Design and Application of an All-clean Energy Security Management and Control System Based on Cloud-edge Collaboration
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Abstract
With the global awareness of sustainable development and environmental protection intensifying, the application of fully clean energy systems has become increasingly widespread. However, during their actual deployment and operation, these systems face multiple challenges, such as high access costs, difficulties in data sharing, and a lack of system security assurance. As an emerging technological architecture, the cloud-edge collaborative management and control system can fully leverage the advantages of cloud computing and edge computing to achieve intelligent and refined management and control of clean energy systems. To effectively address these challenges, this study proposes an innovative design scheme for an all-clean energy cloud-edge collaborative management and control system. This system integrates cloud-edge collaborative data transmission mechanisms, data security and trusted exchange mechanisms, multi-energy integrated data sharing services, and a unified governance system. Additionally, a new cloud-edge collaborative security management and control mechanism is proposed to address system security issues. Through systematic simulation analysis, it is evident that the all-clean energy cloud-edge collaborative data management system enables more efficient management of data flow, interaction, and processing. Currently, this system has been practically applied in the development platform of Guojia Energy Group Qinghai Electric Power Co., Ltd., demonstrating good performance in various aspects.
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