Paper
31 May 2023 Architecture design of a distributed workflow platform based on microservice architecture
Yongfeng Zhao, Fenshou Dong, Ying Che, Xiupeng Shi
Author Affiliations +
Proceedings Volume 12704, Eighth International Symposium on Advances in Electrical, Electronics, and Computer Engineering (ISAEECE 2023); 127040L (2023) https://doi.org/10.1117/12.2680217
Event: 8th International Symposium on Advances in Electrical, Electronics and Computer Engineering (ISAEECE 2023), 2023, Hangzhou, China
Abstract
Including process modelling, deployment of BPMN process definition, task flow, process monitoring and more, workflow engines are dedicated to improving the efficiency of process development. The traditional workflow platform is a monolithic architecture, which is embedded in the application as a library to build a unified unit that couples all business concerns together, with low code reusability, unable to cope with continuous business changes, and a single architecture resulting in poor system scalability and unable to cope with high concurrent user access requests. To meet these requirements of reusability, scalability and high concurrency, this paper provides an all-encompassing, scalable distributed workflow platform based on the microservices architecture for automating enterprise business processes to improve efficiency and productivity. It is a service-oriented architecture, built as a collection of different small services rather than a complete application. By being distributed and loosely coupled, the microservices architecture allows for rapid, linear scaling.
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Yongfeng Zhao, Fenshou Dong, Ying Che, and Xiupeng Shi "Architecture design of a distributed workflow platform based on microservice architecture", Proc. SPIE 12704, Eighth International Symposium on Advances in Electrical, Electronics, and Computer Engineering (ISAEECE 2023), 127040L (31 May 2023); https://doi.org/10.1117/12.2680217
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KEYWORDS
Process modeling

Design and modelling

Industrial applications

Modeling

Visual process modeling

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