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Decoupling method based on power dispatching management cloud platform

A power dispatching and cloud platform technology, applied in the field of decoupling based on the power dispatching management cloud platform, can solve the problems of high maintenance cost, high degree of coupling, poor independence, etc., to improve efficiency and system operation benefits, improve dynamic The effect of scalability

Pending Publication Date: 2019-07-30
DEZHOU POWER SUPPLY COMPANY OF STATE GRID SHANDONG ELECTRIC POWER
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  • Abstract
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AI Technical Summary

Problems solved by technology

[0003] The present invention proposes a new type of decoupling method based on the power dispatch management cloud platform for the problems of single application deployment, high coupling degree, poor independence and high maintenance cost in the traditional dispatch management platform

Method used

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  • Decoupling method based on power dispatching management cloud platform
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  • Decoupling method based on power dispatching management cloud platform

Examples

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Embodiment 1

[0024] Example 1, such as Figure 1-Figure 4 As shown, this embodiment provides a decoupling design based on the electric power dispatch management cloud platform of the present invention, which relates to the technical field of electric power dispatch management cloud platform. The decoupling design of the system is divided into three layers, which are IaaS (infrastructure layer), PaaS (platform service layer) and SaaS layer (application service layer). The IaaS layer design is consistent with the control cloud platform IaaS layer design. Decouple the public business services of the PaaS layer from business applications to form independently deployed business services. The SaaS layer adopts a business-driven model, splitting the current system into multiple applications and deploying them on different cloud servers, so as to achieve the purpose of independent upgrade and maintenance. In terms of structure, resources at the IaaS layer are shared with the scheduling cloud plat...

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Abstract

The invention discloses a decoupling method based on a power dispatching management cloud platform. The decoupling design of the power dispatching management cloud platform comprises an infrastructurelayer, a platform service layer and an application service layer. According to the invention, the OMS cloud platform is decoupled; the system is divided into a plurality of function modules which arerespectively deployed in different cloud servers, and each function module is divided and independently deployed in the decoupled system, so that independent operation of the core module and the coreprocess is realized, and operations such as stopping, restarting, deleting, expanding and changing setting can be independently carried out on a certain function module. These operations are directedonly to separate functional modules or devices, rather than the entire system. And the service continuity and dynamic expansibility of the system are improved. The problems that the system is deployed in a centralized mode, the architecture is huge, the construction functions are various, the functions are mutually correlated and restricted, and great difficulty is brought to maintenance and upgrading of the system are well solved.

Description

technical field [0001] The invention belongs to the technical field of electric power dispatch management cloud platform, and relates to a decoupling method based on electric power dispatch management cloud platform. Background technique [0002] The existing electric power dispatch management platform (OMS) is an important technical platform to realize the standardization, process and integrated management of power grid dispatching, and is divided into four levels of deployment: national dispatch, network dispatch, provincial dispatch, and partial local dispatch. However, at present, the OMS platform adopts the traditional monolithic application deployment mode, and each functional module has strong coupling and poor independence. Overall update; when a certain functional module changes, other functional modules will also stop working, which greatly reduces the modularity and reusability of the system, increases the maintenance cost of the system, and cannot adapt to fast o...

Claims

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Application Information

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IPC IPC(8): G06F8/60
CPCG06F8/60
Inventor 穆志军袁小蕾李宁宁刘仰韶李龙潭王鸿雁王志强
Owner DEZHOU POWER SUPPLY COMPANY OF STATE GRID SHANDONG ELECTRIC POWER
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