IP Library Granted Patent US 12682567
Granted Patent B2
US 12682567 · App. 18/565,606 · Granted Jul 14, 2026

System and method for monitoring three-dimensional location-based worker safety management

Inventor: Won Ki Seo (Seongnam-si, KR)
Assignee: NEXTCORE TECHNOLOGY CO., LTD.
G06T17/05G06Q10/063114
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Quick Facts
Patent No.
US 12682567
App. No.
18/565,606
Granted
Jul 14, 2026
Kind
B2
Abstract

The present invention relates to a system and method for monitoring three-dimensional (3D) location-based worker safety management capable of implementing a work site as a 3D model in a virtual space, allowing an icon, which can display a real-time location of a worker, to be directly registered through a worker terminal, and allowing a manager to monitor an entire work status of the work site at a glance in real time based on various types of sensing information acquired through sensing equipment at the actual work site as well as a work progress status and a location of the worker.

Claims (22)

1 . A system for monitoring three-dimensional (3D) location-based worker safety management, comprising:

a 3D model generation unit ( 110 ) that generates a 3D model by reflecting a structure of an actual work site and an arrangement status of sensing equipment on a coordinate system in a virtual space and then provides the generated 3D model to worker terminals and manager terminals;

a work information reflection unit ( 120 ) that generates icons for each worker terminal and then arranges the generated icons at locations selected by each worker terminal on the 3D model, matches work information input to each worker terminal with the icons and reflects the matched work information on the 3D model, and reflects sensing information acquired through the sensing equipment of the actual work site in the sensing equipment on the 3D model; and

a monitoring information providing unit ( 130 ) that provides entire work status information reflected on the 3D model and work information for each icon reflected on the 3D model to the manager terminal to allow the manager terminal to monitor an entire work site,

wherein the work information reflection unit ( 120 ) first arranges the generated icons at the locations selected by each worker terminal and then stores 3D coordinate values of the icons, and the work information reflection unit ( 120 ) verifies the location selected by the worker terminal by comparing confirmed global positioning system (GPS) location information with the stored 3D coordinate values corresponding to the worker terminal in case of the worker terminal where the GPS location information is confirmed, and verifies the location selected by the worker terminal based on whether a motion of a worker is actually detected by a passive infrared (PIR) sensor disposed at the location when it is confirmed that the PIR sensor is disposed at the location selected by the worker terminal, and

wherein the work information reflection unit ( 120 ) first arranges the generated icons at the locations selected by each worker terminal and then stores the 3D coordinate values of the icons, and double verifies the location selected by the worker terminal by comparing primarily confirmed GPS location information with the stored 3D coordinates corresponding to the worker terminal and then secondarily confirming whether the motion of the worker is actually detected by the PIR sensor disposed at the location when it is confirmed that the PIR sensor is disposed at the location selected by the worker terminal while the GPS location information of the worker terminal is confirmed.

2 . The system of claim 1 , wherein when the location in the virtual space of the 3D model output to the worker terminal or the manager terminal is changed by an operation of a worker or manager, the 3D model generation unit ( 110 ) changes locations and 3D coordinate values of the arranged icons through the work information reflection unit ( 120 ) to correspond to the changed coordinate values of the 3D model.

3 . The system of claim 1 , wherein the work information reflection unit ( 120 ) reflects the sensing information, which includes temperature by work location sensed by a temperature sensor, photographing data by work location captured by photographing means, gas leakage information by work location measured by a gas meter, vibration generation information by work location sensed by a vibration sensor, and noise generation information by work location measured by a noise meter, in the sensing equipment on the 3D model.

4 . The system of claim 3 , wherein the work information reflection unit ( 120 ) analyzes patterns of temperature change, gas leakage change, vibration generation change, and noise generation change by each work location based on the sensing information, generates expected scenario data for temperature change trend, gas leakage trend, vibration generation trend, and noise generation trend by each work location based on the analyzed patterns, and determines expected risk levels for each work location based on the generated expected scenario data and provides the determined expected risk level to the monitoring information providing unit ( 130 ).

