CN209250640U - A kind of optic cable automatic monitoring and resource management system based on cloud computing platform - Google Patents
A kind of optic cable automatic monitoring and resource management system based on cloud computing platform Download PDFInfo
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- CN209250640U CN209250640U CN201920276345.8U CN201920276345U CN209250640U CN 209250640 U CN209250640 U CN 209250640U CN 201920276345 U CN201920276345 U CN 201920276345U CN 209250640 U CN209250640 U CN 209250640U
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Abstract
The utility model discloses a kind of optic cable automatic monitoring and resource management system based on cloud computing platform, the system includes cloud computing virtual management platform, optic cable automatic monitoring equipment set on railway parent company and the terminal and data center server respectively at optic cable automatic monitoring device signal connection, optic cable automatic monitoring equipment set on each Railway Bureau and the terminal that is connect with the optic cable automatic monitoring device signal, optic cable automatic monitoring equipment set on each electricity business section and the terminal that is connect with the optic cable automatic monitoring device signal, monitoring unit and terminal set on each monitoring station.The utility model is using the three-level structure virtualized, it can not only find failure, position and the time that optical cable occurs and handle in time, and the monitoring host in road bureau can be realized and manage concentratedly and safeguard, failure can restore host in time, the system shortens the breakdown repair time, provides sound assurance to the optical cable maintenance of Railway Communication.
Description
Technical field
The utility model relates to optic cable automatic monitoring technical fields, more particularly to a kind of optical cable based on cloud computing platform
Automatic monitoring and resource management system.
Background technique
With the rapid development of Internet, broadband services comes into huge numbers of families, optical cable plays in communication engineering construction
Conclusive effect.The remote transmission of information, anticorrosion, anti-tampering may be implemented in optical cable, becomes the transmission of modern communications engineering
The tool of data information.Since the demand of people increasingly increases, need to be laid with the needs that a large amount of optical cable is just able to satisfy society, with
This simultaneously, optical cable maintenance and management work are also increasingly taken seriously.Accuracy of traditional maintenance system to the inspection of failure
Requirement is no longer satisfied, investigation gets up to require a great deal of time, and therefore, it is necessary to a kind of new monitoring systems to replace tradition
Maintenance system promotes the needs of optical cable maintenance on-the-job satisfaction social development.
The fiber optic communication network huge for railway, Optical Fiber Physical Network network scale will be increasingly huge, and structure will be increasingly complicated;Add
Fiber optic communication from it is formal commercialization till now after development in more than 30 years, originally according to service life less than 30 years design
Optical fiber, the problem of fiber optic network aging in the near future will become increasingly conspicuous.However, cannot after fibre circuit failure
It is repaired in time, huge loss will be caused to operator, enterprise even individual.Under normal conditions, when fiber optic network goes out
In time, fast and accurately it must be detected and be solved after existing failure;Meanwhile some fiber failures can't cause to lead to immediately
Believe the interruption of route, but lead to optical fiber local slow deterioration, this kind of failure in fiber optic network also must find and solve as early as possible
Certainly to take preventive measures.
How the efficient normal work for ensureing Networks of Fiber Communications, find the failure and hidden in fiber optic network in time
Suffer from? is the management system for how constructing quick detection fiber network failure efficiently repaired failure after fiber optic network breaks down?
These main problems are all that maintenance department answers emphasis to consider and solve in development process, and pushes planning and constructing optical fiber logical
Communication network failure monitoring, the important motivity for managing and maintaining system.The management system of quick detection fiber network failure is constructed, from
Dynamic, real-time monitoring fiber optic network failure not only can effectively prevent and reduce fiber optic network failure and hidden danger, as far as possible reduction light
Loss caused by fine circuit question ensures stable, efficient, safety the operation of fiber optic network;And it may also help in telecommunications dimension
Shield department reinforces efficiently managing and maintaining fiber optic network, substantially reduces the maintenance cost of fiber optic network.In order to utilize the modern times
Cutting edge technology means construct advanced, efficient fiber optic network failure real-time monitoring system, concentration timely in the hope of energy, visualization
Grasp the event of failure of the entire optical fiber transmission backbone network in a certain area, and in time, effectively fiber failure type and position
Data information is issued by effective mode, is improved timeliness, the supervision efficiency of optical fibre fault monitoring, is realized fiber failure protection
Informationization, administrative decision are scientific, improve the working efficiency of optical fiber maintenance department rapidly, network O&M department can also be greatly lowered
The cost of door, while failure is reduced as far as possible to economic loss caused by Railway Communication.
