IP Library Patent Application 17720447
Patent Application
App. No. 17/720,447

METHOD AND SYSTEM FOR MAKING WORK PLAN FOR CONSTRUCTION MACHINERY

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Quick Facts
Patent No.
US None
App. No.
17/720,447
Abstract

In a method of making a work plan for construction machinery, construction site information including an orthographic image and work data are provided. A trench excavation work plan on the orthographic image is set based on the work data. The trench excavation work plan is configured to displays a work route line and a work position of construction machinery based on the work route line. The trench excavation work plan is transmitted to a worker terminal.

Claims (36)

1 . A method of making a work plan for construction machinery, the method comprising:

providing construction site information including an orthographic image and work data;

setting a trench excavation work plan on the orthographic image based on the work data, the trench excavation work plan displaying a work route line and a work position of construction machinery based on the work route line; and

transmitting the trench excavation work plan to a worker terminal.

2 . The method of claim 1 , wherein setting the trench excavation work plan includes,

setting a plurality of sequence points on the orthographic image;

setting a sequence number for each sequence point by reflecting a work sequence; and

setting the work route line by connecting the sequence points according to the sequence number.

3 . The method of claim 2 , wherein setting the trench excavation work plan further includes setting a cross-sectional shape for the sequence points.

4 . The method of claim 3 , wherein setting the cross-sectional shape includes,

setting each dimension for a bottom width, a bottom elevation, a slope inclination and top width of the cross-sectional shape; and

setting a construction tolerance range for the bottom and the slope.

5 . The method of claim 1 , wherein the orthographic image includes a reference coordinate, and the work route line and the work position of the construction machinery are set based on the reference coordinate.

6 . The method of claim 1 , wherein setting the trench excavation work plan on the orthographic image further includes displaying on a screen by overlaying an earthwork drawing on the orthographic image.

7 . The method of claim 1 , wherein setting the trench excavation work plan further includes setting a moving direction of a vehicle to load soil or a filling direction of the soil by reflecting the work position of the construction machinery.

8 . The method of claim 1 , wherein the construction machinery is an automatic excavator and the worker terminal is provided in the automatic excavator to control an operation of the automatic excavator.

9 . The method of claim 1 , wherein setting the trench excavation work plan further includes setting a manned work area or a remoted work area.

10 . A work planning system for construction machinery, the work planning system comprising:

a server configured to store construction site information including an orthographic image and work data, and including a work planning portion to set a trench excavation work plan on the orthographic image using the work data, the trench excavation work plan displaying a work route line and a work position of construction machinery based on the work route line; and

at least one worker terminal configured to receive the set trench excavation work plan from the server.

11 . The work planning system of claim 10 , wherein the work planning portion includes a planar design unit to set a plurality of sequence points having sequence numbers reflecting a work sequence on the orthographic image and to set the work route line by connecting the sequence points according to the sequence numbers.

12 . The work planning system of claim 11 , wherein the work planning portion further includes a cross-section design unit to set a cross-sectional shape of the sequence points.

13 . The work planning system of claim 12 , wherein the cross-section design unit sets each dimension for a bottom width, a bottom elevation, a slope inclination and top width of the cross-sectional shape, and the work planning portion sets a construction tolerance range for the bottom and the slope.

14 . The work planning system of claim 10 , wherein the orthographic image includes a reference coordinate, and the work route line and the work position of the construction machinery are set based on the reference coordinate.

15 . The work planning system of claim 10 , wherein the worker terminal displays on a screen by overlaying an earthwork drawing on the orthographic image.

16 . The work planning system of claim 10 , wherein the work planning portion includes a soil treatment setting unit to set a moving direction of a vehicle to load soil or a filling direction of the soil by reflecting the work position of the construction machinery.

17 . The work planning system of claim 10 , wherein the construction machinery is an automatic excavator and the worker terminal is provided in the automatic excavator to control an operation of the automatic excavator.

18 . The work planning system of claim 17 , wherein the work planning portion includes a manned work section setting unit to set a manned work area or a remoted work area.

19 . A method of making a work plan for construction machinery, the method comprising:

providing construction site information including work data and an orthographic image having a reference coordinate;

setting a trench excavation work plan on the orthographic image using the work data, the trench excavation work plan displaying a work route line and a work position of construction machinery based on the work route line based on the reference coordinate; and

transmitting the trench excavation work plan to a worker terminal,

wherein setting the trench excavation work plan includes,

setting a plurality of sequence points on the orthographic image;

setting a sequence number by reflecting a work sequence for each sequence point; and

setting the work route line by connecting the sequence points according to the sequence number.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 4, 2023
From: JANG, JUNHYUN; UM, HEONGSIK; YUN, GIJUNG
To: HYUNDAI DOOSAN INFRACORE CO., LTD.
Reel/Frame 065750/0563 →
CHANGE OF NAME Recorded Dec 4, 2023
From: HYUNDAI DOOSAN INFRACORE CO., LTD.
To: HD HYUNDAI INFRACORE CO., LTD.
Reel/Frame 065761/0957 →