5 . The system of claim 4 , wherein the work information reflection unit ( 120 ) generates the expected scenario data, and reflects results of analyzing a correlation between a temperature change frequency and a temperature change amount, a gas leakage frequency and a gas leakage amount, a vibration generation frequency and a vibration generation amount, and a noise generation frequency and a noise generation amount by work location in the expected scenario data.

6 . The system of claim 4 , wherein the monitoring information providing unit ( 130 ) separately displays all work locations for each risk grade through a screen of the manager terminal by classifying all the work locations reflected on the 3D model into multiple risk levels based on the expected risk levels for each work location provided through the work information reflection unit ( 120 ).

7 . A system for monitoring three-dimensional (3D) location-based worker safety management, comprising:

a 3D model generation unit ( 110 ) that generates a 3D model by reflecting a structure of an actual work site and an arrangement status of sensing equipment on a coordinate system in a virtual space and then provides the generated 3D model to worker terminals and manager terminals;

a work information reflection unit ( 120 ) that generates icons for each worker terminal and then arranges the generated icons at locations selected by each worker terminal on the 3D model, matches work information input to each worker terminal with the icons and reflects the matched work information on the 3D model, and reflects sensing information acquired through the sensing equipment of the actual work site in the sensing equipment on the 3D model; and

a monitoring information providing unit ( 130 ) that provides entire work status information reflected on the 3D model and work information for each icon reflected on the 3D model to the manager terminal to allow the manager terminal to monitor an entire work site,

wherein the monitoring information providing unit ( 130 ) classifies and stores icon arrangement details information and arrangement history information arranged by each user terminal, input details information and input history information of the work information input through each worker terminal, matching details information and matching history information in which the input work information matches the icon, and sensing details information and sensing history information for each sensing information obtained through the sensing equipment, and then provides the classified and stored information to the manager terminal.

8 . A method of monitoring three-dimensional (3D) location-based worker safety management, comprising:

generating, by through a 3D model generation unit ( 110 ), a 3D model by reflecting a structure of an actual work site and an arrangement status of sensing equipment on a coordinate system in a virtual space and then providing the generated 3D model to worker terminals and manager terminals;

generating, by a work information reflection unit ( 120 ), icons for each worker terminal and then arranging the generated icons at locations selected by each worker terminal on the 3D model, matching work information input to each worker terminal with the icons and reflecting the matched work information on the 3D model, and reflecting sensing information acquired through the sensing equipment of the actual work site in the sensing equipment on the 3D model; and

providing, by a monitoring information providing unit ( 130 ), entire work status information reflected on the 3D model and work information for each icon reflected on the 3D model to the manager terminal to allow the manager terminal to monitor an entire work site,

wherein the work information reflection unit ( 120 ) first arranges the generated icons at the locations selected by each worker terminal and then stores 3D coordinate values of the icons, and the work information reflection unit ( 120 ) verifies the location selected by the worker terminal by comparing confirmed global positioning system (GPS) location information with the stored 3D coordinate values corresponding to the worker terminal in case of the worker terminal where the GPS location information is confirmed, and verifies the location selected by the worker terminal based on whether a motion of a worker is actually detected by a passive infrared (PIR) sensor disposed at the location when it is confirmed that the PIR sensor is disposed at the location selected by the worker terminal, and

wherein the work information reflection unit ( 120 ) first arranges the generated icons at the locations selected by each worker terminal and then stores the 3D coordinate values of the icons, and double verifies the location selected by the worker terminal by comparing primarily confirmed GPS location information with the stored 3D coordinates corresponding to the worker terminal and then secondarily confirming whether the motion of the worker is actually detected by the PIR sensor disposed at the location when it is confirmed that the PIR sensor is disposed at the location selected by the worker terminal while the GPS location information of the worker terminal is confirmed.