CN214426696U - Device for monitoring electric power communication optical cable line to prevent external damage - Google Patents
Device for monitoring electric power communication optical cable line to prevent external damage Download PDFInfo
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- CN214426696U CN214426696U CN202120484441.9U CN202120484441U CN214426696U CN 214426696 U CN214426696 U CN 214426696U CN 202120484441 U CN202120484441 U CN 202120484441U CN 214426696 U CN214426696 U CN 214426696U
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- optical cable
- measurement module
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Abstract
The utility model relates to a device for monitoring that is used for outer broken of electric power communication optical cable line to prevent, including control backstage and signal acquisition subassembly, the signal acquisition subassembly includes support, slope sensor and horizontal base, and support and slope sensor all set up on horizontal base, still are equipped with wireless measurement module on the horizontal base, are equipped with gateway and data transmission device on the support; the utility model has the advantages that: through the real-time slope signal of the horizontal base of gathering the slope sensor output of wireless measurement module, can real-timely monitor the pole tower slope condition, the gateway is received and is saved the data of gathering, data transmission device is with data transmission to control backstage, operating personnel realizes reading and the analysis to data through monitoring the backstage, thereby can diagnose the slope condition of pole tower, discover hidden danger early, in time get rid of hidden danger, in time get rid of the trouble, in order to improve the reliability of communication line operation, remind operation maintainer to consolidate the ground, prevent the tower collapse occurence of failure.
Description
Technical Field
The utility model relates to a device that is used for outer broken monitoring is prevented to electric power communication optical cable circuit.
Background
Under the current promotion of the continuous development of the electric network automation construction, the application range of the optical fiber communication technology in the electric power industry gradually becomes wider and wider, the optical fiber communication technology is utilized to carry out optical cable line connection among all stations of a power grid system, thereby realizing the real-time communication of all stations, the normal operation of the electric network automation is ensured, the existing optical cables are all fixed through the installation of the communication iron tower, the communication iron tower is easy to incline, the inclination of the existing communication iron tower is observed by the naked eyes of line patrol personnel, and the small change is difficult to observe by the naked eyes of the line patrol personnel, therefore, the iron tower cannot be overhauled and maintained in time, and the iron tower collapse accident is caused.
SUMMERY OF THE UTILITY MODEL
The utility model aims to reach the purpose just provide a device that is used for outer broken monitoring of electric power communication optical cable line to prevent, can not only simplify the mounting process of whole device, can ensure the monitoring to electric power communication optical cable line moreover.
In order to solve the technical problem, the utility model discloses a realize through following technical scheme: a device for monitoring external damage prevention of an electric power communication optical cable line comprises a monitoring background and a signal acquisition assembly, wherein the signal acquisition assembly comprises a support, an inclination sensor and a horizontal base, the support and the inclination sensor are arranged on the horizontal base, a wireless measurement module connected with the inclination sensor is further arranged on the horizontal base, a gateway connected with the wireless measurement module and a data transmission device connected with the gateway are arranged on the support, a power supply device is further arranged on the support, the inclination sensor, the gateway and the wireless measurement module are all connected with the power supply device, and the support and the inclination sensor are mounted on an iron tower of the electric power communication optical cable line along with the horizontal base; the monitoring background comprises a mobile phone and/or a PC (personal computer), the PC is connected with the data transmission device, and the mobile phone is connected with the data transmission device through a wireless network.
Preferably, the horizontal base includes first horizontal clamp, the horizontal clamp of second and sets up the montant between first horizontal clamp and the horizontal clamp of second, the equal fixed connection of first horizontal clamp and the horizontal clamp of second is on the iron tower, be equipped with the supporting shoe of fixed bolster on the horizontal clamp of second, the tilt sensor sets up on first horizontal clamp and/or the horizontal clamp of second, be equipped with fixed wireless measurement module's fixed plate on the montant.
Preferably, the inclination sensor is connected with the wireless measurement module through a wire, the wireless measurement module is provided with a box body, the box body is provided with a protective shell, the wireless measurement module is arranged in the box body, the box body is provided with a through hole, the through hole is provided with a waterproof joint, the wire is arranged on the waterproof joint, and the box body is arranged on the fixing plate through a screw.
Preferably, the support includes the casing and sets up the shrouding on the casing, data transmission device and gateway all set up in the casing, and seal in the casing through the shrouding, power supply unit sets up on the shrouding.
Preferably, the shell is internally provided with a partition board, the partition board divides the shell into a first cavity and a second cavity, the gateway is arranged in the first cavity, the data transmission device is arranged in the second cavity, and the partition board is provided with a threading hole or/and a threading groove.
