CN204010292U - Transmission line of electricity load temperature monitoring system based on tree topology - Google Patents

Transmission line of electricity load temperature monitoring system based on tree topology Download PDF

Info

Publication number
CN204010292U
CN204010292U CN201420432203.3U CN201420432203U CN204010292U CN 204010292 U CN204010292 U CN 204010292U CN 201420432203 U CN201420432203 U CN 201420432203U CN 204010292 U CN204010292 U CN 204010292U
Authority
CN
China
Prior art keywords
access device
wireless access
tree topology
transmission line
ftu
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201420432203.3U
Other languages
Chinese (zh)
Inventor
孔玉录
杨元春
张志强
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
State Grid Corp of China SGCC
Datong Power Supply Co of State Grid Shanxi Electric Power Co Ltd
Original Assignee
State Grid Corp of China SGCC
Datong Power Supply Co of State Grid Shanxi Electric Power Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by State Grid Corp of China SGCC, Datong Power Supply Co of State Grid Shanxi Electric Power Co Ltd filed Critical State Grid Corp of China SGCC
Priority to CN201420432203.3U priority Critical patent/CN204010292U/en
Application granted granted Critical
Publication of CN204010292U publication Critical patent/CN204010292U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Mobile Radio Communication Systems (AREA)

Abstract

The utility model relates to transmission line of electricity monitoring technology, specifically a kind of transmission line of electricity load temperature monitoring system based on tree topology.The utility model has solved the problem that existing transmission line of electricity load temperature monitoring network lacks rational network topology structure.Transmission line of electricity load temperature monitoring system based on tree topology, comprises terminal part and transmission medium part; Described terminal part comprises FTU, wired temperature sensor, wireless access device, remote radio head, monitoring host computer; Described transmission medium part comprises twisted-pair feeder, radio universal serial bus; Each FTU forms the branch of tree topology jointly, and first wireless access device and second wireless access device form the trunk of tree topology jointly; Each wired temperature sensor forms the branch of tree topology jointly, and the 3rd wireless access device and the 4th wireless access device form the trunk of tree topology jointly.The utility model is applicable to transmission line of electricity.

