IP Library › Granted Patent US 12,152,930
Granted Patent B2
US 12,152,930 · App. 18/008,756 · Granted Nov 26, 2024

Blasting device and method thereof for measuring blast vibration

Inventor: Jeong Ho Choi (Cheongju-si, KR)
Assignee: HANWHA CORPORATION
G01H1/00F42D5/00
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Quick Facts
Patent No.
US 12,152,930
App. No.
18/008,756
Granted
Nov 26, 2024
Kind
B2
Abstract

A blasting device and a method thereof for measuring blasting vibration are proposed. The device includes a blasting signal recognition unit configured to recognize a transmission point of time of a blasting start signal and a transmission point of time of a blasting end signal of a blaster, a vibration measurement data acquisition unit configured to acquire vibration measurement data from a vibration measurement sensor connected to the blasting device when blasting work is started according to the recognized blasting start signal, and a blasting vibration information generation unit configured to generate blasting vibration information on the basis of the acquired vibration measurement data and blasting information pre-stored in the blasting device when the blasting work is ended according to the recognized blasting end signal.

Claims (15)

1. A blasting device for measuring blasting vibration, the device comprising:

a blasting signal recognition unit configured to recognize a blasting start signal and a blasting end signal;

a vibration measurement data acquisition unit configured to acquire vibration measurement data from a vibration measurement sensor connected to the blasting device when blasting work is started according to the recognized blasting start signal; and

a blasting vibration information generation unit configured to generate blasting vibration information on the basis of the acquired vibration measurement data and blasting information pre-stored in the blasting device when the blasting work is ended according to the recognized blasting end signal,

wherein the blasting vibration information generation unit immediately overlays the acquired vibration measurement data and detonator time-in-milliseconds interval data pre-stored in the blasting device and generates the blasting vibration information by using the blasting information that includes a location of the blasting device and locations of a plurality of blasting holes.

2. The device of claim 1 , wherein the vibration measurement data acquisition unit acquires the vibration measurement data, according to X, Y, and Z coordinates during blasting, from the vibration measurement sensor built into the blasting device or externally connected through a separate communication method.

3. The device of claim 1 , wherein the blasting vibration information generation unit generates the blasting vibration information by using the acquired vibration measurement data, the detonator time-in-milliseconds interval data pre-stored in the blasting device, and the blasting information that comprises the location of the blasting device and the locations of the plurality of blasting holes.

4. The device of claim 1 , wherein the blasting vibration information generation unit generates the blasting vibration information comprising blasting vibration transmission rates and patterns on the basis of the acquired vibration measurement data and the blasting information pre-stored in the blasting device.

5. A blasting method for measuring blasting vibration, the method comprising:

recognizing, by a blasting signal recognition unit, a blasting start signal and a blasting end signal;

acquiring, by a vibration measurement data acquisition unit, vibration measurement data from a vibration measurement sensor connected to a blasting device when blasting work is started according to the recognized blasting start signal; and

generating, by a blasting vibration information generation unit, blasting vibration information on the basis of the acquired vibration measurement data and blasting information pre-stored in the blasting device when the blasting work is ended according to the recognized blasting end signal,

wherein, in the generating of the blasting vibration information on the basis of the acquired vibration measurement data and the blasting information pre-stored in the blasting device when the blasting work is ended according to the recognized blasting end signal, the blasting vibration information generation unit immediately overlays the acquired vibration measurement data and detonator time-in-milliseconds interval data pre-stored in the blasting device and generates the blasting vibration information by using the blasting information that includes a location of the blasting device and locations of a plurality of blasting holes.

6. The device of claim 5 , wherein, in the acquiring of the vibration measurement data from the vibration measurement sensor connected to the blasting device when the blasting work is started according to the recognized blasting start signal, the vibration measurement data according to X, Y, and Z coordinates during blasting is acquired from the vibration measurement sensor built into the blasting device or externally connected through a separate communication method.

7. The device of claim 5 , wherein, in the generating of the blasting vibration information on the basis of the acquired vibration measurement data and the blasting information pre-stored in the blasting device when the blasting work is ended according to the recognized blasting end signal, the blasting vibration information, comprising blasting vibration transmission rates and patterns, is generated by using the acquired vibration measurement data, the detonator time-in-milliseconds interval data pre-stored in the blasting device, and the blasting information that comprises the location of the blasting device and the locations of the plurality of blasting holes.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2022
From: CHOI, JEONG HO
To: HANWHA CORPORATION
Reel/Frame 062009/0174 →
Priority Claims (1)
KR 10-2021-0192376 · Dec 30, 2021 · national
Continuity (1)
Related Publication 20240230398A1 · Jul 11, 2024