CN204926420U - Automatic monitoring devices of shaft tower mountain landslide - Google Patents

Automatic monitoring devices of shaft tower mountain landslide Download PDF

Info

Publication number
CN204926420U
CN204926420U CN201520602794.9U CN201520602794U CN204926420U CN 204926420 U CN204926420 U CN 204926420U CN 201520602794 U CN201520602794 U CN 201520602794U CN 204926420 U CN204926420 U CN 204926420U
Authority
CN
China
Prior art keywords
unit
shaft tower
automatic monitoring
data acquisition
acquisition unit
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
CN201520602794.9U
Other languages
Chinese (zh)
Inventor
董泽才
冒文兵
吕孝平
刘昌帅
苏世
刘磊
任寅平
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.)
Tongling Power Supply Co of State Grid Anhui Electric Power Co Ltd
Original Assignee
Tongling Power Supply Co of State Grid Anhui 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 Tongling Power Supply Co of State Grid Anhui Electric Power Co Ltd filed Critical Tongling Power Supply Co of State Grid Anhui Electric Power Co Ltd
Priority to CN201520602794.9U priority Critical patent/CN204926420U/en
Application granted granted Critical
Publication of CN204926420U publication Critical patent/CN204926420U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Abstract

The utility model discloses an automatic monitoring devices of shaft tower mountain landslide, including wireless data acquisition unit, reach connected GPRS unit, deviational survey sensor, hyetometer, humiture monitoring unit, wireless data transmit -Receive unit. This automatic monitoring devices of shaft tower mountain landslide can provide automatic monitoring that mountain landslide warp, provide the automatic monitoring of shaft tower gradient and provide the automatic monitoring to the slip mass environmental change, and outside surveillance center carries out the analysis unusually and realizes intelligent early warning the slip mass according to monitoring results, has guaranteed safety, the steady operation of electric wire netting.

