CN211427567U - Comprehensive wiring teaching training platform - Google Patents

Comprehensive wiring teaching training platform Download PDF

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Publication number
CN211427567U
CN211427567U CN202020219103.8U CN202020219103U CN211427567U CN 211427567 U CN211427567 U CN 211427567U CN 202020219103 U CN202020219103 U CN 202020219103U CN 211427567 U CN211427567 U CN 211427567U
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subsystem
inter
module
cable
optical cable
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CN202020219103.8U
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曾庆珠
陈冰如
高桂香
黄先栋
邓韦
罗勇
刘梦琪
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Nanjing Xindaya Communication Engineering Co.,Ltd.
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Nanjing College of Information Technology
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Abstract

The utility model discloses a teaching and practical training platform for comprehensive wiring, which comprises a working area subsystem, a horizontal subsystem, a vertical trunk subsystem, an equipment room subsystem, a management room subsystem, an incoming line subsystem and a building group subsystem, and can complete the practical contents of installation and debugging of the comprehensive wiring engineering related in the communication engineering and carry out theoretical and practical operation for communication engineering technicians and electronic and communication engineering personnel; the intelligent comprehensive wiring device has the characteristics of high comprehensive wiring efficiency, good safety, high integration level, good test maintenance, high visual reality of teaching and convenience in operation.

