A power system computing virtualization method based on a cloud platform architecture system

A power system and cloud platform technology, applied in the field of cloud computing services, can solve the problems of inability to process massive data speed in real time, high latency and heterogeneity of bandwidth-consuming devices, and difficulty in integrating cloud services, achieving good feasibility and practical value. , to achieve the effect of safety and reliability

Pending Publication Date: 2019-05-21
POWER DISPATCHING CONTROL CENT OF GUANGDONG POWER GRID CO LTD
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  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Due to the high latency and bandwidth consumption as well as the heterogeneity of devices, the rapidly scalable nature of the power information network makes it difficult for cloud services to integrate with the infrastructure of the power information network
Additionally, the centralized architecture of the cloud may not be able to handle the massive data velocity generated by sensors in real time

Method used

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  • A power system computing virtualization method based on a cloud platform architecture system

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Embodiment Construction

[0017] The present invention will be further described below in conjunction with the accompanying drawings.

[0018] Such as figure 1 As shown, under the condition of meeting the grid constraints and environmental requirements, the virtual resources are transferred to the edge of the power information network; the integrated raindrop computing architecture is used to provide virtual resources on the edge layer of the cloud platform; the integrated raindrop computing system The architecture includes cloud layer, fog layer, raindrop server, edge data storage unit, and sensor / actuator unit; the cloud layer, fog layer, and sensor / actuator unit work together; the raindrop server interacts with the fog layer and cloud layer to meet the collection requirements. received request; the edge data processing unit is an intelligent virtual resource;

[0019] The raindrop server in the integrated raindrop computing architecture includes three components, which are edge client services, con...

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Abstract

The invention discloses an electric power system computing virtualization method based on a cloud platform architecture system, which comprises the following steps: transferring virtual resources to the edge of an electric power information network under the condition of meeting power grid constraint and environmental requirements, and providing the virtual resources on the edge layer of a cloud platform by utilizing a system architecture integrating raindrop computing, wherein The system architecture comprises a cloud layer, a fog layer, a raindrop server, an edge data storage unit and a sensor / actuator unit. The cloud layer, the fog layer and the sensor / actuator unit work cooperatively; The raindrop server interacts with the fog layer and the cloud layer to meet the received request; Andthe edge data processing unit is an intelligent virtual resource. According to the invention, the intelligent virtual resources are integrated on the edge layer, the Internet of Things service and the data view can be directly provided from the edge device, and the permission-based block chain protocol is integrated, so that the security and reliability of the edge network are realized. The method constructs a distributed virtual system, has the advantages of cloud computing, fog computing and raindrop computing, and can directly provide services at the edge level.

Description

technical field [0001] The invention relates to a cloud computing service applied to a power system, in particular to a computing virtualization method for a power system based on a cloud platform architecture system. Background technique [0002] Power information network virtualization is done by the cloud, and this method relies heavily on Internet connectivity. How to move virtualized resources to the edge of the power information network without losing the functions and flexibility of the cloud, and meeting the requirements of restricted and unrestricted environments is a key issue that needs to be considered at present. The challenges and innovations in the power information network are not generated from the power information network alone, and these problems are concentrated in the Internet of Things and cloud computing. [0003] Currently, the integration between the power information network and the cloud only represents the supply of data, where data flows from s...

Claims

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Application Information

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IPC IPC(8): G06F9/50G06F11/20H04L29/08
Inventor 赵瑞锋李世明郭文鑫刘洋王海柱王彬
Owner POWER DISPATCHING CONTROL CENT OF GUANGDONG POWER GRID CO LTD
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