Preferably, the power supply device comprises a photovoltaic module and a storage battery connected with the photovoltaic module, the photovoltaic module is arranged on the outer side wall of the sealing plate, and the storage battery is arranged in the first cavity.
Preferably, the shell is provided with a flanging connected with the iron tower, and the flanging and the shell are of an integrated structure.
Preferably, be equipped with the bandage on the turn-ups, be equipped with the bar hole on the turn-ups, the one end fixed connection of bandage is on the montant, fixed connection is on the bandage after the other end of bandage passes the bar hole, just be equipped with the stop collar that prevents the bandage separation on the bandage.
Preferably, the shell is provided with a shock pad which is abutted to the iron tower.
Preferably, the PC is in communication connection with the data transmission device through an NB-IOT network.
To sum up, the utility model has the advantages that: the inclination signal of the horizontal base output by the inclination sensor is collected in real time through the wireless measurement module, the inclination of the horizontal base is the inclination of the iron tower as the horizontal base is arranged on the iron tower of the electric power communication optical cable line, so that the inclination condition of the iron tower can be monitored in real time, the gateway receives and stores the collected data, the data transmission device transmits the data to the monitoring background, and an operator can read and analyze the data through the monitoring background, thereby diagnosing the inclination condition of the iron tower, finding hidden dangers as soon as possible, eliminating the hidden dangers in time and eliminating faults in time, improving the operation reliability of the communication line, pre-alarming in various ways in time for the inclination condition of the overproof iron tower according to the development trend of the inclination monitoring data, guiding the overhaul and the maintenance, reminding the operation maintenance personnel to reinforce the foundation and preventing the occurrence of tower falling accidents, and can monitor the iron tower slope condition under the external force action of ground construction or iron tower abnormal movement effectively, secondly, set up the tilt sensor and support on the horizontal base, can simplify the installation technology of the whole apparatus, simplify the installation space on the iron tower as a whole, can meet different installation requirements, then the horizontal base can ensure the levelness of the whole apparatus, ensure the measuring accuracy of the tilt sensor, improve the detection quality of the tilt sensor, also reduce the damage of the tilt sensor, finally, the arrangement of the power supply unit, ensure the continuous work of the wireless measuring module and the gateway, ensure the continuity of signal acquisition, ensure the real-time transmission of the data to the data receiving device, set the background monitor into mobile phone and/or PC, the operator can analyze the data and realize local storage through PC, also can check the slope amount of the electric power communication optical cable line through the mobile phone in real time, the change situation of the inclination of the power communication optical cable line can be conveniently known by an operator in real time.
Drawings
The present invention will be further explained with reference to the accompanying drawings:
fig. 1 is a schematic structural view of the device for monitoring external damage prevention of the power communication optical cable line of the present invention;
fig. 2 is a schematic structural diagram of a middle wireless measurement module according to the present invention;
FIG. 3 is a schematic structural view of the bracket of the present invention;
fig. 4 is the structural schematic diagram of the sealing plate of the middle bracket of the present invention.
Reference numerals:
the monitoring backstage, 11 cell-phones, 12PC, 2 signal acquisition subassemblies, 3 supports, 30 casings, 31 shrouding, 32 baffles, 33 first cavity, 34 second cavity, 35 threading groove, 36 turn-ups, 37 bar holes, 38 shock pads, 4 slope sensors, 40 wire, 5 horizontal base, 51 first horizontal clamp, 52 second horizontal clamp, 53 montant, 54 supporting shoe, 55 fixed plate, 6 wireless measuring module, 61 casings, 62 protective housing, 63 through-holes, 64 water joint, 7 gateways, 71 data transmission device, 8 power supply unit, 81 photovoltaic module, 82 batteries, 9 bandages, 91 fixed bands, 10 iron towers.
Detailed Description
As shown in fig. 1, fig. 2, fig. 3, and fig. 4, a device for monitoring external damage prevention of an electric power communication optical cable line includes a monitoring background 1 and a signal collection assembly 2, where the signal collection assembly 2 includes a bracket 3, an inclination sensor 4, and a horizontal base 5, the bracket 3 and the inclination sensor 4 are both disposed on the horizontal base 5, the horizontal base 5 is further provided with a wireless measurement module 6 connected to the inclination sensor 4, the bracket 3 is provided with a gateway 7 connected to the wireless measurement module 6, and a data transmission device 71 connected to the gateway 7, the bracket 3 is further provided with a power supply device 8, the inclination sensor 4, the gateway 7, and the wireless measurement module 6 are all connected to the power supply device 8, the bracket 3 and the inclination sensor 4 are mounted on an iron tower 10 of the electric power communication optical cable line along with the horizontal base 5, outer side walls of the horizontal base and outer side walls of the bracket are both provided with a galvanized layer, the service life of the horizontal base and the bracket can be prolonged; the monitoring background 1 comprises a mobile phone 11 and/or a PC 12, the PC 12 is connected with a data transmission device 71, and the mobile phone 11 is connected with the data transmission device 71 through a wireless network.
