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This study introduces a Continuous Delivery (CD) framework for blockchain and Distributed Ledger Technology (DLT) networks. It ensures applications are production-ready by automating business application and node deployment, addressing a gap in current research.

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Area of Science:

  • Computer Science
  • Software Engineering
  • Distributed Systems

Background:

  • Continuous Delivery (CD) is crucial for production-ready applications.
  • Blockchain and Distributed Ledger Technology (DLT) networks require robust deployment practices.
  • Existing literature lacks comprehensive CD solutions for blockchain/DLT design and deployment.

Purpose of the Study:

  • To propose and implement a CD framework for business applications in DLT networks.
  • To address the lack of continuous practices in blockchain and DLT.
  • To support both the design and deployment phases of DLT applications.

Main Methods:

  • Developed two Jenkins-based Continuous Delivery pipelines.
  • Utilized the Smart Contract Design Pattern for business application development.
  • Employed Unified Modeling Language (UML) and UML Profile for Distributed Ledger Deployment for modeling.
  • Implemented model-to-code transformation for generating node deployment configurations.
  • Stored artifacts in GitHub repositories.

Main Results:

  • Successfully implemented a framework for continuous delivery of business applications to diverse DLT environments.
  • Ensured deployment packages contain the latest application version and node-specific configurations.
  • Demonstrated the framework's efficacy through tests on an energy management system.

Conclusions:

  • The proposed CD framework enhances the reliability and efficiency of deploying applications in DLT networks.
  • It provides a systematic approach to managing business applications and deployment configurations in distributed environments.
  • The solution effectively bridges the gap in continuous practices for blockchain and DLT.