Utility model content
To solve problems of the prior art, the utility model provide a kind of optical cable based on cloud computing platform from
Dynamic monitoring and resource management system, the system is simple, stable with framework, it is excellent to carry out centralized management etc. to optical fiber
Point.
To achieve the above objectives, the present invention adopts the following technical solutions:
A kind of optic cable automatic monitoring and resource management system based on cloud computing platform, the system are suitable for railway parent company
Three-level management mode, i.e., between railway parent company, each Railway Bureau and each electricity business section/stand by network implementations data exchange, altogether
It enjoys and ownership divides.
The system include cloud computing virtual management platform, set on railway parent company optic cable automatic monitoring equipment and point
Not in the optic cable automatic monitoring device signal connection terminal and data center server, set on each Railway Bureau optical cable it is automatic
Monitoring device and the terminal being connect with the optic cable automatic monitoring device signal, the optic cable automatic monitoring equipment of section of being engaged in set on each electricity
And connect with the optic cable automatic monitoring device signal terminal, set on each monitoring station monitoring unit and with the monitoring unit
The terminal of signal connection.
Each monitoring station is connect with the optic cable automatic monitoring device signal of electricity business section, and the optic cable automatic monitoring of the electricity business section is set
It is standby to be connect with the optic cable automatic monitoring device signal of the Railway Bureau, the optic cable automatic monitoring equipment of the Railway Bureau and the iron
The optic cable automatic monitoring device signal of road parent company connects.
In above structure, each monitoring station passes through monitoring unit respectively and is monitored to the corresponding optical cable segment in the station, and will prison
Measured data is transmitted to optic cable automatic monitoring equipment, and each Railway Bureau can connect optic cable automatic monitoring equipment to monitoring data by terminal
It is monitored and handles, railway parent company can connect optic cable automatic monitoring equipment by terminal and monitoring data are monitored and are located
Reason, while monitoring data being stored in data center server, convenient for inquiry, once there is hidden danger or failure in certain section of optical cable,
It is found first by the monitoring station of this section by monitoring unit, after sending data to optic cable automatic monitoring equipment, based on virtualization
Cloud computing platform, each Railway Bureau, railway parent company can find in time, and reasonably be provided according to hidden danger or fault level
Source distribution, to handle as early as possible.
Preferably, the monitoring unit includes switch power module, AIU, CPU, GPS module, network module, OTDR module
(optical time domain reflectometer), photoswitch and optical module.Optical cable is monitored by multiple sensors and monitoring instrument, monitoring data
It is more accurate, improve monitoring quality.
Preferably, the system by traditional physical resource Unified Set and it is abstract be managed, carried out with service pattern
Business is delivered.It manages more efficient.
Preferably, the optic cable automatic monitoring equipment is that the optic cable automatic monitoring based on LINUX virtualizes cloud computing platform.
The cloud computing platform of virtualization effectively increases the transmission speed and maintenance efficiency of data, also reduces the difficulty of framework, improves
Practicability.
Beneficial effect is:
1, the utility model framework is simple, system run all right, and monitoring and feedback efficiency are high, convenient for safeguarding, than previous
It is higher compared to previous optic cable automatic monitoring system centralized management degree, it is practical stronger;
2, optical cable is monitored by multiple sensors and monitoring instrument, monitoring data are more accurate, improve monitoring
Quality;
3, the system by traditional physical resource Unified Set and it is abstract be managed, business friendship is carried out with service pattern
It pays.It manages more efficient;
4, the cloud computing platform virtualized effectively increases the transmission speed and maintenance efficiency of data, also reduces framework
Difficulty improves practicability.