The wireless measurement module 6 is used for collecting the inclination signal of the horizontal base 5 output by the inclination sensor 4 in real time, the horizontal base 5 is arranged on the iron tower of the electric power communication optical cable line, so the inclination of the horizontal base 5 is the inclination of the iron tower, the inclination condition of the iron tower can be monitored in real time, the gateway 7 is used for receiving and storing the collected data, the data transmission device 71 is used for transmitting the data to the monitoring background 1, an operator can read and analyze the data through the monitoring background 1, thereby the inclination condition of the iron tower can be diagnosed, hidden dangers can be discovered as soon as possible, the hidden dangers can be eliminated in time, faults can be eliminated in time, the operation reliability of the communication line can be improved, various pre-alarms can be timely carried out on the inclination condition of the over-standard iron tower according to the development trend of the inclination monitoring data, the overhaul and maintenance can be guided, and operation and maintenance personnel can be reminded to reinforce the foundation, the falling accident is prevented, the iron tower inclination condition under the external force action of ground construction or iron tower abnormal movement can be effectively monitored, secondly, the inclination sensor 4 and the support 3 are arranged on the horizontal base 5, the installation process of the whole device can be simplified, the installation space of the whole device on the iron tower is simplified, different installation requirements can be met, then the horizontal base 5 can ensure the levelness of the whole device, the measurement precision of the inclination sensor 4 is ensured, the detection quality of the inclination sensor 4 is improved, the damage of the inclination sensor 4 is also reduced, finally, the arrangement of the power supply device 8 ensures the continuous work of the wireless measurement module 6 and the gateway 7, the continuity of signal acquisition is ensured, the data can be sent to the data receiving device in real time, the background monitoring is arranged into the mobile phone 11 and/or the PC 12, an operator can analyze and realize local storage of the data through the PC 12, the inclination of the power communication optical cable line can be checked and received in real time through the mobile phone 11, so that an operator can know the change of the inclination of the power communication optical cable line in real time conveniently.
The horizontal base 5 comprises a first horizontal clamp 51, a second horizontal clamp 52 and a vertical rod 53 arranged between the first horizontal clamp 51 and the second horizontal clamp 52, the first horizontal clamp 51 and the second horizontal clamp 52 are both fixedly connected to the iron tower, a supporting block 54 of the fixed support 3 is arranged on the second horizontal clamp 52, the tilt sensor 4 is arranged on the first horizontal clamp 51 and/or the second horizontal clamp 52, a fixing plate 55 for fixing the wireless measurement module 6 is arranged on the vertical rod 53, the horizontal base 5 is arranged into the first horizontal clamp 51, the second horizontal clamp 52 and the vertical rod 53, the horizontal base 5 can be quickly fixed on the iron tower, the installation and disassembly are convenient, different installation environments can be adapted, the vertical rod 53 can ensure the fixed quality of the first horizontal clamp 51 and the second horizontal clamp 52, and finally, the tilt sensor 4 is arranged on the first horizontal clamp 51 and/or the second horizontal clamp 52, the inclination sensor 4 of different positions can be installed according to actual requirements, the detection effect is good, the support block 54 is arranged to play a certain supporting role on the support, the installation process of the support is simplified, and the wireless measurement module 6 can be quickly fixed through the arrangement of the fixing plate 55.
The inclination sensor 4 is connected with the wireless measuring module 6 through a wire 40, the wireless measuring module 6 is provided with a box body 61, the box body 61 is provided with a protective shell 62, the wireless measuring module 6 is arranged in the box body 61, the box body 61 is provided with a through hole 63, the through hole 63 is provided with a waterproof joint 64, the wire 40 is arranged on the waterproof joint 64, the box body 61 is arranged on the fixing plate 55 through a screw, the box body 61 is arranged to facilitate the installation and fixation of the wireless measuring module 6, the protective shell 62 is arranged to avoid the influence of outdoor environment, the arrangement of the waterproof joint 64 avoids rainwater from entering equipment from the through hole 63, the service life is prolonged, a connecting circuit is arranged in the wireless measuring module 6 and is arranged in a full-bridge manner, the connecting circuit is connected with four inclination sensors 4, and the four inclination sensors 4 can be arranged at different positions of the horizontal base 5, the electric signals output by the four inclination sensors 4 can be collected simultaneously, and the detection quality is improved.