Description

Comprehensive wiring teaching training platform
Technical Field
The utility model discloses a real platform of instructing of comprehensive wiring teaching relates to wiring technical field.
Background
The existing professional training skills are limited in partial skill training and professional skill point training, systematic and modular skill training is not available, and practice and items of professional skill training of students and students are discounted, so that practical and practical items and opportunities are lacked. At present, schools have less investment in comprehensive wiring training, mainly because the technology development is fast, the product price is high, and the material consumption investment is large; the number of classes is more, the stations are few, and a proper training teaching platform is not provided for teaching and skill training.
Because of the concealment and safety of the communication integrated wiring, the building integrated wiring system is relatively complex and is embedded in the concealed part of the building in the communication network engineering. The students are difficult to visit and practice on site, and the principle understanding and the skill training effects of the students are ideal.
SUMMERY OF THE UTILITY MODEL
The utility model discloses to the defect in the above-mentioned background art, provide a real platform of instructing of comprehensive wiring teaching, can be directly at real platform of instructing and carry out comprehensive wiring, real platform modular design of instructing, fine display comprehensive wiring scene and practice function have comprehensive wiring efficient, the integrated level is high, teaching visibility is good, the test maintains good characteristics.
In order to achieve the above object, the utility model adopts the following technical scheme: a comprehensive wiring teaching training platform, which comprises an upper layer platform and a lower layer platform,
the upper-layer platform and the lower-layer platform are provided with N sets of module systems, and each module system comprises a vertical subsystem, an inter-equipment subsystem, a building group subsystem, an inter-line subsystem, an inter-management subsystem, a working area subsystem and a horizontal subsystem;
the upper-layer platform comprises a vertical subsystem and an inter-equipment subsystem connected with the vertical subsystem, the vertical subsystem is connected with a plurality of inter-management subsystems through a horizontal subsystem, and the inter-management subsystems are sequentially connected with a plurality of connected working area subsystems through the horizontal subsystem;
the lower-layer platform is provided with a building group subsystem and an inter-line subsystem, the inter-line subsystem is connected with the inter-equipment subsystem, the inter-line subsystem is further connected with the building group subsystem, and the building group subsystems of each set of module system are connected through an optical cable joint box.
Further, the workspace subsystem includes information socket and panel module, the OUN module, computer module, telephone module, TV module and wireless router module, information socket and panel module pass through the RJ45 jumper wire and are connected with the computer module, information socket and panel module pass through the RJ11 jumper wire and are connected with the telephone module, information socket and panel module pass through the coaxial cable jumper wire and are connected with the TV module, information socket and panel module pass through the optic fibre jumper wire and are connected with the OUN module, the OUN module passes through the RJ45 jumper wire and is connected with wireless router, wireless router module passes through wiFi and connects terminal equipment.
Furthermore, the horizontal subsystem comprises a concealed pipe and a wire groove, and is used for laying a line to connect the inter-management subsystem with the working area subsystem.
Furthermore, the vertical subsystem comprises an access switch, an electric distribution device of the management subsystem, a cable distribution device of the equipment subsystem and a convergence switch which are vertically arranged from top to bottom in sequence, the access switch is connected with the electric distribution device of the management subsystem through a cable or an optical cable, the electric distribution device of the management subsystem is connected with the cable distribution device of the equipment subsystem through a trunk cable, and the cable distribution device of the equipment subsystem is connected with the convergence switch through a cable or an optical cable.
Furthermore, the inter-management subsystem is a telecommunication room or a wiring room of a centralized communication cabinet, a distribution frame, a switch and a power supply cabinet.
Furthermore, the subsystem between the equipments includes a power conversion module, an optical distribution frame ODF, a voice distribution frame MDF, a digital distribution frame DDF, a switch, an optical transmitter and receiver, and a video transmission device, one side of the subsystem between the equipments is connected with the distribution frame of the subsystem between the management through a cable, and the other side of the subsystem between the equipments is connected with the building group subsystem through the subsystem between the inlet wires.
Furthermore, the building group subsystem comprises an optical cable joint box, wherein one end of the optical cable joint box is connected with an outdoor incoming optical cable and an optical cable which enters the equipment room subsystem through an underground embedded pipeline; the other end of the optical cable joint box is connected to an optical ODF distribution frame and is connected with a convergence switch through an access optical jumper; the convergence switch is connected with the optical ODF distribution frame through an optical connection and extraction jumper, and is sent to an optical cable joint box of the inter-line subsystem through an underground embedded pipeline to be welded through an optical cable.
