CN109726446B - Automatic mapping system of self-adaptive distribution network single line diagram - Google Patents

Automatic mapping system of self-adaptive distribution network single line diagram Download PDF

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CN109726446B
CN109726446B CN201811496864.1A CN201811496864A CN109726446B CN 109726446 B CN109726446 B CN 109726446B CN 201811496864 A CN201811496864 A CN 201811496864A CN 109726446 B CN109726446 B CN 109726446B
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automatic
mapping
distribution network
network
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CN109726446A (en
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梁寿愚
方文崇
何超林
胡荣
朱文
张磊
赵化时
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China Southern Power Grid Co Ltd
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China Southern Power Grid Co Ltd
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Abstract

The invention relates to a self-adaptive selection distribution network single-line diagram automatic mapping system, which comprises a user interaction interface module (1), an automatic mapping core module (2), a rural power network mapping module (3), an urban distribution network mapping module (4), an automatic printing module (5), an energy management module (6) and a power distribution management module (7), wherein the automatic mapping core module (2) is connected with the user interaction interface module (1), the automatic mapping core module (2) is respectively connected with the power distribution management module (7), the energy management module (6), the automatic printing module (5), the urban distribution network mapping module (4) and the rural power network mapping module (3), and the user interaction interface module (1) is also connected with the automatic printing module (5). According to the invention, through carrying out self-adaptive analysis and evaluation on the IEC61970 standard model and simultaneously receiving the customization of the primitives and parameters by a user, the distribution network single line diagram meeting the user requirements is rapidly and automatically generated, and the graphic automatic printout is realized in the standard SVG form, so that the pressure of the maintenance work of the distribution network single line diagram can be greatly reduced.

