CN103148972B - A kind of intelligent wireless pulling force on-line monitoring system - Google Patents

A kind of intelligent wireless pulling force on-line monitoring system Download PDF

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Publication number
CN103148972B
CN103148972B CN201310056123.2A CN201310056123A CN103148972B CN 103148972 B CN103148972 B CN 103148972B CN 201310056123 A CN201310056123 A CN 201310056123A CN 103148972 B CN103148972 B CN 103148972B
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dynamometer
anemometer
tension
compression sensor
bracing wire
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CN103148972A (en
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李鑫
陈薇
陈梅
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Hefei Wogong Electric Automation Co ltd
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Abstract

A kind of intelligent wireless pulling force on-line monitoring system, it relates to sensor field, survey inclinator and high-altitude video frequency pick-up head are arranged on bracing frame, and high-altitude video frequency pick-up head is arranged on the top surveying inclinator, anemometer is arranged on the top of bracing frame, the surrounding of anemometer is provided with several swing rope, the upper end of swing rope is provided with bracing wire dynamometer, the lower end of swing rope is provided with suspension ring dynamometer, bracing wire dynamometer and suspension ring dynamometer all with tension-compression sensor wireless connections, be provided with the ergographic bearing rope of bracing wire to be connected with travelling block car group, travelling block car group is connected with anemometer; Wireless telecommunications supervisor is all connected with acquisition layer with upper monitoring machine.It can be overall the external environment condition of system of solutions tower and implementation process, reduction group founds the security risk in steel tower construction, stopped the generation of unsafe factor.