Detailed description of the invention
Fig. 1 is the system architecture block diagram at the railway parent company of the utility model embodiment 1;
Fig. 2 is the system architecture block diagram at the Railway Bureau of the utility model embodiment 1;
Fig. 3 is the system architecture block diagram of the electricity business section of the utility model embodiment 1;
Fig. 4 is the structural block diagram of the monitoring unit of the utility model embodiment 2.
Appended drawing reference:
100, data center server;200, optic cable automatic monitoring equipment;300, terminal;400, monitoring unit;401, it opens
Powered-down source module;402,AIU402;403,CPU403;404, GPS module;405, network module;406, OTDR module;407, light
Switch;408, optical module.
Specific embodiment
The utility model is described in further detail with reference to the accompanying drawing:
Embodiment 1:
As shown in Figure 1-Figure 3, a kind of optic cable automatic monitoring and resource management system based on cloud computing platform, the system are suitable
It is for the three-level management mode of railway parent company, i.e., real by network between railway parent company, each Railway Bureau and each electricity business section/stand
Existing data exchange, shared and ownership divide, the system by traditional physical resource Unified Set and it is abstract be managed, with
Service pattern carries out business delivery.
The system includes being set to the optic cable automatic monitoring equipment 200 of railway parent company and supervising automatically respectively at the optical cable
The terminal 300 and data center server 100, the optic cable automatic monitoring equipment set on each Railway Bureau of 200 signal of measurement equipment connection
200 and connect with 200 signal of optic cable automatic monitoring equipment terminal 300, set on it is each electricity business section optic cable automatic monitoring set
Standby 200 and connect with 200 signal of optic cable automatic monitoring equipment terminal 300, set on each monitoring station monitoring unit 400 and
The terminal 300 being connect with 400 signal of monitoring unit.
The terminal 300 of the terminal 300 of the railway parent company, the terminal 300 of each Railway Bureau and each electricity business section includes more
Platform PC.Terminal 300 includes the practicability that multiple pc improves system entirety, can receive the access of multiport simultaneously.
Each monitoring station is connect with 200 signal of optic cable automatic monitoring equipment of electricity business section, and the optical cable of the electricity business section is supervised automatically
Measurement equipment 200 is connect with 200 signal of optic cable automatic monitoring equipment of the Railway Bureau, and the optic cable automatic monitoring of the Railway Bureau is set
Standby 200 connect with 200 signal of optic cable automatic monitoring equipment of the railway parent company.
The optic cable automatic monitoring equipment 200 is the optic cable automatic monitoring virtual platform based on LINUX.Virtualization is put down
Platform effectively increases the transmission speed and maintenance efficiency of data, also reduces the difficulty of framework, improves practicability.
In above structure, each monitoring station passes through monitoring unit 400 respectively and is monitored to the corresponding optical cable segment in the station, and will
Monitoring data are transmitted to optic cable automatic monitoring equipment 200, and each Railway Bureau can connect optic cable automatic monitoring equipment by terminal 300
200 pairs of monitoring data are monitored and handle, and it is right that railway parent company can connect optic cable automatic monitoring equipment 200 by terminal 300
Monitoring data are monitored and handle, while monitoring data being stored in data center server 100, convenient for inquiry, once
There is hidden danger or failure in certain section of optical cable, is found first by the monitoring station of this section by monitoring unit 400, sends data to optical cable
After automated monitor 200, each Railway Bureau, railway parent company can find in time, and be closed according to hidden danger or fault level
The resource allocation of reason, to handle as early as possible.
The utility model framework is simple, system run all right, and monitoring and feedback efficiency are high, convenient for safeguarding, compared to previous
Optic cable automatic monitoring system, centralized management degree is higher, practical stronger.The utility model uses three-level structure, can not only
It enough finds failure, position and the time that optical cable occurs and handles in time, and the monitoring host in road bureau can be realized and be concentrated
It manages and safeguards, failure can restore host in time, which greatly shortens the breakdown repair time, logical to railway
The optical cable maintenance of letter net provides sound assurance.
