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Inclination monitoring device and method

A monitoring device and laser ranging technology, which is applied in the direction of measuring device, measuring inclination, mapping and navigation, etc., can solve the problems of high labor intensity and inability to realize real-time detection and prediction of the object to be measured.

Pending Publication Date: 2019-08-23
西安超越智能科技有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the theodolite point projection method and the horizontal angle measurement method require manual participation in the measurement, which is labor-intensive; in addition, it cannot realize real-time detection and prediction of the object to be measured

Method used

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  • Inclination monitoring device and method
  • Inclination monitoring device and method

Examples

Experimental program
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Embodiment Construction

[0098] Such as figure 1 and figure 2 A tilt monitoring device shown includes a frame and a laser detection device installed on the frame, the frame includes a tripod, a movable sleeve mechanism installed on the top of the tripod and installed on the The carrying case 3 on the top of the movable sleeve mechanism, the laser detection device includes a first laser ranging sensor 11, a second laser ranging sensor 12 and a third laser ranging sensor 13 arranged on a side of the carrying case 3, so that The first laser rangefinder 11, the second laser rangefinder 12 and the third laser rangefinder 13 are arranged in an equilateral triangle, and the connecting line of the first laser rangefinder 11 and the second laser rangefinder 12 emission centers Parallel to the bottom edge of one side of the carrying case 3;

[0099] The carrying case 3 is provided with an electronic circuit board, the electronic circuit board is integrated with a microprocessor 17 and an inclination sensor 4...

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PUM

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Abstract

The invention discloses an inclination monitoring device and method. The device comprises a rack and a laser detection device, the rack comprises a triangular support, a movable sleeve mechanism and acarrying case, the laser detection device comprises a first laser ranging sensor, a second laser ranging sensor and a third laser ranging sensor, an electronic circuit board is arranged in the carrying case, and the electronic circuit board is integrated with a microprocessor, an inclination angle sensor and a power supply module. The method comprises the following steps: firstly mounting the monitoring device and establishing a space coordinate system; secondly, detecting an inclination angle of a to-be-detected object; thirdly, acquiring an error in the inclination angle of the to-be-detected object; and fourthly, compensating an inclination condition of the to-be-detected object. The device and the method are reasonable in design and accurate and convenient in detection, both time andlabor are saved, expense is low, inclination angles of a building, structures and a slope are acquired, and real-time monitoring is realized, so that prediction is timely provided, and control measures can be conveniently adopted.

Description

technical field [0001] The invention belongs to the technical field of geotechnical engineering testing, and in particular relates to an inclination monitoring device and method. Background technique [0002] The deformation of buildings, structures and slopes will cause huge losses to people's lives and property, and seriously disrupt people's normal life order. Therefore, oblique deformation is very important in engineering measurement. If we effectively monitor the slope deformation of buildings, structures and slopes before accidents, we can make predictions and prevent them, so as to ensure the safety of people's lives and property. At present, the monitoring methods for the oblique deformation of buildings, structures and slopes are as follows: [0003] First, using the theodolite projection method, it is necessary to lay an observation mark at the bottom of the object to be measured, and then use a precision angle measuring instrument (theodolite or total station) t...

Claims

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Application Information

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IPC IPC(8): G01C9/06G01C9/02F16M11/24F16M11/28
CPCG01C9/06G01C9/02F16M11/242F16M11/28G01C2009/066
Inventor 翟越高甲艳李艳侯亚楠屈璐孟凡东李宇白刘旭阳
Owner 西安超越智能科技有限公司
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