Description

A kind of intelligent wireless pulling force on-line monitoring system
Technical field:
The present invention relates to sensor field, be specifically related to a kind of intelligent wireless pulling force on-line monitoring system.
Background technology:
Sensor is a kind of pick-up unit, measured information can be experienced, and can will detect the information experienced, the information being for conversion into electric signal or other desired forms according to certain rules exports, to meet the requirements such as the transmission of information, process, storage, display, record and control, it is the primary link realizing automatically detecting and automatically controlling.
Power transmission sequence group tower Poling Construction is the work, particularly hoisting operation of high security risk.Transfinite because of indivedual stress point or the pocket card increase pulling force that meets accident in lifting process, cause the situation of security incident to occur repeatedly, it causes a large amount of personnel and property loss.
At present, the method that prevention group vertical rod tower accident occurs has:
1, adopt different pole group tower modes based on theory calculate according to different landform, implement based on previous experiences field control group tower.Although can some problems be solved, for the engineering be pressed for time, quality requirements is high, for want of scientific, often cause the waste of human and material resources, sometimes even cause the accident.
2, THREE DIMENSION GEOMETRIC MODELING, computer graphical processing software is adopted, the movement locus of simulation tower erection.Although this kind of method can obtain organizing cube case preferably by comparing, in actual implementation process, the generation of accident still cannot be avoided.
Adopt pulling force sensor to measure real-time rope pull, send value of thrust in real time by wireless transport module, hand-held set will accept wireless signal and show value of thrust.Although the pulling force of rope can be shown in real time, the normal operation of guarantee group tower work, because hand-held set and pulling force sensor are man-to-man mode of operations, and the many and dispersion of stress point, cannot be comprehensive the overall loading process of system of solutions tower.
Summary of the invention:
The object of this invention is to provide a kind of intelligent wireless pulling force on-line monitoring system, it is by high-altitude video monitoring, the security monitoring of each stress point value of thrust, in real time measuring wind speed, pole angle of bank measurement, the external environment condition of overall system of solutions tower and implementation process, reduction group founds the security risk in steel tower construction, has stopped the generation of unsafe factor.
In order to solve the problem existing for background technology, the present invention is by the following technical solutions: it comprises acquisition layer, transport layer and administration and supervision authorities; Acquisition layer comprises tension-compression sensor 10, bracing frame 11, anemometer 12, swing rope 13, bracing wire dynamometer 14, suspension ring dynamometer 15, surveys inclinator 16, travelling block car group 17, bearing rope 18 and high-altitude video frequency pick-up head 19; Survey inclinator 16 and high-altitude video frequency pick-up head 19 are arranged on bracing frame 11, and high-altitude video frequency pick-up head 19 is arranged on the top surveying inclinator 16, anemometer 12 is arranged on the top of bracing frame 11, the surrounding of anemometer 12 is provided with several swing rope 13, the upper end of swing rope 13 is provided with bracing wire dynamometer 14, the lower end of swing rope 13 is provided with suspension ring dynamometer 15, bracing wire dynamometer 14 and suspension ring dynamometer 15 all with tension-compression sensor 10 wireless connections, the bearing rope 18 being provided with bracing wire dynamometer 14 is connected with travelling block car group 17, and travelling block car group 17 is connected with anemometer 12; Transport layer comprises wireless telecommunications supervisor, and administration and supervision authorities include upper monitoring machine, and wireless telecommunications supervisor is all connected with acquisition layer with upper monitoring machine.
Described tension-compression sensor 10 is made up of tension-compression sensor body 1, controller 2 and battery 3, battery 3 is arranged on the U-type groove base plate of tension-compression sensor body 1 side, and be bolted, controller 2 is fixedly installed on the opposite side of tension-compression sensor body 1, controller 2 is provided with power switch 4 and battery aviation plug 5, the upper end of controller 2 is provided with antenna 6, is provided with TD-Scan software 7 in controller 2.
Described acquisition layer primary responsibility obtains the real time data of tower safety monitoring.
Described transport layer is responsible for collecting tower safety monitoring data, line number of going forward side by side Data preprocess (as collection, powered-down automatically, arranging stressed and wind speed classification warning light work).
Described wireless telecommunications supervisor includes embedded TD-SCAN software, collects data and timing storage.
Described administration and supervision authorities are responsible for upper monitoring function, the display of real-time curve, history curve, the preservation of real-time form, history report is also monitored ground in tower erection process and high-altitude construction operation and preserves image data, retains data for organizing tower work later.
The present invention is by high-altitude video monitoring, the security monitoring of each stress point value of thrust, in real time measuring wind speed, pole angle of bank measurement, the external environment condition of overall system of solutions tower and implementation process, reduction group founds the security risk in steel tower construction, has stopped the generation of unsafe factor.
Accompanying drawing illustrates:
Fig. 1 is structural representation of the present invention;
Fig. 2 is the structural representation of tension-compression sensor 10 in the present invention;
Fig. 3 is the vertical view of Fig. 2;
Fig. 4 is the operation step map of TD-Scan software 7 in the present invention.
Embodiment:
Referring to figs. 1 through Fig. 4, this is specifically implemented by the following technical solutions: it comprises acquisition layer, transport layer and administration and supervision authorities; Acquisition layer comprises tension-compression sensor 10, bracing frame 11, anemometer 12, swing rope 13, bracing wire dynamometer 14, suspension ring dynamometer 15, surveys inclinator 16, travelling block car group 17, bearing rope 18 and high-altitude video frequency pick-up head 19; Survey inclinator 16 and high-altitude video frequency pick-up head 19 are arranged on bracing frame 11, and high-altitude video frequency pick-up head 19 is arranged on the top surveying inclinator 16, anemometer 12 is arranged on the top of bracing frame 11, the surrounding of anemometer 12 is provided with several swing rope 13, the upper end of swing rope 13 is provided with bracing wire dynamometer 14, the lower end of swing rope 13 is provided with suspension ring dynamometer 15, bracing wire dynamometer 14 and suspension ring dynamometer 15 all with tension-compression sensor 10 wireless connections, the bearing rope 18 being provided with bracing wire dynamometer 14 is connected with travelling block car group 17, and travelling block car group 17 is connected with anemometer 12; Transport layer comprises wireless telecommunications supervisor, and administration and supervision authorities include upper monitoring machine, and wireless telecommunications supervisor is all connected with acquisition layer with upper monitoring machine.
Described tension-compression sensor 10 is made up of tension-compression sensor body 1, controller 2 and battery 3, battery 3 is arranged on the U-type groove base plate of tension-compression sensor body 1 side, and be bolted, controller 2 is fixedly installed on the opposite side of tension-compression sensor body 1, controller 2 is provided with power switch 4 and battery aviation plug 5, the upper end of controller 2 is provided with antenna 6, is provided with TD-Scan software 7 in controller 2.
The operation steps of described TD-Scan software 7 is as follows:
A, the software icon 8 double-clicked on desktop, display command menu 9 on desktop, command menu 9 comprises that alarming value arranges 91, installs signal 92, data sheet 93, demarcate 94, Modify password 95, after sale service 96 and exit 97;
B, click alarming value and arrange 91, enter input operation cryptographic interface 911, click " determination " button after input password and enter alarm limits interface 912 is set, be provided with rear click " preservation " button, then click the Back button and turn back to command menu 9;
C, click and signal 92 is installed, enter and signal interface 921 is installed, check the installation site schematic diagram of 11 smart machines, then click the Back button and turn back to command menu 9;
D, click data form 93, enter data sheet interface 931, check current and data record that is history, click " retrieval " button, click " derived record " button after search complete, click the Back button again after after data to be exported success and turn back to command menu 9;
E, click demarcation 94, enter and demarcate prompting interface 941, according to instruction proper operation, complete the demarcation of sensor, click " confirmation " button, enter password authentification interface 942, click " determination " button after input proper password and enter calibration interface 943, click after demarcation completes " demarcation " button, then click the Back button and turn back to command menu 9;
F, click Modify password 95, enter Modify password interface 951, inputted rear click and " determined " button, then click the Back button and turn back to command menu 9;
G, click after sale service 96, enter after sale service interface 961, inquired about rear click the Back button and turned back to command menu 9;
H, rearmost point beat back out 97, can exit TD-Scan software 7 and return software icon 8 on desktop.
Described administration and supervision authorities are responsible for upper monitoring function, the display of real-time curve, history curve, the preservation of real-time form, history report is also monitored ground in tower erection process and high-altitude construction operation and preserves image data, retains data for organizing tower work later.
This concrete enforcement is by high-altitude video monitoring, the security monitoring of each stress point value of thrust, in real time measuring wind speed, pole angle of bank measurement, the external environment condition of overall system of solutions tower and implementation process, reduction group founds the security risk in steel tower construction, has stopped the generation of unsafe factor.