The support 3 comprises a shell 30 and a sealing plate 31 arranged on the shell 30, the data transmission device 71 and the gateway 7 are both arranged in the shell 30 and sealed in the shell 30 through the sealing plate 31, the power supply device 8 is arranged on the sealing plate 31, the transmission device 71 and the gateway 7 can be integrated with the shell 30, the structure of the whole support 3 is simplified, the installation and the disassembly are convenient, the sealing plate 31 is arranged, the data transmission device 71 and the gateway 7 can be sealed in the shell 30, the rainwater is prevented from entering the shell 30, the service life of the data transmission device 71 and the gateway 7 is prolonged, the power supply device 8 is arranged on the sealing plate 31, the installation process of the power supply device 8 can be further reduced, a partition plate 32 is further arranged in the shell 30, the partition plate 32 divides the shell 30 into a first cavity 33 and a second cavity 34, the gateway 7 is arranged in the first cavity 33, the data transmission device 71 is arranged in the second cavity 34, the threading groove 35 is formed in the partition plate 32, the gateway 7 and the data transmission device 71 can be independently arranged in the shell 30, the installation and fixation of the power supply cable are facilitated due to the arrangement of the threading groove 35, and the connection quality of the gateway 7 and the data transmission device 71 is guaranteed.
The power supply device 8 comprises a photovoltaic module 81 and a storage battery 82 connected to the photovoltaic module 81, the photovoltaic module 81 is arranged on the outer side wall of the sealing plate 31, the storage battery 82 is arranged in the first cavity 33, the power supply device 8 is arranged into the photovoltaic module 81 and the storage battery 82, the photovoltaic module 81 is used for supplying power to the storage battery 82, so that the continuous power supply of the storage battery 82 can be ensured, the continuous power supply of the inclination sensor 4 and the gateway 7 can be realized, the reliability of data monitoring is ensured, in addition, the photovoltaic module 81 is disposed on the outer side wall of the sealing plate 31, so that the installation structure of the whole photovoltaic module 81 can be simplified, the structure of the photovoltaic module 81 is the prior art, the detailed description is omitted in this embodiment, and during the specific installation, the storage battery 82 can be arranged at the bottom end of the first cavity 33, and a transverse plate for fixing the gateway 7 is arranged in the first cavity 33 above the storage battery 82.
The shell 30 is provided with a turned edge 36 connected with the iron tower, the turned edge 36 and the shell 30 are of an integral structure, the arrangement of the turned edge 36 can increase the contact area between the shell 30 and the iron tower, improve the fixing quality of the shell 30, simplify the installation process between the turned edge 36 and the shell 30 and improve the installation strength of the whole shell 30, the turned edge 36 is provided with a binding band 9, the turned edge 36 is provided with a strip-shaped hole 37, one end of the binding band 9 is fixedly connected to a vertical rod 53, the other end of the binding band 9 passes through the strip-shaped hole 37 and then is fixedly connected to the binding band 9, the binding band 9 is provided with a fixing band 91 for preventing the binding band 9 from being separated, the shell 30 is fixed on the iron tower through the binding band 9, different installation positions can be rotated according to the actual installation environment, one end of the binding band 9 is fixed on the vertical rod 53 during installation, the other end of the binding band 9 passes through the strip-shaped hole 37 and then is fixedly connected to the binding band 9, so that the installation and the disassembly are convenient, the fixation band 91 is arranged, the binding band 9 can be prevented from being separated, the fixation quality of the binding band 9 is improved, the damping pad 38 which is connected with the iron tower in an abutting mode is arranged on the shell 30, the fixation quality of the shell 30 can be guaranteed, the damping function can be realized, the influence of construction operation on the shell 30 is avoided, and the monitoring quality of the inclination sensor 4 is guaranteed.
The PC 12 and the data transmission device 71 are in communication connection through an NB-IOT network, and the NB-IOT network has the characteristics of low power consumption, wide coverage and large connection, so that information can be transmitted to the PC 12 quickly, and the reliability of information reception is ensured.
