Siirry päänavigointiin
Siirry hakuun
Siirry pääsisältöön
Åbo Akademi Etusivu
English
Svenska
Suomi
Hae sisältöä asiakkaalta Åbo Akademi
Etusivu
Henkilöt
Tutkimusyksiköt
Projektit
Julkaisut
Tietoaineistot
Palkinnot
Aktiviteetit
Medianäkyvyys
Vaikutukset
Kurssit
Laitteet
Model Driven Development of Programmable Architectures
Dragos Truscan
Informaatioteknologia
Tutkimustuotos
:
Väitöskirjatyypit
›
Tohtorinväitöskirja
›
Monografia
78
Lataukset (Pure)
Yleiskatsaus
Sormenjälki
Projektit
(1)
Sormenjälki
Sukella tutkimusaiheisiin 'Model Driven Development of Programmable Architectures'. Ne muodostavat yhdessä ainutlaatuisen sormenjäljen.
Järjestys:
Painoarvo
Aakkosjärjestyksessä
Computer Science
General Purpose Processor
100%
Unified Modeling Language
100%
model-driven development
100%
Multimedia
66%
Processing Element
66%
Hardware Specification
66%
Software Specification
66%
Case Study
66%
Domain-specific language
66%
Development Framework
33%
Power Consumption
33%
Model Transformation
33%
Design-Space Exploration
33%
Dedicated Hardware
33%
Application Process
33%
Data Processing Application
33%
Architecture Level
33%
Graphical Model
33%
Programming Model
33%
Lower Performance
33%
Application Type
33%
Development Process
33%
modeling language
33%
Embedded Application
33%
Performance Requirement
33%
Embedded System
33%
Keyphrases
Model-driven Development
100%
Programmable Architecture
100%
Tool Support
33%
Levels of Abstraction
33%
Model-based Approach
33%
Unified Modeling Language
33%
General Purpose Processor
33%
Controller
22%
Specific Task
22%
Time to Market
22%
Multimedia Processing
22%
Domain-specific Languages
22%
Router
22%
Processing Element
22%
Hardware Efficiency
22%
Simulation-based Estimation
22%
Internet Protocol Version 6 (IPv6)
22%
Hardware Description
22%
Processing Applications
22%
Software Specification
22%
Tool Automation
22%
Program Code
22%
Increased Demand
11%
High Performance
11%
Development Cost
11%
Design Process
11%
High Cost
11%
Synthesis Methods
11%
Development Framework
11%
Abstract Specification
11%
Specific Performance
11%
Increasing Complexity
11%
Development Cycle
11%
Embedded Systems
11%
Exploration Process
11%
Consistent Combination
11%
Software Issues
11%
Programming Model
11%
Hardware Circuit
11%
Performance Requirements
11%
Mapping Process
11%
Conflicting Requirements
11%
Application Type
11%
Suitable Solutions
11%
Model Transformation
11%
Design Errors
11%
Dedicated Resource
11%
Language-based
11%
Increased Pressure
11%
Architectural Level
11%
Design Activity
11%
Complex Applications
11%
Application Requirements
11%
Design Space Exploration
11%
Engineering Fields
11%
Graphical Models
11%
Under Design
11%
Debugging
11%
Language Tools
11%
Low Power Consumption
11%
Low Performance
11%
Process Application
11%
Application Functionality
11%
Compromise Solution
11%
Dedicated Hardware
11%
Modeling Language
11%
Best Solution
11%
High Power Consumption
11%
Embedded Applications
11%
Silicon Area
11%
Target Architecture
11%
Protocol Processing
11%
Cost-effective Alternatives
11%