Claims (1)

1. an intelligent wireless pulling force on-line monitoring system, it comprises acquisition layer, transport layer and administration and supervision authorities, transport layer comprises wireless telecommunications supervisor, administration and supervision authorities include upper monitoring machine, wireless telecommunications supervisor is all connected with acquisition layer with upper monitoring machine, acquisition layer comprises tension-compression sensor (10), bracing frame (11), anemometer (12), swing rope (13), bracing wire dynamometer (14), suspension ring dynamometer (15), survey inclinator (16), travelling block car group (17), bearing rope (18) and high-altitude video frequency pick-up head (19), survey inclinator (16) and high-altitude video frequency pick-up head (19) are arranged on bracing frame (11), and high-altitude video frequency pick-up head (19) is arranged on the top surveying inclinator (16), anemometer (12) is arranged on the top of bracing frame (11), the surrounding of anemometer (12) is provided with several swing rope (13), the upper end of swing rope (13) is provided with bracing wire dynamometer (14), the lower end of swing rope (13) is provided with suspension ring dynamometer (15), it is characterized in that: bracing wire dynamometer (14) and suspension ring dynamometer (15) all with tension-compression sensor (10) wireless connections, the bearing rope (18) being provided with bracing wire dynamometer (14) is connected with travelling block car group (17), travelling block car group (17) is connected with anemometer (12), described tension-compression sensor (10) is by tension-compression sensor body (1), controller (2) and battery (3) composition, battery (3) is arranged on the U-type groove base plate of tension-compression sensor body (1) side, and be bolted, controller (2) is fixedly installed on the opposite side of tension-compression sensor body (1), controller (2) is provided with power switch (4) and battery aviation plug (5), the upper end of controller (2) is provided with antenna (6), TD-Scan software (7) is provided with in controller (2), described administration and supervision authorities are responsible for upper monitoring function, real-time curve, the display of history curve, real-time form, the preservation of history report, and ground in tower erection process and high-altitude construction operation are monitored and preserved image data, data is retained for organizing tower work later.
CN201310056123.2A 2013-02-21 2013-02-21 A kind of intelligent wireless pulling force on-line monitoring system Active CN103148972B (en)

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CN103148972B true CN103148972B (en) 2016-04-13

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Publication number Priority date Publication date Assignee Title
CN113607129B (en) * 2021-07-28 2023-03-31 三峡大学 Method and system for measuring and calculating gradient threshold of suspension holding pole in real time

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101556195A (en) * 2009-03-26 2009-10-14 杭州海康雷鸟信息技术有限公司 Real-time monitoring method of ice coated on overhead transmission line conductor and system
CN101852009A (en) * 2010-05-18 2010-10-06 桂林电子科技大学 Monitoring system of guide-rail attached lifting scaffold
CN101989767A (en) * 2010-10-13 2011-03-23 中电国科(北京)科技有限公司 Comprehensive measuring and controlling device of high voltage pole tower
CN202694078U (en) * 2012-07-02 2013-01-23 国家电网公司交流建设分公司 Whole-course monitoring system for suspended pole tower assembling
CN203132755U (en) * 2013-02-21 2013-08-14 李鑫 Wireless intelligent online pull-monitoring system

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101556195A (en) * 2009-03-26 2009-10-14 杭州海康雷鸟信息技术有限公司 Real-time monitoring method of ice coated on overhead transmission line conductor and system
CN101852009A (en) * 2010-05-18 2010-10-06 桂林电子科技大学 Monitoring system of guide-rail attached lifting scaffold
CN101989767A (en) * 2010-10-13 2011-03-23 中电国科(北京)科技有限公司 Comprehensive measuring and controlling device of high voltage pole tower
CN202694078U (en) * 2012-07-02 2013-01-23 国家电网公司交流建设分公司 Whole-course monitoring system for suspended pole tower assembling
CN203132755U (en) * 2013-02-21 2013-08-14 李鑫 Wireless intelligent online pull-monitoring system

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Effective date of registration: 20160816

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Patentee after: HEFEI WOGONG ELECTRIC AUTOMATION Co.,Ltd.

Address before: Tunxi road in Baohe District of Hefei city in Anhui province 230011 193-151-213

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Address after: 422800 Shaodong province Shaoyang County Ecological Industrial Park, East Renmin Road, No. 7

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