IP Library › Granted Patent US 12,742,902
Granted Patent B2
US 12,742,902 · App. 18/772,873 · Granted Sep 22, 2026

Systems and methods for managing seismic data

Inventor: Constantinos Tsingas (Dhahran, SA)
Assignee: Saudi Arabian Oil Company
G01V1/3808G01V1/247G01V1/3843
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Quick Facts
Patent No.
US 12,742,902
App. No.
18/772,873
Granted
Sep 22, 2026
Kind
B2
Abstract

Techniques for collecting seismic data include identifying seismic sources positioned on or under a first surface; identifying seismic sensors positioned on or under a second surface to form a seismic data collection area with the seismic sources; activating the seismic sources to generate a seismic signal; operating the seismic sensors to record a reflected seismic signal in response to the generated seismic signal; operating unmanned vehicles to travel to and within the seismic data collection area and collect the recorded reflected seismic signal from the seismic sensors; operating the unmanned vehicles to travel from the seismic data collection area to download the collected reflected seismic signal recorded from the seismic sensors; and operating the unmanned vehicles to return to or into the seismic data collection area to further collect at least one reflected seismic signal recorded from the seismic sensors.

Claims (41)

1 . A seismic data collection system, comprising:

a plurality of seismic sources positioned on or under a first surface, each of the plurality of seismic sources configured to generate at least one seismic signal;

a plurality of seismic sensors positioned on or under a second surface to form a seismic data collection area with the plurality of seismic sources, each of the plurality of seismic sensors configured to record at least one reflected seismic signal in response to the generated at least one seismic signal;

a plurality of unmanned vehicles configured to travel within and adjacent to the seismic data collection area, each of the unmanned vehicles configured to collect the recorded at least one reflected seismic signal from the plurality of seismic sensors; and

a control system configured to perform operations, comprising:

instructing the plurality of unmanned vehicles to travel to and within the seismic data collection area;

instructing at least one of the plurality of unmanned vehicles to travel from the seismic data collection area to download the collected at least one reflected seismic signal recorded from the plurality of seismic sensors while at least one of the plurality of seismic sources is generating the at least one seismic signal and at least another of the plurality of unmanned vehicles is traveling within the seismic data collection area to collect at least another recorded reflected seismic signal from at least one of the plurality of seismic sensors; and

instructing the at least one of the plurality of unmanned vehicles to return to or into the seismic data collection area to further collect at least one reflected seismic signal recorded from the plurality of seismic sensors.

2 . The seismic data collection system of claim 1 , wherein each of the plurality of seismic sensors is communicably decoupled from the control system.

3 . The seismic data collection system of claim 2 , wherein each of the plurality of seismic sources is configured to generate at least one seismic signal at one or more regular intervals to generate seismic wavefields.

4 . The seismic data collection system of claim 3 , wherein each of the plurality of seismic sensors is configured to blindly record the generated seismic wavefields and store the blindly recorded seismic wavefields.

5 . The seismic data collection system of claim 4 , wherein each of the unmanned vehicles is configured to collect the blindly recorded seismic wavefields.

6 . The seismic data collection system of claim 1 , wherein the operations comprise, during generation of the at least one seismic signal by the plurality of seismic sources and during recording of the at least one reflected seismic signal in response to the generated at least one seismic signal:

analyzing the downloaded at least one reflected seismic signal recorded from the plurality of seismic sensors; and

checking a quality of the downloaded at least one reflected seismic signal.

7 . The seismic data collection system of claim 1 , wherein the first surface comprises a terranean surface, the second surface comprises the terranean surface, and the plurality of unmanned vehicles comprise a plurality of unmanned aerial vehicles.

8 . The seismic data collection system of claim 7 , wherein the plurality of seismic sources comprise a plurality of explosives positioned on or under the terranean surface.

9 . The seismic data collection system of claim 1 , wherein the first surface comprises an underwater floor, the second surface comprises an offshore surface, and the plurality of unmanned vehicles comprise a plurality of autonomous underwater vehicles.

10 . The seismic data collection system of claim 9 , wherein the plurality of seismic sources comprise a towed array of seismic sources coupled to a support vessel configured to travel on or under the offshore surface.

11 . A method for collecting seismic data, comprising:

identifying a plurality of seismic sources positioned on or under a first surface;

identifying a plurality of seismic sensors positioned on or under a second surface to form a seismic data collection area with the plurality of seismic sources;

activating at least one of the plurality of seismic sources to generate at least one seismic signal;

operating the plurality of seismic sensors to record at least one reflected seismic signal in response to the generated at least one seismic signal;

operating a plurality of unmanned vehicles to travel to and within the seismic data collection area and collect the recorded at least one reflected seismic signal from the plurality of seismic sensors;

operating at least one of the plurality of unmanned vehicles to travel from the seismic data collection area to download the collected at least one reflected seismic signal recorded from the plurality of seismic sensors;

while operating the at least one of the plurality of unmanned vehicles to travel from the seismic data collection area to download the collected at least one reflected seismic signal recorded from the plurality of seismic sensors:

operating at least one of the plurality of seismic sources to generate the at least one seismic signal, and

operating at least another of the plurality of unmanned vehicles to travel within the seismic data collection area to collect the recorded at least another reflected seismic signal from at least one of the plurality of seismic sensors; and

operating the at least one of the plurality of unmanned vehicles to return to or into the seismic data collection area to further collect at least one reflected seismic signal recorded from the plurality of seismic sensors.

12 . The method of claim 11 , wherein each of the plurality of seismic sensors is communicably decoupled from the control system.

13 . The method of claim 12 , comprising operating each of the plurality of seismic sources to generate at least one seismic signal at one or more regular intervals to generate seismic wavefields.

14 . The method of claim 13 , comprising operating each of the plurality of seismic sensors to blindly record the generated seismic wavefields and store the blindly recorded seismic wavefields.

15 . The method of claim 14 , comprising operating each of the unmanned vehicles to collect the blindly recorded seismic wavefields.

16 . The method of claim 11 , comprising, during activating at least one of the plurality of seismic sources to generate at least one seismic signal and operating the plurality of seismic sensors to record at least one reflected seismic signal in response to the generated at least one seismic signal:

analyzing the downloaded at least one reflected seismic signal recorded from the plurality of seismic sensors; and

checking a quality of the downloaded at least one reflected seismic signal.

17 . The method of claim 11 , wherein the first surface comprises a terranean surface, the second surface comprises the terranean surface, and the plurality of unmanned vehicles comprise a plurality of unmanned aerial vehicles.

18 . The method of claim 17 , wherein the plurality of seismic sources comprise a plurality of explosives positioned on or under the terranean surface.

19 . The method of claim 11 , wherein the first surface comprises an underwater floor, the second surface comprises an offshore surface, and the plurality of unmanned vehicles comprise a plurality of autonomous underwater vehicles.

20 . The method of claim 19 , wherein the plurality of seismic sources comprise a towed array of seismic sources coupled to a support vessel configured to travel on or under the offshore surface.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2024
From: TSINGAS, CONSTANTINOS
To: SAUDI ARABIAN OIL COMPANY
Reel/Frame 068054/0019 →
Continuity (1)
Related Publication 20260016610A1 · Jan 15, 2026
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