Architecture Design Decisions
Impact of quality attributes and the tradeoffs among competing quality attributes that provide the basis for design decisions. This discipline corresponds to the Section 2.3.4 in the SWEBOK.
8 publications
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- 2015
Scenario Building
In the Scenario Building phase, environment features, constraints and characteristics are defined. Furthermore, the robot's task is defined. This includes the specification of customer acceptance tests to be performed in the specified and potentially generalized environment.
| Key | Title | Authors | Year | Formalism | Tool |
|---|---|---|---|---|---|
| Ciccozzi2016Adopting | Adopting MDE for Specifying and Executing Civilian Missions of Mobile Multi-Robot SystemsJournal of IEEE Access website | Federico Ciccozzi, Davide Di Ruscio, Ivano Malavolta, Patrizio Pelliccione | 2016 | FLYAQ, Eclipse Virgo, Eclipse Modeling Framework | |
| gritzner2018synthesizing | Synthesizing Executable PLC Code for Robots from Scenario-Based GR(1) SpecificationsSoftware Technologies: Applications and Foundations website | Daniel Gritzner, Joel Greenyer | 2018 | ScenarioTools | |
| kunze2011towards | Towards semantic robot description languagesRobotics and Automation (ICRA), 2011 IEEE International Conference on | Lars Kunze, Tobias Roehm, Michael Beetz | 2011 | OWL |
Functional Design
In the Functional Design phase, hardware requirements and top-level functionalities are derived based on the scenario definition. Furthermore, top-level functionalities are decomposed and dependencies among them are identified. Also an initial functional design stating which functionalities interact with each other is developed.
| Key | Title | Authors | Year | Formalism | Tool |
|---|---|---|---|---|---|
| Ciccozzi2016Adopting | Adopting MDE for Specifying and Executing Civilian Missions of Mobile Multi-Robot SystemsJournal of IEEE Access website | Federico Ciccozzi, Davide Di Ruscio, Ivano Malavolta, Patrizio Pelliccione | 2016 | FLYAQ, Eclipse Virgo, Eclipse Modeling Framework | |
| dittes2011intelligent | Intelligent system architectures-comparison by translationIntelligent Robots and Systems (IROS), 2011 IEEE/RSJ International Conference on | Benjamin Dittes, Christian Goerick | 2011 | unknown | |
| dittes2011language | A language for formal design of embedded intelligence research systemsRobotics and Autonomous Systems | Benjamin Dittes, Christian Goerick | 2011 | other | unknown |
| gritzner2018synthesizing | Synthesizing Executable PLC Code for Robots from Scenario-Based GR(1) SpecificationsSoftware Technologies: Applications and Foundations website | Daniel Gritzner, Joel Greenyer | 2018 | ScenarioTools |
Platform Building
In the Platform Building phase, the robot hardware is determined. This includes the selection and potential configuration of robot's sensors and actuators meeting the requirements defined in the functional design phase.
| Key | Title | Authors | Year | Formalism | Tool |
|---|---|---|---|---|---|
| bordignon2011generalized | Generalized programming of modular robots through kinematic configurationsIntelligent Robots and Systems (IROS), 2011 IEEE/RSJ International Conference on | Mirko Bordignon, Kasper Stoy, Ulrik Pagh Schultz | 2011 | ||
| gritzner2018synthesizing | Synthesizing Executable PLC Code for Robots from Scenario-Based GR(1) SpecificationsSoftware Technologies: Applications and Foundations website | Daniel Gritzner, Joel Greenyer | 2018 | ScenarioTools | |
| ringert2015language | Language and code generator composition for model-driven engineering of robotics component & connector systemsJOURNAL OF SOFTWARE ENGINEERING IN ROBOTICS websitedownload | Jan Oliver Ringert, Roth Alexander, Rumpe Bernhard, Wortmann Andreas | 2015 | MontiArcAutomaton |
Capability Building
In the Capability Building phase, basic and composite components are constructed up to the application-level and constraints for their deployment are specified. This also includes the specification and eventually generation of additional knowledge required for component execution such as knowledge bases and training data.
| Key | Title | Authors | Year | Formalism | Tool |
|---|---|---|---|---|---|
| bordignon2011generalized | Generalized programming of modular robots through kinematic configurationsIntelligent Robots and Systems (IROS), 2011 IEEE/RSJ International Conference on | Mirko Bordignon, Kasper Stoy, Ulrik Pagh Schultz | 2011 | ||
| burbidge2009grammatical | Grammatical evolution of a robot controllerIntelligent Robots and Systems, 2009. IROS 2009. IEEE/RSJ International Conference on | Robert Burbidge, Joanne H Walker, Myra S Wilson | 2009 | (E)BNF | |
| dittes2011intelligent | Intelligent system architectures-comparison by translationIntelligent Robots and Systems (IROS), 2011 IEEE/RSJ International Conference on | Benjamin Dittes, Christian Goerick | 2011 | unknown | |
| dittes2011language | A language for formal design of embedded intelligence research systemsRobotics and Autonomous Systems | Benjamin Dittes, Christian Goerick | 2011 | other | unknown |
| gritzner2018synthesizing | Synthesizing Executable PLC Code for Robots from Scenario-Based GR(1) SpecificationsSoftware Technologies: Applications and Foundations website | Daniel Gritzner, Joel Greenyer | 2018 | ScenarioTools | |
| kunze2011towards | Towards semantic robot description languagesRobotics and Automation (ICRA), 2011 IEEE International Conference on | Lars Kunze, Tobias Roehm, Michael Beetz | 2011 | OWL | |
| ringert2015language | Language and code generator composition for model-driven engineering of robotics component & connector systemsJOURNAL OF SOFTWARE ENGINEERING IN ROBOTICS websitedownload | Jan Oliver Ringert, Roth Alexander, Rumpe Bernhard, Wortmann Andreas | 2015 | MontiArcAutomaton |
System Deployment
In the System Deployment phase, top-level component(s) are packaged into a complete application system which defines a mapping of components and composites to computational units. Furthermore, features and procedures for system launch management are developed.
| Key | Title | Authors | Year | Formalism | Tool |
|---|---|---|---|---|---|
| ringert2015language | Language and code generator composition for model-driven engineering of robotics component & connector systemsJOURNAL OF SOFTWARE ENGINEERING IN ROBOTICS websitedownload | Jan Oliver Ringert, Roth Alexander, Rumpe Bernhard, Wortmann Andreas | 2015 | MontiArcAutomaton |
Product Maintenance
In the Product Maintenance phase, the robot application is operated and maintained. This includes eventually the analysis of log files and the tuning of system parameters.
| Key | Title | Authors | Year | Formalism | Tool |
|---|---|---|---|---|---|
| Ciccozzi2016Adopting | Adopting MDE for Specifying and Executing Civilian Missions of Mobile Multi-Robot SystemsJournal of IEEE Access website | Federico Ciccozzi, Davide Di Ruscio, Ivano Malavolta, Patrizio Pelliccione | 2016 | FLYAQ, Eclipse Virgo, Eclipse Modeling Framework |