Description

Shaft tower landslide automatic monitoring device
Technical field
The utility model relates to network system safety testing field, in particular a kind of shaft tower landslide automatic monitoring device.
Background technology
Growing along with national grid, ultra-high-tension power transmission line is inevitably through rib area, mountain, and these electric force pole towers generally consider surrounding environment at that time and stability of the hill, within a certain period of time safety, stable operation when design and installation.But along with hand excavation's massif and extreme natural environment (wind erosion, heavy rain etc.) impact, there is a lot of landslides event in recent years, cause ultra-high-tension power transmission line impaired, cause and have a power failure on a large scale, simultaneously the secondary disaster behind landslide is caused in hi-line Louis, and danger can not be ignored.Therefore, comprehensively monitoring is set up to the electric force pole tower through sliding mass, early warning system has great significance to the safety of electrical network, stable operation.
Utility model content
The purpose of this utility model is to overcome the deficiencies in the prior art, provides a kind of shaft tower landslide automatic monitoring device, to set up comprehensive monitoring, early warning system to the electric force pole tower through sliding mass, ensures the safety of electrical network, stable operation.
The utility model is achieved through the following technical solutions:
A kind of shaft tower landslide automatic monitoring device, comprise data acquisition unit, and connected GPRS unit, deviational survey sensor, rain gage, temperature-humidity monitoring unit, wireless data transceiving unit, wherein: GPRS unit, deviational survey sensor and udometric signal output part are connected to a signal input part of data acquisition unit by the communication bus meeting RS485 agreement, the signal output part of temperature-humidity monitoring unit is connected to another signal input part of data acquisition unit, the signal output part of data acquisition unit is connected to the signal receiving end of wireless data transceiving unit, signal is sent to outside Surveillance center by the signal transmitting terminal of wireless data transceiving unit.
Described data acquisition unit is for be made up of MSP430 chip and peripheral circuit thereof.
Described deviational survey sensor is no longer embedded in subsurface, and is mounted on electric force pole tower, more accurately reflects the degree of tilt of shaft tower.
Described temperature-humidity monitoring unit is a kind of Temperature Humidity Sensor.
Described data acquisition unit, GPRS unit, inclination monitoring unit, rainfall monitoring unit, temperature-humidity monitoring unit and wireless data transceiving unit are all powered by solar storage battery.
The utility model has the following advantages compared to existing technology: the utility model provides a kind of shaft tower landslide automatic monitoring device, the automatic monitoring that this device can provide landslide to be out of shape, provide the automatic monitoring of shaft tower degree of tilt and automatic monitoring to sliding mass environmental change is provided, outer monitoring center is analyzed according to monitoring result sliding mass is abnormal and realizes intelligent early-warning, ensure that the safety of electrical network, stable operation.
Accompanying drawing explanation
Fig. 1 is the circuit structure block diagram of shaft tower landslide automatic monitoring device;
Fig. 2 is the circuit structure schematic diagram of data acquisition unit;
Fig. 3 is the circuit structure schematic diagram of RS485 interface circuit;
Fig. 4 is the circuit structure schematic diagram of RS485 communicating circuit;
Fig. 5 is the circuit structure schematic diagram of deviational survey sensor;
Fig. 6 is udometric circuit structure schematic diagram;
Fig. 7 is the circuit structure schematic diagram of temperature-humidity monitoring unit;
Fig. 8 is the circuit structure schematic diagram of wireless data transceiving unit.
Embodiment
Below embodiment of the present utility model is elaborated; the present embodiment is implemented under premised on technical solutions of the utility model; give detailed embodiment and concrete operating process, but protection domain of the present utility model is not limited to following embodiment.
Embodiment 1
Present embodiments provide a kind of shaft tower landslide automatic monitoring device, there is the structure as Fig. 1 ~ 8, comprise data acquisition unit, and connected GPRS unit, deviational survey sensor, rain gage, temperature-humidity monitoring unit, wireless data transceiving unit, wherein: GPRS unit, deviational survey sensor and udometric signal output part are connected to a signal input part of data acquisition unit by the communication bus meeting RS485 agreement, the signal output part of temperature-humidity monitoring unit is connected to another signal input part of data acquisition unit, the signal output part of data acquisition unit is connected to the signal receiving end of wireless data transceiving unit, signal is sent to outside Surveillance center by the signal transmitting terminal of wireless data transceiving unit.
As shown in Figure 2, described data acquisition unit is for be made up of MSP430 chip and peripheral circuit thereof.
As shown in Figure 3,4, the communication bus of the described RS485 of meeting agreement comprises RS485 interface circuit and RS485 communicating circuit, RS485 interface circuit comprises first input end A1, B1, the second input end A2, B2, the 3rd input end A3, B3 and signal output part A, a B, signal output part A, B of RS485 interface circuit are connected to signal input part A, B of RS485 communicating circuit respectively, and signal output part RXD1, TXD1 of RS485 communicating circuit are connected to RXD1, TXD1 port of MSP430 chip respectively.
Signal output part A1, B1 of described GPRS unit are connected to first input end A1, B1 of RS485 interface circuit respectively.
As shown in Figure 5, the model of described deviational survey sensor is YH50100AH, and produced by Hunan, Hunan milky way sensing Science and Technology Ltd., its signal output part A2, B2 are connected to second input end A2, B2 of RS485 interface circuit respectively.YH50100AH is a kind of high intelligent pulley-type tiltmeter, belongs to acceleration of gravity type tiltmeter, can measure the component of terrestrial gravitation on direction of measurement, be located on shaft tower by this tiltmeter, more accurately can reflect the degree of tilt of shaft tower; By deviational survey sensor and the coupling of GPRS unit, can monitor the absolute displacement of sliding mass and the angle of inclination of shaft tower, the absolute position avoiding occurring shaft tower during landslide is among a small circle constant simultaneously, but the situation of shaft tower knockdown.
As shown in Figure 6, described rainfall counts the tipping-bucket rain-gauge that model is JD-01, and produced by water utilities Science and Technology Ltd. of Victory-idea of Xuzhou City, its signal output part A3, B3 are connected to the 3rd input end A3, B3 of RS485 interface circuit respectively.
As shown in Figure 7, described temperature-humidity monitoring unit is a kind of Temperature Humidity Sensor, this Temperature Humidity Sensor is a kind of AM2302 type digital hygro sensor, and produced by You Zhun measuring and controlling equipment company limited of Shenzhen, its signal output part TEMP is connected to the TEMP port of MSP430 chip.
As shown in Figure 8, the signal receiving end nIRQ of described wireless data transceiving unit connects the nIRQ port of MSP430 chip, for the signal of receiving radio data collecting unit, and by wireless transmission, signal is sent to outside Surveillance center.
Described data acquisition unit, GPRS unit, inclination monitoring unit, rainfall monitoring unit, temperature-humidity monitoring unit and wireless data transceiving unit are all powered by solar storage battery.