Furthermore, the inter-incoming-line subsystem comprises an inter-incoming-line optical cable joint box, an inter-incoming-line optical ODF distribution frame and an inter-incoming-line switch, wherein the cable inlet end of the inter-incoming-line optical cable joint box is connected with an outdoor incoming optical cable and an optical cable which is connected with the inter-incoming-line ODF distribution frame and enters through an underground embedded pipeline, and is connected with one end of the inter-incoming-line switch through a jumper; and the cable outlet end of the cable-incoming optical cable joint box is connected to an optical cable of an incoming optical ODF distribution frame through an underground embedded pipeline, and is connected with the other end of the cable-incoming exchanger through an incoming optical jumper to connect the optical cable to a corresponding equipment room subsystem.
Has the advantages that: 1. the utility model has the characteristics of comprehensive wiring is efficient, the security is good, the integrated level is high, the test is maintained well, the audio-visual degree of reality of teaching is high, convenient operation.
2. The utility model discloses a real platform of instructing of modularization has realized seven partial functions such as the work area subsystem of synthesizing the wiring, horizontal subsystem, perpendicular main line subsystem, inter-equipment subsystem, management subsystem, inter-incoming wire subsystem and building crowd subsystem, and scene and the process of wiring are synthesized in the show directly perceived, provide two good working interfaces and operating space for teachers and students.
3. The utility model designs a communication services such as telephone pronunciation, internet computer communication, wired electricity CATV communication, digital transmission cover the communication integrated wiring basically, and design services is complete.
Drawings
FIG. 1 is a schematic diagram of the module connection of the present invention;
FIG. 2 is a schematic diagram of the connection of the workspace subsystem of the present invention;
FIG. 3 is a schematic diagram of the horizontal subsystem connections of the present invention;
fig. 4(a) is a schematic diagram of a vertical subsystem connection according to the present invention;
FIG. 4(b) is a schematic view of another vertical subsystem connection of the present invention;
fig. 5 is a schematic view of the inter-management subsystem connection of the present invention;
fig. 6 is a schematic diagram of the inter-device subsystem connection of the present invention;
fig. 7 is a schematic view of the connection of the subsystems between the incoming lines;
fig. 8 is a schematic diagram of the connection of the building group subsystems according to the present invention.
Detailed Description
The following describes the embodiments in further detail with reference to the accompanying drawings. The following examples are only for illustrating the technical solutions of the present invention more clearly, and the protection scope of the present invention is not limited thereby.
One embodiment as shown in fig. 1: a comprehensive wiring teaching training platform, which comprises an upper layer platform and a lower layer platform,
the upper-layer platform and the lower-layer platform are provided with N sets of module systems, and each module system comprises a vertical subsystem, an inter-equipment subsystem, a building group subsystem, an inter-line subsystem, an inter-management subsystem, a working area subsystem and a horizontal subsystem;
the upper-layer platform comprises a vertical subsystem and an inter-equipment subsystem connected with the vertical subsystem, the vertical subsystem is connected with a plurality of inter-management subsystems through a horizontal subsystem, and the inter-management subsystems are sequentially connected with a plurality of connected working area subsystems through the horizontal subsystem;
the lower-layer platform is provided with a building group subsystem and an inter-line subsystem, the inter-line subsystem is connected with the inter-equipment subsystem, the inter-line subsystem is further connected with the building group subsystem, and the building group subsystems of each set of module system are connected through an optical cable joint box.
As shown in fig. 2, the workspace subsystem includes an information socket and panel module, an OUN module, a computer module, a telephone module, a TV module and a wireless router module, the information socket and panel module is connected with the computer module through an RJ45 jumper, the information socket and panel module is connected with the telephone module through an RJ11 jumper, the information socket and panel module is connected with the TV module through a coaxial cable jumper, the information socket and panel module is connected with the OUN module through an optical fiber jumper, the OUN module is connected with the wireless router through an RJ45 jumper, and the wireless router module is connected with a terminal device through WiFi.
As shown in fig. 3, the horizontal subsystem includes a hidden pipe and a trunking for laying a line to connect the inter-management subsystem with the working area subsystem, and further includes an information socket, a horizontal cable, a grid bridge, a distribution frame, a jumper rack, etc. to connect the information socket of the working area subsystem with the inter-management subsystem.
