CN207163434U - A kind of real-time security on-Line Monitor Device of high-altitude plank road - Google Patents

A kind of real-time security on-Line Monitor Device of high-altitude plank road Download PDF

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Publication number
CN207163434U
CN207163434U CN201721407200.4U CN201721407200U CN207163434U CN 207163434 U CN207163434 U CN 207163434U CN 201721407200 U CN201721407200 U CN 201721407200U CN 207163434 U CN207163434 U CN 207163434U
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China
Prior art keywords
module
plank road
wireless network
processing
digital sampling
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Expired - Fee Related
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CN201721407200.4U
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Chinese (zh)
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王成宇
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Individual
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Individual
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Priority to CN201721407200.4U priority Critical patent/CN207163434U/en
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Publication of CN207163434U publication Critical patent/CN207163434U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

A kind of real-time security on-Line Monitor Device of high-altitude plank road, including wireless network module, wireless router, cloud server and multiple deformation data harvesters, each deformation data harvester includes an obliquity sensor and a digital sampling and processing for being arranged on plank road cantilever beam outermost end bottom, wireless router is connected networking with wireless network module and cloud server by wireless signal respectively, wireless network module, digital sampling and processing are connected by CAN, and digital sampling and processing communicates to connect with obliquity sensor 485;Obliquity sensor senses the angle angle value between plank road cantilever beam and horizontal X axle, angle angle change value under normality and stress is converted into the deformation distance of plank road cantilever beam according to trigonometric function, as the data source remote transmission of real-time monitoring and early warning to cloud server, the online access of remote terminal is realized by internet, realizes real time on-line monitoring and automatic alarm.

Description

A kind of real-time security on-Line Monitor Device of high-altitude plank road
Technical field
The utility model belongs to plank road deformation monitoring technical field, especially with a kind of real-time security on-line monitoring of high-altitude plank road Device is relevant.
Background technology
High-altitude plank road(Including glass plank road)Can be that visitor brings fabulous experience and pleasing landscape, therefore Into the focus of tour itineraries construction in recent years.Current high-altitude plank road is supported using cantilever beam structure, often high and steep along steep cliff Wall is built, and not only builds difficulty height, and the strong point is also less, therefore cave-in accident once occurs, it will causes huge people Member's injures and deaths.But domestic high-altitude plank road is both without unified construction criteria, also without unified safety standard, and all stacks Road all ensures the personal safety of visitor without real-time safety monitoring system.After plank road is built up, unless naked eyes it is visible walk Shape, otherwise never grasp the stress and tilt condition of plank road.
Utility model content
The purpose of this utility model aims to solve the problem that the defects of current high-altitude plank road does not monitor safely in real time, there is provided Yi Zhongneng The automatic real-time security on-Line Monitor Device of high-altitude plank road for monitoring and alarming is provided.
Therefore, the utility model uses following technical scheme:A kind of monitoring dress for realizing above-mentioned realtime on-line monitoring method Put, it is characterized in that, described monitoring device includes wireless network module, wireless router, cloud server and multiple texturing variables According to harvester, each deformation data harvester includes an inclination angle for being arranged on plank road cantilever beam outermost end bottom and sensed Device and a digital sampling and processing, wireless router pass through wireless signal with wireless network module and cloud server respectively Connect networking;Wireless network module includes power module, microcontroller and the WIFI module being connected with microcontroller, CAN and led to Believe module, power module is respectively microcontroller, WIFI module and CAN power supply;Digital sampling and processing includes Power module, microcontroller and the LED display module being connected with microcontroller, CAN, 485 communication modules, power supply Module is respectively microcontroller, LED display module, CAN, the power supply of 485 communication modules;Wireless network module, data The CAN of acquisition processing module is connected by CAN, and 485 communication modules of digital sampling and processing pass through number It is connected according to line with the obliquity sensor.
The utility model is hanged for detecting plank road in use, obliquity sensor is arranged on plank road cantilever beam outermost end bottom Angle angle value between arm beam and horizontal X axle.The reference direction of obliquity sensor is acceleration of gravity, and acceleration of gravity Direction is straight down, to point to the earth's core forever.The horizontal direction of plank road cantilever beam is exactly the direction of obliquity sensor chip.Work as stack When road produces downwards deformation, the angle between the direction and acceleration of gravity direction of sensor chip can have change.Inclination angle passes Sensor can detect the change of the angle.According to trigonometric function, plank road cantilever beam length is set as L, cantilever beam water during normality Flat, stress lower angle changing value is θ, deformation distance h=L* sin θs.After system electrification, sensor can monitor in real time works as Angle value between preceding plank road cantilever beam and horizontal X axle.Digital sampling and processing reads sensor by 485 buses and examined in real time What is measured works as the angle value between front standing pillar and horizontal X axle.Then, the angle-data read is analyzed and processed in real time, So that the data after processing are reliably true.The data handled well are passed to inside wireless networking using CAN head offices again, wireless network After module receives data, the head-end site that transfer data in wireless network of wireless WIFI signal can be utilized, wirelessly After head-end site receives data, data can be forwarded to router side by WIFI signal.Afterwards, data are again by routeing Device is forwarded to cloud server storage.Finally, can be to pass through terminal device(Such as computer, mobile phone)Visited by Internet High in the clouds data are asked, glass plank road cantilever beam deformation data are monitored in real time, and according to whether reach the alarm limits of setting It is automatic to realize whether alarm.Carried using the deformation distance value under the maximum static effect of setting as the lower limit of instant alarming, unloading The median of maximum permanent set distance value afterwards and the deformation distance value under maximum static effect closes unloaded shape as scenic spot Under state, some plank road cantilever beam needs to carry out the early warning lower limit of maintenance and reinforcement.
It can reach following beneficial effect using the utility model:By in the cantilever beam outer end bottom of support high-altitude plank road Mounted angle sensor detects the angle of cantilever beam and horizontal X axle to monitor the deformation of cantilever beam, will pass through nothing after data processing Amount network technology remote collection is transferred to cloud server, and realizes remote terminal online access by internet, realizes plank road The real time on-line monitoring and automatic alarm of cantilever beam deformation, ensure that the safe operation of high-altitude plank road.
Brief description of the drawings
Fig. 1 is structure principle chart of the present utility model.
Embodiment
The embodiment of the charging device to realizing the utility model method is described in detail below in conjunction with the accompanying drawings.
As shown in figure 1, the utility model includes wireless network module 3, wireless router 4, cloud server 5 and texturing variables According to harvester, deformation data harvester determines that each deformation data harvester includes according to plank road cantilever beam quantity One obliquity sensor 1 and a digital sampling and processing 2 for being arranged on plank road cantilever beam outermost end bottom, wireless router Networking is connected by wireless signal with wireless network module and cloud server respectively;Wireless network module include power module, Microcontroller and the WIFI module being connected with microcontroller, CAN, microcontroller select STM32 microcontrollers;Electricity Source module includes the 5V power circuits connected with 24 power circuits of LM2596 connections with LM1117-3.3, respectively microcontroller Device, WIFI module and CAN power supply.Digital sampling and processing includes power module, microcontroller and and micro-control LED display module, CAN, 485 communication modules of device connection processed, 24 power circuits of power module LM2596 connections The 5V power circuits connected with LM1117-3.3, respectively microcontroller, LED display module, CAN, 485 communications Module for power supply.The CAN is with the telecommunication circuit of ISO1050 connections, and 485 communication modules are with VP3082 connections Telecommunication circuit, wireless network module, the CAN of digital sampling and processing are connected by CAN, at data acquisition 485 communication modules of reason module are connected by data wire with the obliquity sensor.