Description

Transmission line of electricity load temperature monitoring system based on tree topology
Technical field
The utility model relates to transmission line of electricity monitoring technology, specifically a kind of transmission line of electricity load temperature monitoring system based on tree topology.
Background technology
Existing transmission line of electricity is erected in the air mostly, the erosion that need to bear dust storm, heavy rain, ice and snow etc., and service condition is very severe.Therefore,, in order to ensure the safe operation of transmission line of electricity, need to carry out load temperature monitoring to transmission line of electricity.At present, mainly rely on transmission line of electricity load temperature monitoring network to realize for the load temperature monitoring of transmission line of electricity.Under prior art condition, transmission line of electricity load temperature monitoring network is because self structure is limit, there are the following problems: existing transmission line of electricity load temperature monitoring network generally lacks rational network topology structure, the problem that causes its ubiquity fluctuation of service, poor reliability, directly affects the safe operation of transmission line of electricity thus.Based on this, be necessary to invent a kind of brand-new transmission line of electricity load temperature monitoring network, lack the problem of rational network topology structure to solve existing transmission line of electricity load temperature monitoring network.
Summary of the invention
The utility model lacks the problem of rational network topology structure in order to solve existing transmission line of electricity load temperature monitoring network, a kind of transmission line of electricity load temperature monitoring system based on tree topology is provided.
The utility model is to adopt following technical scheme to realize: the transmission line of electricity load temperature monitoring system based on tree topology, comprises terminal part and transmission medium part;
Described terminal part comprises FTU, wired temperature sensor, wireless access device, remote radio head, monitoring host computer;
Described transmission medium part comprises twisted-pair feeder, radio universal serial bus;
Wherein, the number of the number of FTU, wired temperature sensor is multiple; The number of wireless access device is five;
Wherein several FTU are all connected with first wireless access device by twisted-pair feeder, and all the other several FTU are all connected with second wireless access device by twisted-pair feeder, and first wireless access device is connected with second wireless access device by twisted-pair feeder; Each FTU forms the branch of tree topology jointly, and first wireless access device and second wireless access device form the trunk of tree topology jointly;
Wherein several wired temperature sensors are all connected with the 3rd wireless access device by twisted-pair feeder, all the other several wired temperature sensors are all connected with the 4th wireless access device by twisted-pair feeder, and the 3rd wireless access device is connected with the 4th wireless access device by twisted-pair feeder; Each wired temperature sensor forms the branch of tree topology jointly, and the 3rd wireless access device and the 4th wireless access device form the trunk of tree topology jointly;
Second wireless access device, the 4th wireless access device, remote radio head all with radio universal serial bus wireless connections, and second wireless access device, the 4th wireless access device, remote radio head, radio universal serial bus form bus type topological structure jointly;
Remote radio head and the 5th wireless access device wireless connections;
The 5th wireless access device is connected with monitoring host computer.
Specific works process is as follows:
Each FTU gathers the service data of transmission line of electricity, and by twisted-pair feeder, the service data collecting is sent to first wireless access device and second wireless access device.First wireless access device is sent to second wireless access device by twisted-pair feeder by the service data receiving.The service data receiving is sent to radio universal serial bus by second wireless access device.
Each wired temperature sensor gathers the temperature data of transmission line of electricity, and by twisted-pair feeder, the temperature data collecting is sent to the 3rd wireless access device and the 4th wireless access device.The 3rd wireless access device is sent to the 4th wireless access device by twisted-pair feeder by the temperature data receiving.The temperature data receiving is sent to radio universal serial bus by the 4th wireless access device.
Remote radio head obtains service data and temperature data by access radio universal serial bus, and the service data getting and temperature data are sent to the 5th wireless access device.
The service data receiving and temperature data are sent to monitoring host computer by the 5th wireless access device.
Based on said process, compared with existing transmission line of electricity load temperature monitoring network, the transmission line of electricity load temperature monitoring system tool based on tree topology described in the utility model has the following advantages:
Transmission line of electricity load temperature monitoring system based on tree topology described in the utility model adopts FTU and wireless access device to form first tree topology, adopt wired temperature sensor and wireless access device to form second tree topology, adopt wireless access device, remote radio head, radio universal serial bus has formed bus type topological structure, and it is by utilizing tree topology to be easy to expand, the easier advantage of fault isolation, and simple in structure in conjunction with bus type topological structure, needed transmission medium is few, without Centroid, the fault of any node can not cause the whole network paralysis, reliability is high, be easy to the advantage expanding, possessed rational network topology structure, simultaneously its to combine Double-strand transmission quality high, wiring is convenient, cable utilization factor is high, antijamming capability is strong, reliability is high, easy to use, low price, the advantage easily of drawing materials, therefore its operation is more stable, better reliability, thus the safe operation of transmission line of electricity effectively ensured.
The utility model efficiently solves the problem that existing transmission line of electricity load temperature monitoring network lacks rational network topology structure, is applicable to transmission line of electricity.
Brief description of the drawings
Fig. 1 is structural representation of the present utility model.
Embodiment
Transmission line of electricity load temperature monitoring system based on tree topology, comprises terminal part and transmission medium part;
Described terminal part comprises FTU, wired temperature sensor, wireless access device, remote radio head, monitoring host computer;
Described transmission medium part comprises twisted-pair feeder, radio universal serial bus;
Wherein, the number of the number of FTU, wired temperature sensor is multiple; The number of wireless access device is five;
Wherein several FTU are all connected with first wireless access device by twisted-pair feeder, and all the other several FTU are all connected with second wireless access device by twisted-pair feeder, and first wireless access device is connected with second wireless access device by twisted-pair feeder; Each FTU forms the branch of tree topology jointly, and first wireless access device and second wireless access device form the trunk of tree topology jointly;
Wherein several wired temperature sensors are all connected with the 3rd wireless access device by twisted-pair feeder, all the other several wired temperature sensors are all connected with the 4th wireless access device by twisted-pair feeder, and the 3rd wireless access device is connected with the 4th wireless access device by twisted-pair feeder; Each wired temperature sensor forms the branch of tree topology jointly, and the 3rd wireless access device and the 4th wireless access device form the trunk of tree topology jointly;
Second wireless access device, the 4th wireless access device, remote radio head all with radio universal serial bus wireless connections, and second wireless access device, the 4th wireless access device, remote radio head, radio universal serial bus form bus type topological structure jointly;
Remote radio head and the 5th wireless access device wireless connections;
The 5th wireless access device is connected with monitoring host computer.
When concrete enforcement, described FTU is CSF301 type FTU; Described wired temperature sensor is the wired temperature sensor of DS18B20 type; Described wireless access device is CISCO AIR-CAP1602I-C-K9 type wireless access device; Described remote radio head is 800M CDMA/LTE bimodulus Micro remote radio head.