As shown in fig. 4, the vertical subsystem includes an access switch, an electrical distribution device of the inter-management subsystem, a cable distribution device of the inter-device subsystem, and a convergence switch, which are vertically arranged from top to bottom in sequence, the access switch is connected with the electrical distribution device of the inter-management subsystem through a cable or an optical cable, the electrical distribution device of the inter-management subsystem is connected with the cable distribution device of the inter-device subsystem through a trunk cable, and the cable distribution device of the inter-device subsystem is connected with the convergence switch through a cable or an optical cable;
the vertical subsystem is composed of a main line cable from an inter-equipment subsystem distribution frame (cabinet) to a management subsystem distribution frame (cabinet), a distribution device installed in the inter-equipment subsystem, a device conveying cable, a jumper and the like, and is connected with the inter-equipment subsystem and the management subsystem to realize the connection of the main distribution frame and the middle distribution frame. Large pairs of twisted pairs (cables) or cables are used, the number and specifications being determined by the type and number of terminal equipment on each floor. The vertical subsystems use vertical routing, with trunk cables routed along vertical open trays (equivalent to building shafts).
As shown in fig. 5, the management room subsystem is a telecommunication room or a wiring room of a centralized communication cabinet, a distribution frame, a switch and a power cabinet, and three management room subsystems are arranged, so that the management rooms of the centralized communication cabinet, the distribution frame, the switch and the power cabinet can be properly added according to the number of stations of students, and a reliable comprehensive grounding bar is designed.
As shown in fig. 6, the subsystem includes power conversion module, optical distribution frame ODF, voice distribution frame MDF, digital distribution frame DDF, switch, optical transmitter and receiver and video transmission equipment between the equipment, subsystem one side of the equipment is through the distribution frame of the subsystem between cable connection management, subsystem other side of the equipment is through the subsystem connection building crowd subsystem between the inlet wire, this is real standard platform with the subsystem design of the equipment in platform one end, through subsystem and grid crane span structure connection management between the inlet wire subsystem, each layer data and information are connected and communicate with the external world through the subsystem equipment transmission exchange between the equipment, are export and entry area of real standard platform information, reserve certain cable redundant channel in the design, improve real standard platform expansibility and reliability.
As shown in fig. 7, the incoming line subsystem: the system comprises an inter-incoming line subsystem and an inter-incoming line subsystem, wherein the inter-incoming line subsystem comprises an inter-incoming line optical cable joint box, an inter-incoming line optical ODF (optical distribution frame) and an inter-incoming line switch; the outlet end of the incoming line optical cable joint box is connected to an optical cable of an incoming optical ODF distribution frame through an underground embedded pipeline, the other end of the incoming line exchanger is connected through an incoming optical jumper, the optical cable is connected to a corresponding equipment room subsystem, the incoming line room subsystem is an entrance and an exit of an external communication and information pipeline of the practical training platform, and the incoming line room subsystem meets the requirements of multiple operators and provides a multi-input access service for the practical training platform.
As shown in fig. 8, the building group subsystem includes an optical cable joint box, and one end of the optical cable joint box is connected to an outdoor incoming optical cable and an optical cable incoming from the equipment room subsystem through an underground embedded pipeline; the other end of the optical cable joint box is connected to an optical ODF distribution frame and is connected with a convergence switch through an access optical jumper; the convergence switch is connected with an optical ODF distribution frame through an optical connection and extraction jumper, and is sent to an optical cable joint box of a subsystem between the inlet lines through an underground pre-buried pipeline to be welded, and the building group subsystem is generally laid in three conditions of an overhead pole line, a pipeline and a direct burial mode. Meanwhile, a surge protector and ground protection are additionally arranged for protecting equipment and personnel.
The utility model has the characteristics of comprehensive wiring is efficient, the security is good, the integrated level is high, the test is maintained well, the audio-visual degree of reality of teaching is high, convenient operation.
The utility model discloses a real platform of instructing of modularization has realized seven partial functions such as the work area subsystem of synthesizing the wiring, horizontal subsystem, perpendicular main line subsystem, inter-equipment subsystem, management subsystem, inter-incoming wire subsystem and building crowd subsystem, and scene and the process of wiring are synthesized in the show directly perceived, provide two good working interfaces and operating space for teachers and students.
The utility model designs a communication services such as telephone pronunciation, internet computer communication, wired electricity CATV communication, digital transmission cover the communication integrated wiring basically, and design services is complete.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of modifications and variations can be made without departing from the technical principle of the present invention, and these modifications and variations should also be considered as the protection scope of the present invention.

