4.6 Article

Microservice-Based Architecture for an Energy Management System

期刊

IEEE SYSTEMS JOURNAL
卷 14, 期 4, 页码 5061-5072

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JSYST.2020.2981095

关键词

Energy management; Containers; Computer architecture; Reliability; Power system reliability; Cloud computing; Servers; Container; energy management system (EMS); microservice; reliability; resource management

资金

  1. National Natural Science Foundation of China (NSFC) [51967002, 51967001]

向作者/读者索取更多资源

This article proposes a microservice-based architecture for an energy management system (MS-EMS) to address the fragility, poor flexibility, and hardware dependence of EMSs. Compared with the service-oriented architecture (SOA), the proposed architecture can significantly improve the load performance and scalability of an EMS through fine-grained decomposition of the system and decentralized data management. Container and cluster technologies are used tomanage themicroservices. Ak-fault (k >= 2)-tolerant model is proposed to improve the reliability of the MS-EMS. The model employs containerized microservices as essential components to achieve a parallel connection of the essential components using the horizontal-scale technology of the containers. On the other hand, a MILP model-based algorithm for managing computing resources is also suggested. By minimizing the number of worker nodes of the cluster, where the MS-EMS is deployed, we can improve the utilization of the computing resources and avoid unnecessary costs. The result of the performance analysis showed that the reliability of the MS-EMS is 99.99965625%, which is two orders and one order ofmagnitude higher than those of the existing EMSs and the SOA-based EMS (S-EMS), respectively. Moreover, the cost of theMS-EMSis also lower than those of the existingEMSs and S-EMSs. The proposed architecture is implemented in a real-power system and has shown favorable operation performances, indicating a promising prospect for future applications.

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