operation of Cloud Services
Hamran, Peter ; Rychlý, Marek (referee) ; Burget, Radek (advisor)
Zložitosť vývoja moderných aplikácií postupne narastá. V tejto práci sa snažím navrhnúť a demonštrovať aplikačný rámec skladajúci sa zo služieb navrhnutých pre cloudové prostredie, ktorý rieši problémy dôležité pre podnikanie. Vytvoril som súhrn existujúcich poskytovateľov cloudových služieb spolu s prehľadom technológií dôležitých pre implementáciu serverovej a klientskej strany aplikácií so zameraním na prevádzku v cloude. Aplikačný rámec je navrhnutý s ohľadom na princípy architektúry mikroslužieb ako distribuovaný systém služieb spolu s fungujúcou demo aplikáciou, ktorá ich využíva.
Coalition Games in a Dynamic Multiagent Environment
Hamran, Peter ; Uhlíř, Václav (referee) ; Zbořil, František (advisor)
The essence of this bachelor thesis was to implement an algorithm for suitable coalition forming in multi-agent system. Suitable coalition denotes a coalition which is not formed in super-additive environment and so it depends on its size and members. Aim of this thesis was to adjust an algorithm for coalition bounds forming between agents in a way, that it is applicable in a multi-agent competition MASSIM. Key aspects are amount of messages sent between agents for coalition to form and also a time it takes to calculate all coalitional values required for such a process. Final scenario is where two competitive groups of agents compete for resources in a multi-agent system simulation.
Coalition Games in a Dynamic Multiagent Environment
Hamran, Peter ; Uhlíř, Václav (referee) ; Zbořil, František (advisor)
The essence of this bachelor thesis was to implement an algorithm for suitable coalition forming in multi-agent system. Suitable coalition denotes a coalition which is not formed in super-additive environment and so it depends on its size and members. Aim of this thesis was to adjust an algorithm for coalition bounds forming between agents in a way, that it is applicable in a multi-agent competition MASSIM. Key aspects are amount of messages sent between agents for coalition to form and also a time it takes to calculate all coalitional values required for such a process. Final scenario is where two competitive groups of agents compete for resources in a multi-agent system simulation.
Framework for Development and Operation of Cloud Services
Hamran, Peter ; Rychlý, Marek (referee) ; Burget, Radek (advisor)
Zložitosť vývoja moderných aplikácií postupne narastá. V tejto práci sa snažím navrhnúť a demonštrovať aplikačný rámec skladajúci sa zo služieb navrhnutých pre cloudové prostredie, ktorý rieši problémy dôležité pre podnikanie. Vytvoril som súhrn existujúcich poskytovateľov cloudových služieb spolu s prehľadom technológií dôležitých pre implementáciu serverovej a klientskej strany aplikácií so zameraním na prevádzku v cloude. Aplikačný rámec je navrhnutý s ohľadom na princípy architektúry mikroslužieb ako distribuovaný systém služieb spolu s fungujúcou demo aplikáciou, ktorá ich využíva.
Coalition Games in a Dynamic Multiagent Environment
Hamran, Peter ; Uhlíř, Václav (referee) ; Zbořil, František (advisor)
The essence of this bachelor thesis was to implement an algorithm for suitable coalition forming in multi-agent system. Suitable coalition denotes a coalition which is not formed in super-additive environment and so it depends on its size and members. Aim of this thesis was to adjust an algorithm for coalition bounds forming between agents in a way, that it is applicable in a multi-agent competition MASSIM. Key aspects are amount of messages sent between agents for coalition to form and also a time it takes to calculate all coalitional values required for such a process. Final scenario is where two competitive groups of agents compete for resources in a multi-agent system simulation.
Coalition Games in a Dynamic Multiagent Environment
Hamran, Peter ; Uhlíř, Václav (referee) ; Zbořil, František (advisor)
The essence of this bachelor thesis was to implement an algorithm for suitable coalition forming in multi-agent system. Suitable coalition denotes a coalition which is not formed in super-additive environment and so it depends on its size and members. Aim of this thesis was to adjust an algorithm for coalition bounds forming between agents in a way, that it is applicable in a multi-agent competition MASSIM. Key aspects are amount of messages sent between agents for coalition to form and also a time it takes to calculate all coalitional values required for such a process. Final scenario is where two competitive groups of agents compete for resources in a multi-agent system simulation.

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