Claims (8)

1. The utility model provides a real platform of instructing of comprehensive wiring teaching which characterized in that: comprises an upper layer platform and a lower layer platform,
the upper-layer platform and the lower-layer platform are provided with N sets of module systems, and each module system comprises a vertical subsystem, an inter-equipment subsystem, a building group subsystem, an inter-line subsystem, an inter-management subsystem, a working area subsystem and a horizontal subsystem;
the upper-layer platform comprises a vertical subsystem and an inter-equipment subsystem connected with the vertical subsystem, the vertical subsystem is connected with a plurality of inter-management subsystems through a horizontal subsystem, and the inter-management subsystems are sequentially connected with a plurality of connected working area subsystems through the horizontal subsystem;
the lower-layer platform is provided with a building group subsystem and an inter-line subsystem, the inter-line subsystem is connected with the inter-equipment subsystem, the inter-line subsystem is further connected with the building group subsystem, and the building group subsystems of each set of module system are connected through an optical cable joint box.
2. The comprehensive wiring teaching training platform of claim 1, wherein the working area subsystem comprises an information socket and panel module, an OUN module, a computer module, a telephone module, a TV module and a wireless router module, the information socket and panel module is connected with the computer module through an RJ45 jumper, the information socket and panel module is connected with the telephone module through an RJ11 jumper, the information socket and panel module is connected with the TV module through a coaxial cable jumper, the information socket and panel module is connected with the OUN module through an optical fiber jumper, the OUN module is connected with the wireless router through an RJ45 jumper, and the wireless router module is connected with terminal equipment through WiFi.
3. The comprehensive wiring teaching and training platform of claim 1, wherein the horizontal subsystem comprises a concealed conduit and a trunking for routing lines to connect the inter-management subsystem and the working area subsystem.
4. The practical training platform for comprehensive wiring teaching according to claim 1, wherein the vertical subsystem comprises an access switch, an electric wiring device of the inter-management subsystem, a cable wiring device of the inter-device subsystem and a convergence switch which are vertically arranged from top to bottom in sequence, the access switch is connected with the electric wiring device of the inter-management subsystem through a cable or an optical cable, the electric wiring device of the inter-management subsystem is connected with the cable wiring device of the inter-device subsystem through a trunk cable, and the cable wiring device of the inter-device subsystem is connected with the convergence switch through a cable or an optical cable.
5. The comprehensive wiring teaching and training platform according to claim 1, wherein the management subsystem is a telecommunications room or a wiring room of a centralized communication cabinet, a distribution frame, a switch, a power cabinet.
6. The comprehensive wiring teaching and practical training platform according to claim 1, wherein one side of the inter-equipment subsystem is connected with a distribution frame of the inter-management subsystem through a cable, and the other side of the inter-equipment subsystem is connected with the building group subsystem through an inter-access subsystem.
7. The comprehensive wiring teaching training platform according to claim 1, wherein the building group subsystem comprises a building group optical cable joint box, one end of the building group optical cable joint box is connected with an outdoor incoming optical cable and an optical cable incoming from the equipment room subsystem through an underground embedded pipeline; the other end of the building group optical cable joint box is connected to a building group optical ODF distribution frame and connected with a convergence switch through an access optical jumper; the convergence exchanger is connected with the building group optical ODF distribution frame through an optical connection jumper wire, and is sent to an optical cable joint box of the inter-line subsystem through an underground embedded pipeline to be welded through an optical cable.
8. The comprehensive wiring teaching training platform according to claim 1, wherein the inter-entrance subsystem comprises an inter-entrance optical cable joint box, an inter-entrance optical ODF distribution frame and an inter-entrance switch, wherein the cable entrance end of the inter-entrance optical cable joint box is connected with an outdoor incoming optical cable and an optical cable which is connected with the inter-entrance ODF distribution frame and enters through an underground embedded pipeline, and is connected with one end of the inter-entrance switch through a jumper; and the cable outlet end of the cable-incoming optical cable joint box is connected to an optical cable of an incoming optical ODF distribution frame through an underground embedded pipeline, and is connected with the other end of the cable-incoming exchanger through an incoming optical jumper to connect the optical cable to a corresponding equipment room subsystem.
CN202020219103.8U 2020-02-27 2020-02-27 Comprehensive wiring teaching training platform Active CN211427567U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115273592A (en) * 2022-07-29 2022-11-01 江苏企想科技有限公司 Real device of instructing of desktop wiring frock

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115273592A (en) * 2022-07-29 2022-11-01 江苏企想科技有限公司 Real device of instructing of desktop wiring frock

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Effective date of registration: 20201225

Address after: 210046 north of Xianxia Road, Xianlin street, Xianlin University Town, Qixia District, Nanjing City, Jiangsu Province

Patentee after: Nanjing Xindaya Communication Engineering Co.,Ltd.

Address before: No.99 Wenlan Road, Xianlin University Town, Qixia District, Nanjing City, Jiangsu Province

Patentee before: NANJING College OF INFORMATION TECHNOLOGY

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