Description

Automatic mapping system of self-adaptive distribution network single line diagram
Technical Field
The invention belongs to the technical field of power distribution network engineering, and particularly relates to an automatic mapping system of a self-adaptive distribution network single line diagram, belonging to the innovative technology of the automatic mapping system of the self-adaptive distribution network single line diagram.
Background
The single line diagram of the power distribution network is a basic 'fight map' for power distribution network dispatching or work by engineering staff in power distribution network dispatching and production, overhaul and maintenance. With the frequent and deep reformation of urban and rural power grids, the traditional manual drawing mode cannot respond to new throwing dissimilarity quickly and well. The method for automatically generating the distribution network single line diagram is developed rapidly, but the existing method can not meet the requirements well due to the large quantity of distribution network equipment, frequent transformation and large difference of wiring modes of the urban distribution network and the rural power network.
At present, in the generation process of a single line diagram of a power distribution network, the following problems exist:
1) For a region, the power distribution network equipment is at least one order of magnitude higher than the main network equipment, the graphic quantity is large, and the manual drawing of a logic view of the power distribution network is very difficult;
2) The power distribution network is frequently transformed, the workload of modifying the logic wiring diagram is large, if the modification and maintenance time is long, the actual power grid running state is inconsistent with the pattern, and hidden danger is buried for the safe running of the power distribution network;
3) The core compositions of the existing urban distribution network and rural distribution network are different. The rural power distribution network mainly uses overhead lines, and in the same feeder line, overlength overhead lines which are distributed for tens of kilometers in a prolonged mode can exist, and the situation that power supply levels are tens of stages can also exist. The urban distribution network takes a ring main unit and a switching station as cores, the number of power supply stages is not large, but the number of users supported by the same power supply point is large, and the urban distribution network has the characteristics different from rural distribution networks. The effect is not satisfactory using the same layout wiring method.
Disclosure of Invention
The invention aims to solve the technical problems and provide an automatic mapping system for a self-adaptive distribution network single line diagram. The invention can greatly lighten the pressure of the maintenance work of the distribution network single line diagram and greatly lighten the maintenance cost of the distribution network single line diagram.
The invention adopts the following specific technical scheme: the invention discloses a self-adaptive distribution network single-line diagram automatic mapping system, which comprises a user interaction interface module, an automatic mapping core module, a rural power grid mapping module, an urban distribution network mapping module, an automatic printing module, an energy management module and a power distribution management module, wherein the automatic mapping core module is connected with the user interaction interface module, the automatic mapping core module is respectively connected with the power distribution management module, the energy management module, the automatic printing module, the urban distribution network mapping module and the rural power grid mapping module, and the user interaction interface module is also connected with the automatic printing module.
According to the invention, through carrying out self-adaptive analysis and evaluation on the IEC61970 standard model, and simultaneously receiving the customization of the primitives and parameters by a user, the distribution network single line diagram meeting the user requirements is rapidly and automatically generated, and the graphic automatic printout is realized in a standard SVG form, so that the pressure of maintenance work of the distribution network single line diagram can be greatly reduced, and the maintenance cost of the distribution network single line diagram is greatly reduced.
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FIG. 1 is a schematic block diagram of an automatic diagrammatical module structure of an adaptive selection power distribution single line diagram of the invention.
Detailed Description
The invention will be further described with reference to the accompanying drawings and examples of implementation.
Referring to fig. 1, the invention discloses an automatic mapping system of a self-adaptive distribution network single line diagram, which comprises a user interaction interface module 1, an automatic mapping core module 2, a rural power network mapping module 3, an urban distribution network mapping module 4, an automatic printing module 5, an energy management module 6 and a power distribution management module 7, wherein the automatic mapping core module 2 is connected with the user interaction interface module 1, the automatic mapping core module 2 is respectively connected with the power distribution management module 7, the energy management module 6, the automatic printing module 5, the urban distribution network mapping module 4 and the rural power network mapping module 3, and the user interaction interface module 1 is also connected with the automatic printing module 5. The energy management module 6 is the EMS system in fig. 1, and the distribution management module 7 is the DMS system in fig. 1.
In this embodiment, the automatic mapping core module 2 is connected with the user interaction interface module 1 through a human-computer interface, and the automatic mapping core module 2 interacts with the power distribution management module 7 and the energy management module 6 through an IEC61970 model; the automatic mapping core module 2 and the automatic printing module 5 interact through SVG standard graphics; the automatic mapping core module 2 interacts with the rural power grid mapping module 3 and the urban distribution network mapping module 4 through the ZMAP internal data structure.
In this embodiment, the user interaction interface module 1 includes a layout and wiring parameter setting unit, a user-specified input distribution network type interface, a user feedback evaluation unit, and a primitive configuration unit; the automatic mapping core module 2 comprises an automatic mapping communication unit, a distribution network type evaluation unit and a distribution network single line diagram database; the automatic printing module 5 comprises a printing input unit, a graphic element configuration input unit and a drawing automatic printing unit; the automatic mapping communication unit is connected with the user interaction interface module 1, the rural power grid mapping module 3, the urban power distribution network mapping module 4, the automatic printing module 5, the energy management module 6 and the power distribution management module 7; the print input unit is connected with an automatic imaging communication unit in the automatic imaging core module, and the element configuration input unit is connected with an element configuration unit of the user interaction interface module 1. The layout and wiring parameter setting unit and the user feedback evaluation unit interact with the automatic mapping core module 2 respectively, the user designates an input distribution network type interface to interact with a distribution network type evaluation module in the automatic mapping core module 2, and the primitive configuration unit interacts with a primitive configuration input unit in the automatic printing module 5.
The layout wiring parameter setting unit is used for configuring parameters of layout wiring by a user; the user feedback evaluation unit is used for evaluating the final result by a user and is used for storing and analyzing the final result by the automatic mapping module, and the user feedback evaluation unit is respectively connected with the communication module in the automatic mapping core module; the user-specified input distribution network type interface provides an interface for user intervention, is connected with a distribution network type evaluation module in the automatic imaging core module, and can directly specify the distribution network type by a user; the graphic element configuration unit is connected with the graphic element configuration input unit in the automatic printing module and is used for customizing the proper graphic element by a user to print and output.
The automatic imaging communication module is respectively connected with the layout wiring parameter setting unit of the user interaction interface module, the user feedback evaluation unit, the rural power network communication module in the rural power network imaging module, the urban power network communication module in the urban power distribution network imaging module, the printing input unit in the automatic printing module, the power distribution management module, namely the DMS module, and the energy management module, namely the EMS module. The EMS module provides an in-station model of the transformer substation meeting the IEC61970 standard, the DMS module provides an external distribution network model of the transformer substation meeting the IEC61970 standard, a user sets the layout and wiring parameters specified by the unit through the layout and wiring parameters, and the distribution network type evaluation unit evaluates the distribution network type through analyzing the type, the number and the connection mode of the power grid equipment. According to the distribution network type, if the distribution network is a rural distribution network, the model, parameters and the like are sent to a rural network mapping module in a ZMAP internal data structure form; in the case of a city distribution network, the model, parameters and the like are sent to a city network mapping module in the form of a ZMAP internal data structure. After the single line diagram is generated, the automatic mapping communication unit receives the single line diagram sent by the rural power grid communication unit or the urban power grid communication unit, and the graph model is stored in the single line diagram database.
The printing input unit is connected with the automatic mapping communication unit in the automatic mapping core module, receives the single-line diagram SVG standard graph sent by the automatic mapping communication unit, interacts with the graphic element configuration unit of the user interaction interface module, prints out a final distribution network feeder single-line diagram at the drawing automatic printing unit, greatly reduces the pressure of distribution network single-line diagram maintenance work, and greatly reduces the maintenance cost of the distribution network single-line diagram.
In this embodiment, the rural power grid mapping module includes a rural power grid communication unit, an automatic rural power grid layout unit, and an automatic rural power grid wiring unit, where the rural power grid communication unit is connected to the automatic mapping communication unit in the automatic mapping core module 2. The agricultural network communication unit receives model parameters distributed by the automatic mapping communication module in the automatic mapping core module, invokes the agricultural network automatic wiring unit first, and then invokes the automatic layout unit to generate an agricultural network single line diagram.
In this embodiment, the urban distribution network mapping module includes an urban network communication unit, an urban network automatic layout unit, and an urban network automatic wiring unit, where the urban network communication unit is connected to the automatic mapping communication unit in the automatic mapping core module 2. The method comprises the steps that a metropolitan area network communication unit receives model parameters distributed by an automatic mapping communication module in an automatic mapping core module, and the metropolitan area network automatic layout unit is called first, and then the metropolitan area network automatic wiring unit is called to generate a metropolitan area network single line diagram.
According to the invention, for the evaluation and judgment of how the single feeder line passes, different automatic mapping systems suitable for the characteristics of the single feeder line are adopted to rapidly respond to the single feeder line model of the power distribution network which is frequently changed, so that a distribution network single line diagram which accords with the habit of a user is generated, and a drawing is automatically printed.
The above description is merely illustrative of the preferred embodiments of the present invention and is not intended to limit the present invention in any way, and therefore, any modifications or variations of the present invention that fall within the spirit of the invention are intended to be included in the scope of the present invention.