Claims (5)

1. a shaft tower landslide automatic monitoring device, it is characterized in that, comprise data acquisition unit, and connected GPRS unit, deviational survey sensor, rain gage, temperature-humidity monitoring unit, wireless data transceiving unit, wherein: GPRS unit, deviational survey sensor and udometric signal output part are connected to a signal input part of data acquisition unit by the communication bus meeting RS485 agreement, the signal output part of temperature-humidity monitoring unit is connected to another signal input part of data acquisition unit, the signal output part of data acquisition unit is connected to the signal receiving end of wireless data transceiving unit, signal is sent to outside Surveillance center by the signal transmitting terminal of wireless data transceiving unit.
2. a kind of shaft tower landslide according to claim 1 automatic monitoring device, it is characterized in that, described data acquisition unit is for be made up of MSP430 chip and peripheral circuit thereof.
3. a kind of shaft tower landslide according to claim 1 automatic monitoring device, it is characterized in that, described deviational survey sensor is arranged on electric force pole tower.
4. a kind of shaft tower landslide according to claim 1 automatic monitoring device, it is characterized in that, described temperature-humidity monitoring unit is a kind of Temperature Humidity Sensor.
5. a kind of shaft tower landslide according to claim 1 automatic monitoring device, it is characterized in that, described data acquisition unit, GPRS unit, inclination monitoring unit, rainfall monitoring unit, temperature-humidity monitoring unit and wireless data transceiving unit are all powered by solar storage battery.
CN201520602794.9U 2015-08-10 2015-08-10 Automatic monitoring devices of shaft tower mountain landslide Expired - Fee Related CN204926420U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520602794.9U CN204926420U (en) 2015-08-10 2015-08-10 Automatic monitoring devices of shaft tower mountain landslide

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520602794.9U CN204926420U (en) 2015-08-10 2015-08-10 Automatic monitoring devices of shaft tower mountain landslide

Publications (1)

Publication Number Publication Date
CN204926420U true CN204926420U (en) 2015-12-30

Family

ID=54975529

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520602794.9U Expired - Fee Related CN204926420U (en) 2015-08-10 2015-08-10 Automatic monitoring devices of shaft tower mountain landslide

Country Status (1)

Country Link
CN (1) CN204926420U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108711272A (en) * 2018-05-28 2018-10-26 上海理工大学 A kind of object based on NB-IoT topples early warning system
CN110793637A (en) * 2019-10-31 2020-02-14 中国地质大学(武汉) Landslide model multi-physical-field space-time change monitoring system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108711272A (en) * 2018-05-28 2018-10-26 上海理工大学 A kind of object based on NB-IoT topples early warning system
CN110793637A (en) * 2019-10-31 2020-02-14 中国地质大学(武汉) Landslide model multi-physical-field space-time change monitoring system

Similar Documents

Publication Publication Date Title
CN101493680B (en) Gangue stock digitalization safety monitoring system, method and device
CN201917812U (en) Iron tower state detecting system based on wireless network technology
CN201203463Y (en) Powerline ice-covering weight and thickness on-line monitoring system
CN104422480A (en) Power transmission line online monitoring circuit and intelligent insulator suspension ring
CN202372837U (en) Intelligent hydrological monitoring device
CN203350459U (en) A quick reporting instrument for ground motion parameters
CN101118687A (en) System and method for real time remote wireless monitoring slope landslide
CN103542893A (en) Integrated landslide monitoring sensor
CN205121825U (en) Tailing storehouse safety monitoring system
CN202331181U (en) Frozen-thawed ring monitoring system for plateau frozen earth tunnel
CN103512621A (en) Environment monitoring method and system
Honghui et al. Research of the hardware architecture of the geohazards monitoring and early warning system based on the IoT
CN202853690U (en) Automatic well water level and water temperature detector
CN201335887Y (en) Multi-parameter collecting transmission instrument of geological disasters
CN204926420U (en) Automatic monitoring devices of shaft tower mountain landslide
CN204168005U (en) A kind of power grid security risk evaluating system
CN201594146U (en) Automatic snowfall monitoring device
CN204168004U (en) A kind of power grid security risk monitoring and control system
CN201819686U (en) Hydrology monitoring device
CN206399414U (en) One kind is based on GPRS power transmission line line pole tower tilt detection systems
CN210324548U (en) Landslide disaster remote monitoring system
CN203809053U (en) Novel mine water disaster monitoring and early warning system
CN203630917U (en) Multimode remote monitoring and warning system for mud-rock flow
CN206312338U (en) Transmission tower side slope and groundwork detection prior-warning device
CN203178766U (en) Intelligent power station geological disaster early warning monitoring device based on IOT technology

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

Granted publication date: 20151230

Termination date: 20160810

CF01 Termination of patent right due to non-payment of annual fee