Claims (1)

  1. A kind of 1. real-time security on-Line Monitor Device of high-altitude plank road, it is characterised in that:Described monitoring device includes wireless network Module, wireless router, cloud server and multiple deformation data harvesters, each deformation data harvester include one Individual obliquity sensor and a digital sampling and processing installed in plank road cantilever beam outermost end bottom, wireless router difference Networking is connected by wireless signal with wireless network module and cloud server;Wireless network module includes power module, micro-control Device processed and the WIFI module being connected with microcontroller, CAN, power module are respectively microcontroller, WIFI module Powered with CAN;Digital sampling and processing includes power module, microcontroller and is connected with microcontroller LED display module, CAN, 485 communication modules, power module are respectively that microcontroller, LED display module, CAN lead to Believe module, the power supply of 485 communication modules;Wireless network module, the CAN of digital sampling and processing pass through CAN Connection, 485 communication modules of digital sampling and processing are connected by data wire with the obliquity sensor.
CN201721407200.4U 2017-10-30 2017-10-30 A kind of real-time security on-Line Monitor Device of high-altitude plank road Expired - Fee Related CN207163434U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721407200.4U CN207163434U (en) 2017-10-30 2017-10-30 A kind of real-time security on-Line Monitor Device of high-altitude plank road

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721407200.4U CN207163434U (en) 2017-10-30 2017-10-30 A kind of real-time security on-Line Monitor Device of high-altitude plank road

Publications (1)

Publication Number Publication Date
CN207163434U true CN207163434U (en) 2018-03-30

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Application Number Title Priority Date Filing Date
CN201721407200.4U Expired - Fee Related CN207163434U (en) 2017-10-30 2017-10-30 A kind of real-time security on-Line Monitor Device of high-altitude plank road

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107664490A (en) * 2017-10-30 2018-02-06 王成宇 A kind of real-time security on-line monitoring method of high-altitude plank road and its realization device
CN110728821A (en) * 2019-10-22 2020-01-24 成都中科大旗软件股份有限公司 Real-time monitoring system for scenic spot dangerous area

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107664490A (en) * 2017-10-30 2018-02-06 王成宇 A kind of real-time security on-line monitoring method of high-altitude plank road and its realization device
CN107664490B (en) * 2017-10-30 2024-08-02 王成宇 High-altitude trestle safety real-time on-line monitoring method and implementation device thereof
CN110728821A (en) * 2019-10-22 2020-01-24 成都中科大旗软件股份有限公司 Real-time monitoring system for scenic spot dangerous area
CN110728821B (en) * 2019-10-22 2021-04-13 成都中科大旗软件股份有限公司 Real-time monitoring system for scenic spot dangerous area

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Granted publication date: 20180330