Claims (5)

1. The self-adaptive selection distribution network single line diagram automatic mapping system is characterized by comprising a user interaction interface module (1), an automatic mapping core module (2), an agricultural network mapping module (3), an urban distribution network mapping module (4), an automatic printing module (5), an energy management module (6) and a power distribution management module (7), wherein the automatic mapping core module (2) is connected with the user interaction interface module (1), the automatic mapping core module (2) is respectively connected with the power distribution management module (7), the energy management module (6), the automatic printing module (5), the urban distribution network mapping module (4) and the agricultural network mapping module (3), and the user interaction interface module (1) is also connected with the automatic printing module (5); the automatic mapping communication module is respectively connected with a layout wiring parameter setting unit of the user interaction interface module, a user feedback evaluation unit, an agricultural network communication module in the agricultural network mapping module, a city network communication module in the city network mapping module, a printing input unit in the automatic printing module, a distribution management module, namely a DMS module, an energy management module, namely an EMS module, is connected, a substation station model meeting IEC61970 standard is provided by the EMS module, a substation external distribution network model meeting IEC61970 standard is provided by the DMS module, a user evaluates the distribution network type by analyzing the type, the number and the connection mode of the power network equipment through the layout wiring parameter setting unit, and if the distribution network is a rural area, the model and the parameters are sent to the agricultural network mapping module in a ZMAP internal data structure mode; if the model and the parameters are urban distribution network, the model and the parameters are sent to a urban network mapping module in the form of a ZMAP internal data structure, after the single line diagram is generated, the single line diagram sent by the rural network communication unit or the urban network communication unit is received through an automatic mapping communication unit, and the map model is stored in a single line diagram database.
2. The self-adaptive selection distribution network single-line diagram automatic mapping system according to claim 1 is characterized in that the automatic mapping core module (2) is in contact with the user interaction interface module (1) through a human-computer interface, and the automatic mapping core module (2) interacts with the power distribution management module (7) and the energy management module (6) through an IEC61970 model; the automatic mapping core module (2) and the automatic printing module (5) interact through SVG standard graphics; the automatic mapping core module (2) interacts with the rural power grid mapping module (3) and the urban distribution network mapping module (4) through the ZMAP internal data structure.
3. The system for automatically mapping the self-adaptive selection distribution network single line diagram according to claim 1, wherein the user interaction interface module (1) comprises a layout wiring parameter setting unit, a user-specified input distribution network type interface, a user feedback evaluation unit and a graphic element configuration unit; the automatic mapping core module (2) comprises an automatic mapping communication unit, a distribution network type evaluation unit and a distribution network single line diagram database; the automatic printing module (5) comprises a printing input unit, a graphic element configuration input unit and a drawing automatic printing unit; the automatic mapping communication unit is connected with the user interaction interface module (1), the rural power grid mapping module (3), the urban power distribution network mapping module (4), the automatic printing module (5), the energy management module (6) and the power distribution management module (7); the printing input unit is connected with the automatic mapping communication unit in the automatic mapping core module, the graphic element configuration input unit is connected with the graphic element configuration unit of the user interaction interface module (1), the layout wiring parameter setting unit and the user feedback evaluation unit are respectively interacted with the automatic mapping core module (2), the user designates the input distribution network type interface to be interacted with the distribution network type evaluation module in the automatic mapping core module (2), and the graphic element configuration input unit is interacted with the graphic element configuration input unit in the automatic printing module (5).
4. The system for automatically mapping the self-adaptive selection distribution network single line diagram according to claim 3, wherein the agriculture network mapping module comprises an agriculture network communication unit, an agriculture network automatic layout unit and an agriculture network automatic wiring unit, and the agriculture network communication unit is connected with the automatic mapping communication unit in the automatic mapping core module (2).
5. The system for automatically mapping the single line diagram of the self-adaptive selection distribution network according to claim 3, wherein the city distribution network mapping module comprises a city network communication unit, a city network automatic layout unit and a city network automatic wiring unit, and the city network communication unit is connected with the automatic mapping communication unit in the automatic mapping core module (2).
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