Claims (2)

1. the transmission line of electricity load temperature monitoring system based on tree topology, is characterized in that: comprise terminal part and transmission medium part;
Described terminal part comprises FTU, wired temperature sensor, wireless access device, remote radio head, monitoring host computer;
Described transmission medium part comprises twisted-pair feeder, radio universal serial bus;
Wherein, the number of the number of FTU, wired temperature sensor is multiple; The number of wireless access device is five;
Wherein several FTU are all connected with first wireless access device by twisted-pair feeder, and all the other several FTU are all connected with second wireless access device by twisted-pair feeder, and first wireless access device is connected with second wireless access device by twisted-pair feeder; Each FTU forms the branch of tree topology jointly, and first wireless access device and second wireless access device form the trunk of tree topology jointly;
Wherein several wired temperature sensors are all connected with the 3rd wireless access device by twisted-pair feeder, all the other several wired temperature sensors are all connected with the 4th wireless access device by twisted-pair feeder, and the 3rd wireless access device is connected with the 4th wireless access device by twisted-pair feeder; Each wired temperature sensor forms the branch of tree topology jointly, and the 3rd wireless access device and the 4th wireless access device form the trunk of tree topology jointly;
Second wireless access device, the 4th wireless access device, remote radio head all with radio universal serial bus wireless connections, and second wireless access device, the 4th wireless access device, remote radio head, radio universal serial bus form bus type topological structure jointly;
Remote radio head and the 5th wireless access device wireless connections;
The 5th wireless access device is connected with monitoring host computer.
2. the transmission line of electricity load temperature monitoring system based on tree topology according to claim 1, is characterized in that: described FTU is CSF301 type FTU; Described wired temperature sensor is the wired temperature sensor of DS18B20 type; Described wireless access device is CISCO AIR-CAP1602I-C-K9 type wireless access device; Described remote radio head is 800M CDMA/LTE bimodulus Micro remote radio head.
CN201420432203.3U 2014-08-02 2014-08-02 Transmission line of electricity load temperature monitoring system based on tree topology Expired - Fee Related CN204010292U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420432203.3U CN204010292U (en) 2014-08-02 2014-08-02 Transmission line of electricity load temperature monitoring system based on tree topology

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420432203.3U CN204010292U (en) 2014-08-02 2014-08-02 Transmission line of electricity load temperature monitoring system based on tree topology

Publications (1)

Publication Number Publication Date
CN204010292U true CN204010292U (en) 2014-12-10

Family

ID=52050260

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420432203.3U Expired - Fee Related CN204010292U (en) 2014-08-02 2014-08-02 Transmission line of electricity load temperature monitoring system based on tree topology

Country Status (1)

Country Link
CN (1) CN204010292U (en)

Similar Documents

Publication Publication Date Title
CN204013901U (en) Transmission line video and environmental monitoring system based on bus type topological structure
CN203981297U (en) Transmission line of electricity load temperature monitoring system based on bus type topological structure
CN104124785B (en) Power transmission state monitoring system based on wireless power private network and bus-type topology
CN104125437A (en) Star topology based power transmission line video and environment monitoring system
CN203673085U (en) Power transmission line micrometeorological monitoring system base on ZigBee network
CN204013902U (en) Transmission line video and environmental monitoring system based on fully connected topology
CN203984097U (en) Inclination of transmission line tower detection system based on stelliform connection topology configuration
CN204231028U (en) Intelligent grid data dispatching remote online diagnosis and analysis device
CN104124758B (en) Transmission line of electricity video and environmental monitoring system based on ring topology
CN204045011U (en) Based on the power line load temperature monitoring system of fully connected topology
CN203503147U (en) Power utilization information acquiring device based on self-organizing network and power line network
CN204010292U (en) Transmission line of electricity load temperature monitoring system based on tree topology
CN104124786B (en) Power transmission state monitoring system based on wireless power private network and tree topology
CN203503149U (en) Power utilization information acquiring device based on self-organizing network and twisted-pair network
CN203981214U (en) Transmission line of electricity video and environmental monitoring system based on tree topology
CN104135087A (en) Transmission line state monitoring system based on wireless electric private network and mesh topology
CN203982570U (en) Transmission line of electricity load temperature monitoring system based on stelliform connection topology configuration
CN204681415U (en) RS485 intelligence junction box
CN203982569U (en) Transmission line of electricity load temperature monitoring system based on ring topology
CN203503150U (en) Power utilization information acquiring device based on self-organizing network and optical fiber network
CN203504298U (en) Power distribution equipment monitoring device based on self-organizing network and power line network
CN204312134U (en) A kind of mining supervising device
CN203814321U (en) Power line carrier remote control system for electric large-scale sprinkling machine
CN204231561U (en) Based on the power network video monitoring intelligent analyzing and alarming system of regulation and control integration
CN203981168U (en) Inclination of transmission line tower detection system based on ring topology

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20141210