The above description is only for the specific embodiment of the present invention, but the technical features of the present invention are not limited thereto, and any person skilled in the art can make changes or modifications within the scope of the present invention.
Claims (10)
1. The utility model provides a device that is used for outer broken monitoring of electric power communication optical cable line to prevent which characterized in that: the system comprises a monitoring background and a signal acquisition assembly, wherein the signal acquisition assembly comprises a support, an inclination sensor and a horizontal base, the support and the inclination sensor are both arranged on the horizontal base, a wireless measurement module connected with the inclination sensor is also arranged on the horizontal base, a gateway connected with the wireless measurement module and a data transmission device connected with the gateway are arranged on the support, a power supply device is also arranged on the support, the inclination sensor, the gateway and the wireless measurement module are all connected with the power supply device, and the support and the inclination sensor are arranged on an iron tower of an electric power communication optical cable line along with the horizontal base;
the monitoring background comprises a mobile phone and/or a PC (personal computer), the PC is connected with the data transmission device, and the mobile phone is connected with the data transmission device through a wireless network.
2. The device for external damage prevention monitoring of the power communication optical cable line according to claim 1, wherein: horizontal base includes first horizontal clamp, the horizontal clamp of second and sets up the montant between first horizontal clamp and the horizontal clamp of second, the equal fixed connection of first horizontal clamp and the horizontal clamp of second is on the iron tower, be equipped with the supporting shoe of fixed bolster on the horizontal clamp of second, the tilt sensor sets up on first horizontal clamp and/or the horizontal clamp of second, be equipped with fixed wireless measurement module's fixed plate on the montant.
3. The device for external damage prevention monitoring of the power communication optical cable line according to claim 2, wherein: the inclination sensor is connected with the wireless measurement module through a wire, the wireless measurement module is provided with a box body, the box body is provided with a protective shell, the wireless measurement module is arranged in the box body, the box body is provided with a through hole, the through hole is provided with a waterproof joint, the wire is arranged on the waterproof joint, and the box body is installed on the fixing plate through a screw.
4. The device for external damage prevention monitoring of the power communication optical cable line according to claim 2, wherein: the support includes the casing and sets up the shrouding on the casing, data transmission device and gateway all set up in the casing, and seal in the casing through the shrouding, power supply unit sets up on the shrouding.
5. A device for external damage prevention monitoring of an optical power communication cable line according to claim 4, characterized in that: still be equipped with the baffle in the casing, first cavity and second cavity are separated into with the casing to the baffle, the gateway sets up in first cavity, data transmission device sets up in the second cavity, be equipped with through wires hole or/and threading groove on the baffle.
6. A device for external damage prevention monitoring of an optical power communication cable line according to claim 4, characterized in that: the power supply device comprises a photovoltaic assembly and a storage battery connected with the photovoltaic assembly, the photovoltaic assembly is arranged on the outer side wall of the sealing plate, and the storage battery is arranged in the first cavity.
7. A device for external damage prevention monitoring of an optical power communication cable line according to claim 4, characterized in that: the shell is provided with a flanging connected with the iron tower, and the flanging and the shell are of an integrated structure.
8. The device for external damage prevention monitoring of the power communication optical cable line according to claim 7, wherein: the binding belt is characterized in that a binding belt is arranged on the turned-over edge, a strip-shaped hole is formed in the turned-over edge, one end of the binding belt is fixedly connected to the vertical rod, the other end of the binding belt penetrates through the strip-shaped hole and then is fixedly connected to the binding belt, and a fixing belt for preventing the binding belt from being separated is arranged on the binding belt.
9. An apparatus for break-out prevention monitoring of an optical power communication cable line according to claim 8, wherein: and the shell is provided with a shock pad which is abutted with the iron tower.
10. The device for external damage prevention monitoring of the power communication optical cable line according to claim 1, wherein: the PC is in communication connection with the data transmission device through an NB-IOT network.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202120484441.9U CN214426696U (en) | 2021-03-05 | 2021-03-05 | Device for monitoring electric power communication optical cable line to prevent external damage |
Applications Claiming Priority (1)
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CN202120484441.9U CN214426696U (en) | 2021-03-05 | 2021-03-05 | Device for monitoring electric power communication optical cable line to prevent external damage |
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CN214426696U true CN214426696U (en) | 2021-10-19 |
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CN202120484441.9U Active CN214426696U (en) | 2021-03-05 | 2021-03-05 | Device for monitoring electric power communication optical cable line to prevent external damage |
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2021
- 2021-03-05 CN CN202120484441.9U patent/CN214426696U/en active Active
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