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Physical loop fast connection method based on template base
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A physical loop and fast connection technology, applied in the direction of circuit devices, electrical components, etc., can solve problems such as complexity, low efficiency, and physical loops that cannot be reused repeatedly, and achieve the effect of improving efficiency and reducing error rates
Active Publication Date: 2017-04-26
CEEC JIANGSU ELECTRIC POWER DESIGN INST +3
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Problems solved by technology
[0011] In summary, physical circuit modeling is the most tedious and complicated work in the entire design process. There are a large number of similar smart substations in the design process. At present, they are all manually connected to the starting point and ending point of the equipment one by one. , less efficient
And because the physical ports of various equipment manufacturers are still not uniform, the physical loop design process cannot be reused repeatedly
Method used
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Embodiment 1
[0053] In the present invention, for the busbar interval, it is necessary to construct the physical circuit template in the way of maximizing wiring, that is, the most complicated way of busbar connection, according to the configuration scheme of the typical design.
[0054] In step S1, the device data in corresponding intervals in each physical circuit template data includes intelligent electronic device data and switch devices. Further, each device data includes optical port information data of a corresponding type of general device. There is no need to specify the board, and only the optical ports are marked with Tx01 / Rx01, Tx02 / Rx02, and Tx03 / Rx03. That is, the instance object is replaced by the loop information in the optical port of the general equipment.
[0055] In step S1, the loop data corresponding to intervals in each physical loop template data includes the starting device, the optical port of the starting device, the intermediate device, the optical port of the ...
Embodiment 2
[0076] Taking a 220kV line interval as an example, the physical loop template, the establishment of the physical loop template library and the instantiation of the physical loop template library are described.
[0077] ①Establishment of physical circuit template
[0078] In the interval data corresponding to this interval, the equipment data should include:
[0079] 220kV line monitoring and control, 220kV line protection A, 220kV line protection B, 220kV line intelligent terminal A, 220kV line intelligent terminal B, 220kV line merging unit A, 220kV line merging unit B, 220kV line process layer switch A, 220kV line process layer switch B, 220kV line energy meter, 220kV busbar protection A, 220kV process layer center switch A.
[0080] Physical loop data should include (partial wiring):
[0081] 220kV Intelligent Terminal A 220kV Line Protection A
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Abstract
The present invention discloses a physical loop fast connection method based on a template base. The modeling of the physical loop template is performed according to the devices and the physical loops of each type of internals in the practical engineering to form a physical loop template base; and the physical loop template with the corresponding type of the internal is selected in the physical loop template base and the physical loop template is analyzed when the secondary loop design of the practical engineering is performed to realize the mapping of the devices and the physical loop in the physical loop template in the practical engineering and complete the physical loop design of the practical engineering. Through the building of the physical loop template and the typical design case of covering each voltage grade, the instantiation of the physical loop template is performed to rapidly complete the secondary physical loop design of the transformer substation so as to reduce the error rate generated in the artificial physical loop design process and improve the designer's efficiency in the physical loop design process.
Description
technical field [0001] The invention relates to a physical circuit design technology of a secondary system of an intelligent substation, in particular to a method for quickly connecting a physical circuit based on a template library. Background technique [0002] The secondary circuit design of smart substation is divided into logical circuit design and physical circuit design. The logical circuit is mainly the virtual signal connection relationship between intelligent electronic devices (IEDs), and the physical circuit is mainly the actual connection cables between devices, generally optical cables, pigtail cables, and fiber jumpers, which are the carriers of virtual signal transmission. When the software performs physical circuit design, the general process includes: physical equipment modeling, physical circuit modeling, panel cabinet connection modeling and optical cable distribution, as follows: [0003] Physical device modeling: [0004] (1) Create a new interval, th...
Claims
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