Plug-in technique-based method for realizing power system analysis software interface

A technology of a power system and an implementation method, which is applied in the field of power system analysis software interface implementation, can solve the problems of strong customization requirements, difficulty in adapting to a wide variety of power system security and stability analysis functions, and complex power system analysis software function requirements. The degree of coupling, the effect of good scalability

Inactive Publication Date: 2010-12-08
TIANJIN UNIV +1
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Problems solved by technology

In the actual application process, due to the different structures, operating characteristics, operating modes, and focus of operators of each system, the functional requirements of power system analysis software are complex, and various analysis and calculation functions, data support functions, graphic display functions, etc. Although

Method used

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  • Plug-in technique-based method for realizing power system analysis software interface
  • Plug-in technique-based method for realizing power system analysis software interface
  • Plug-in technique-based method for realizing power system analysis software interface

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[0015] The present invention proposes an implementation method of a power system analysis software interface based on plug-in technology, which supports the decoupling of graphics support functions and analysis and calculation functions in power system software, and supports data interaction, which can effectively reduce the complexity of power system analysis software. Enhance stability, scalability, openness and ease of maintenance. The method is detailed as follows:

[0016] Step 1: Set the plug-in configuration list to record all registered plug-ins.

[0017] There are many power system analysis functions, and users have high requirements for customizing software functions according to their own needs. Therefore, in order to accurately manage the function plug-ins of each implementation system, a plug-in configuration list is specially defined, and the number of registered plug-ins and the corresponding dynamic library name are recorded. An example of the list content is ...

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Abstract

The invention belongs to the technical field of application of power systems and particularly relates to a plug-in technique-based method for realizing a power system analysis software interface, which comprises: firstly, decomposing the analytic function of a power system into a graphic support module, a data support module and various on\off-line analysis functional modules by using a plug-in technique so as to realize maximum decoupling of the functional modules; and secondly, realizing the data interaction between a plugin and a support platform by using the dynamic link dynamic loading and calling technique. Compared with the prior art, the method can effectively reduce the degree of the coupling between a functional object and an object management logic effectively and makes an application more stable and highly extendable, thereby ensuring that software is a 'demand-oriented open system structure'.

Description

technical field [0001] The invention belongs to the field of power system application technology, in particular to a method for realizing a power system analysis software interface. Background technique [0002] The quality of software development is largely determined by the complexity of the software design structure. A good software architecture plays a decisive role in software stability, scalability, code reusability, adaptive adjustment ability to respond to changes in requirements, and ease of maintenance. In the actual application process, due to the different structures, operating characteristics, operating modes, and focus of operators of each system, the functional requirements of power system analysis software are complex, and various analysis and calculation functions, data support functions, graphic display functions, etc. Although integrated development can improve the efficiency of data interaction, it is difficult to adapt to the characteristics of power sy...

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Application Information

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IPC IPC(8): G06F9/44
Inventor 魏炜张志刚郭凌旭范广民曹旌黄志刚
Owner TIANJIN UNIV
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