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Related Concept Videos

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Related Experiment Videos

Experimental development based on mapping rule between requirements analysis model and web framework specific design

Hirotaka Okuda1, Shinpei Ogata, Saeko Matsuura

  • 1Division of Electrical Engineering and Computer Science, Graduate School of Engineering and Science, Shibaura Institute of Technology, 307 Fukasaku, Minuma-ku, Saitama, Saitama, 337-8570 Japan.

Springerplus
|April 9, 2013
PubMed
Summary

Model Driven Development (MDD) enhances software quality. This study introduces a method using Unified Modeling Language (UML) to automatically generate web prototypes from requirements, improving traceability and validating system design.

Keywords:
Requirements analysis modelUnified modeling languageWeb frameworks

Related Experiment Videos

Area of Science:

  • Software Engineering
  • Model-Driven Development (MDD)
  • Requirements Analysis

Background:

  • High-quality software development necessitates robust methodologies.
  • Model-Driven Development (MDD) offers a promising paradigm for achieving this.
  • Effective requirements analysis is crucial for successful software outcomes.

Purpose of the Study:

  • To present a novel method for model-driven requirements analysis using Unified Modeling Language (UML).
  • To enable automatic generation of web user interface prototypes from UML models.
  • To enhance traceability from requirements models to the final software product.

Main Methods:

  • Utilized Unified Modeling Language (UML) for requirements analysis modeling.
  • Developed a method for automatic generation of interactive web UI prototypes from UML models.
  • Defined a framework-independent mapping rule to link design information to the requirements model.

Main Results:

  • Successfully generated a web UI prototype from the UML requirements analysis model.
  • Enabled direct operation of the prototype for validating input/output data and page transitions.
  • Demonstrated improved traceability from the validated requirements model to the final system.

Conclusions:

  • The proposed model-driven requirements analysis method effectively generates functional web prototypes.
  • This approach enhances the validation of system requirements and improves traceability.
  • The method was successfully applied to the development of a real-world Group Work Support System.