Numerical simulation open-type application program interface of electric power system

A technology of application programming interface and numerical simulation, which is applied in the direction of transmission system, multi-program device, electrical components, etc., can solve problems such as uneven levels, achieve good openness and flexibility, enhance comprehensive calculation and analysis functions, and The effect of flexibility and scalability

Active Publication Date: 2012-10-24
SHANDONG UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0009] Obviously, this architecture puts the computing engine completely on the server side, which has two advantages: first, it makes the computing engine independent of the user's hardware equipment, which solves the above-mentioned problems caused by the uneven level of client hardware equipment; secondly, The upgrade and maintenance of the calculation engine is independent of the user. As long as the function interface remains unchanged, when the software calculation engine needs to be improved, it is only necessary to update the analysis software on the server side, or change the internal code to regenerate the executable program EXE, or it is simpler Replace a dynamic link library (Dynamic Link Library, DLL), that is, the update is completed, freeing the user from the upgrade management of the computing engine

Method used

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  • Numerical simulation open-type application program interface of electric power system
  • Numerical simulation open-type application program interface of electric power system
  • Numerical simulation open-type application program interface of electric power system

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0044] test as Figure 9 The principle is to continuously increase the load at bus 2, and then solve the power flow. Once the voltage at bus 2 is lower than 0.9 (p.u), conduct capacitance compensation to make the voltage meet the requirements. Repeat this process until the power flow no longer converge, then the load power at the time of the last power flow convergence is the transmission limit (receiving end) of this line.

[0045] In the development environment of C++, Matlab and Python, press Figure 10 Write the code for the flow chart, where the code under the Matlab platform is as follows:

[0046]

[0047] Although the function call codes are different in different platform environments, the transmission limit (receiving end) of this line can be obtained as 1.4642 (p.u).

[0048] It can be seen that this application program interface architecture based on the C / S model can indeed enable users to develop various advanced application analysis programs by utilizing th...

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Abstract

The invention discloses a numerical simulation open-type application program interface of an electric power system, namely a network structure based on a C / S (Client / Server) mode. The interaction between a client side and a server end is realized by virtue of a message packing unit, a message transmission unit and a message analysis unit which are arranged at the client side and the server side, wherein the message packing unit is in charge of managing and packing a message required to be sent according to a unified format; the message transmission unit is in charge of transmitting the packaged message to a receiving terminal through a TCP / IP (Transmission Control Protocol / Internet Protocol); and the message analysis unit is provided with a normalized function table and used for looking up the received message, determining a function and thus processing parameters or return values in the message, wherein the structure of the function table is as follows: function name | parameter number | each parameter type | return value number | each return value type. The network structure based on the C / S mode can be used for realizing the function separation of a user and software, so that the user (the client side) can concentrate on the development the of an advanced analysis function, a software calculation engine (the server end) can be applied more efficiently and maintained and updated simpler and more conveniently, and therefore, the open-type structure can be used for greatly improving the efficiency and flexibility of developing the advanced analysis function of the electric power system.

Description

technical field [0001] The invention relates to an open application program interface for power system numerical simulation. Background technique [0002] Numerical simulation plays an irreplaceable role in power system planning, operation and security defense. A complete model, acceptable calculation accuracy and efficiency are the basic requirements for power system numerical simulation programs. With the continuous increase of power system scale and the diverse analysis needs of users, it is of great significance to provide power system simulation programs with good openness in order to enable users to quickly and flexibly analyze and solve various problems. [0003] Software openness is essentially a specification-compliant interface, which may be defined and unique to the software itself, or may be a publicly adopted standard. As far as power system analysis software is concerned, user-defined modeling (User-Defined Modeling, UDM), application program interface (Appli...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06F9/46H04L29/08
Inventor 张恒旭刘玉田吕文欣孙华东
Owner SHANDONG UNIV
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