Embodiment 2:
As shown in figure 4, embodiment 2 be on the basis of embodiment 1, monitoring unit 400 include switch power module 401,
AIU402, CPU403, GPS module 404, network module 405, OTDR module 406 (optical time domain reflectometer), photoswitch 407 and light
Module 408.Optical module 408 and AIU402 are electrically connected, and AIU402 and CPU403 are electrically connected, CPU403 respectively with GPS module
404, network module 405 and OTDR module 406 are electrically connected, and network module 405 is connected with network interface, OTDR module 406 with
Photoswitch 407 is electrically connected, and photoswitch 407 and optical module 408 are electrically connected, and switch power module 401 connects live wire, switch
The output end of power module 401 is electrically connected with optical module 408, AIU402 and CPU403 respectively, when monitoring, optical module 408
Input terminal connects receiving end of the optical fiber as optical fiber, transmitting terminal of the output end connection optical fiber of photoswitch 407 as optical fiber.
Optical cable is monitored by multiple sensors and monitoring instrument, monitoring data are more accurate, improve monitoring matter
Amount.
Remaining structure and working principle of embodiment 2 is the same as embodiment 1.
The basic principles and main features and advantage of the utility model have been shown and described above.The technical staff of the industry
It should be appreciated that the present utility model is not limited to the above embodiments, the above embodiments and description only describe this
The principle of utility model, on the premise of not departing from the spirit and scope of the utility model, the utility model also has various change
And improvement, these various changes and improvements fall within the scope of the claimed invention.
Claims (4)
1. a kind of optic cable automatic monitoring and resource management system based on cloud computing platform, which is characterized in that the system is suitable for
Pass through network implementations number between the three-level management mode of railway parent company, i.e. railway parent company, each Railway Bureau and each electricity business section/stand
It is divided according to exchange, shared and ownership;
The system include cloud computing virtual management platform, set on railway parent company optic cable automatic monitoring equipment and respectively at
The terminal and data center server of optic cable automatic monitoring device signal connection, set on the optic cable automatic monitoring of each Railway Bureau
Equipment and the terminal being connect with the optic cable automatic monitoring device signal, set on each electricity business section optic cable automatic monitoring equipment and with
The terminal of optic cable automatic monitoring device signal connection, set on each monitoring station monitoring unit and with the monitoring unit signal
The terminal of connection;
Each monitoring station with electricity business section optic cable automatic monitoring device signal connect, it is described electricity business section optic cable automatic monitoring equipment and
The optic cable automatic monitoring device signal of the Railway Bureau connects, and the optic cable automatic monitoring equipment of the Railway Bureau and the railway are total
The optic cable automatic monitoring device signal of company connects.
2. a kind of optic cable automatic monitoring and resource management system based on cloud computing platform according to claim 1, special
Sign is that the monitoring unit includes switch power module, AIU, CPU, GPS module, network module, OTDR module, photoswitch
And optical module.
3. a kind of optic cable automatic monitoring and resource management system based on cloud computing platform according to claim 1, special
Sign is, the system by traditional physical resource Unified Set and it is abstract be managed, business delivery is carried out with service pattern.
4. a kind of optic cable automatic monitoring and resource management system based on cloud computing platform according to claim 1, special
Sign is that the optic cable automatic monitoring equipment is the optic cable automatic monitoring virtual platform based on LINUX.
Priority Applications (1)
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CN201920276345.8U CN209250640U (en) | 2019-03-05 | 2019-03-05 | A kind of optic cable automatic monitoring and resource management system based on cloud computing platform |
Applications Claiming Priority (1)
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CN201920276345.8U CN209250640U (en) | 2019-03-05 | 2019-03-05 | A kind of optic cable automatic monitoring and resource management system based on cloud computing platform |
Publications (1)
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2019
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