IP Library Granted Patent US 12,286,248
Granted Patent B2
US 12,286,248 · App. 18/399,447 · Granted Apr 29, 2025

Space debris detection and mitigation with a network of deployed observatories

Inventors: Muhammad Akbar Hussain (Craigmore, AU); Muhammad Mehdi Hussain (Karachi, PK); Muhammad Waqar Haider (Lalor, AU); Muhammad Ayaz Hussain (Bottrop, DE)
B64G3/00F41H13/0062
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Quick Facts
Patent No.
US 12,286,248
App. No.
18/399,447
Granted
Apr 29, 2025
Kind
B2
Abstract

A space debris removing device, system and method are disclosed. The system comprises a central server, a primary detection node, at least two secondary tracer nodes, the central server is configured to assign a tertiary node to track the debris with laser, wherein the tertiary node is configured to mark the debris being tracked with the laser, creating a laser illuminated target (LIT), a tertiary tracking unit deployed at the tertiary node, and a ground-based kilowatt laser system configured to pick up the LIT by using one or more optical sensors and tackle the debris with a high power laser beam.

Claims (14)

1. A system for detection and mitigation of space debris comprising: a central server, a primary detection node having a primary detection unit that detects a debris using one or more optical sensors, the primary detection node is communicatively connected to the central server, at least two secondary tracer nod es communicatively connected to the central server, the at least two secondary tracer nodes include at least two secondary tracer units, the central server is configured to assign a tertiary node to track the debris with a first laser beam, wherein the tertiary node is configured to mark the debris being tracked with the first laser beam, creating a laser illuminated target (LIT), a tertiary tracking unit deployed at the tertiary node, the tertiary tracking unit is communicatively connected to the central server, and a ground-based kilowatt laser system configured to pick-up the LIT by using one or more optical sensors and tackle to deorbit the debris with a high power laser beam of the ground-based kilowatt laser system.

2. The system as claimed in claim 1 , wherein the one or more optical sensors are assisted by one or more event-based sensors.

3. The system as claimed in claim 2 , wherein the primary detection node includes a telescope system and optical sensors.

4. The system as claimed in claim 2 , wherein the at least two secondary tracer nodes include a telescope system and optical sensors.

5. The system as claimed in claim 2 , wherein the tertiary node includes a telescope system and a tracking laser device.

6. The system as claimed in claim 1 , wherein the first laser beam is emitted by a high-power long-range laser.

7. The system as claimed in claim 1 , wherein the at least two secondary tracer units includes at least two observatories located at two separate nodes.

8. The system as claimed in claim 1 , wherein the at least two secondary tracer units

are at least a hundred kilometers apart.

9. A method for detection and mitigation of space debris comprising: detecting, by using a primary detection unit, a piece of debris using optical sensors from a primary detection node, tracing, by using a central server and at least two secondary tracer units, a location of the piece of debris through triangulation, assigning, by using the central server, a tertiary node, zeroing on a debris by using a tertiary tracking unit with a dynamic trajectory code, marking, by using a first laser beam emitted by a high-power long-range laser, the piece of debris being observed and tracked, thereby creating, by using the high-power long-range laser, a laser-illuminated target, picking up, by one or more optical sensors of a ground-based kilowatt laser system, the laser-illuminated target, and deorbiting, by using a high-power laser beam of the ground-based kilowatt laser system, the piece of debris.

10. The method as claimed in claim 9 , wherein the tertiary node is equipped with a telescope system at the vantage position.

11. The method as claimed in claim 9 , wherein the at least two secondary tracer units are at least a hundred kilometers apart.

12. A non-transitory computer readable medium containing computer-readable instructions stored therein for causing a computer processor to perform operations to detect and mitigate space debris, the operations comprising: detect, by using a primary detection unit, a piece of debris using optical sensors from a primary detection node, trace, by using a central server and at least two secondary tracer units, a location of the piece of debris through triangulation, assign, by using the central server, a tertiary node, zero in on a debris by using a tertiary tracking unit with a dynamic trajectory code, mark, by using a first laser beam emitted by a high-power long-range laser, the piece of debris being observed and tracked, create, by using the first laser beam of the high-power long-range laser, a laser-illuminated target, pick up, by one or more optical sensors of a ground-based kilowatt laser system, the laser-illuminated target, and deorbit, by using a high-power laser beam of the ground-based kilowatt laser system, the piece of debris.

13. The non-transitory computer readable medium as claimed in claim 12 , wherein the tertiary node is equipped with a telescope system at the vantage position.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 28, 2023
From: HUSSAIN, MUHAMMAD AKBAR; HUSSAIN, MUHAMMAD MEHDI; HAIDER, MUHAMMAD WAQAR; HUSSAIN, MUHAMMAD AYAZ
To: SOUTHERN CROSS OUTREACH OBSERVATORY PROJECT (SCOOP); HUSSAIN, MUHAMMAD AKBAR; HUSSAIN, MUHAMMAD MEHDI; HAIDER, MUHAMMAD WAQAR; HUSSAIN, MUHAMMAD AYAZ
Reel/Frame 065976/0124 →
Continuity (2)
Provisional Application 63485679 · Feb 17, 2023
Related Publication 20240278941A1 · Aug 22, 2024
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