IP Library Granted Patent US 12662260
Granted Patent B2
US 12662260 · App. 18/734,632 · Granted Jun 23, 2026

Method for detection of non-thermal radiation by colliding debris

Inventor: Nilton O. Rennó (Ann Arbor, MI)
Assignee: The Regents of The University of Michigan
B64G3/00G01S11/12
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Quick Facts
Patent No.
US 12662260
App. No.
18/734,632
Granted
Jun 23, 2026
Kind
B2
Abstract

A system and method for detecting space debris which is based on measurements of broadband non-thermal radiation and/or light emitted by either sparks or the expansion of the plasma-fragments cloud generated during high-speed collisions of solid materials. The method is based on the concept that broadband nonthermal radiation and/or light can be used to detect the formation of new debris and for tracking debris clouds. The emission of broadband nonthermal radiation and/or light is based on theoretical and observational evidence that the collision of particles of solid materials with each other transfer enough charge to create electric fields large enough to produce small electric discharges or sparks and that the expansion of the plasma-fragments cloud generated by collisions at orbital velocities produce thermal and non-thermal electromagnetic signals.

Claims (16)

1 . A method for detecting and tracking colliding space debris, said method comprising:

measuring electromagnetic radiation generated by the space debris colliding with each other or with larger objects and outputting an electromagnetic radiation signal;

processing the electromagnetic radiation signal to distinguish it from other signals such as radio frequency interference (RFI) and outputting a detection signal; and

using the detection signal to track the space debris.

2 . The method for detecting and tracking colliding space debris according to claim 1 , wherein processing the electromagnetic radiation signal includes calculating a power spectrum of the emission and using the power spectrum to detect and track the space debris.

3 . The method for detecting and tracking colliding space debris according to claim 1 , wherein processing the electromagnetic radiation signal includes calculating a kurtosis of the emission and using the kurtosis to detect and track the space debris.

4 . The method for detecting and tracking colliding space debris according to claim 1 , wherein measuring electromagnetic radiation generated by the space debris colliding with each other is detected by an antenna.

5 . The method for detecting and tracking colliding space debris according to claim 1 , wherein the detection signal is used to estimate a size of the space debris.

6 . A method for detecting and tracking colliding space debris, said method comprising:

measuring optical light generated by the space debris colliding with each other or with larger objects and outputting an optical signal;

processing the optical signal to distinguish it from other signals and outputting a detection signal; and

using the detection signal to track the space debris.

7 . The method for detecting and tracking colliding space debris according to claim 6 , wherein processing the optical signal includes detecting at least one of visible, infrared and UV light.

8 . The method for detecting and tracking colliding space debris according to claim 6 , wherein processing the optical signal includes calculating a kurtosis of the detection signal and using the kurtosis to detect and track the space debris.

9 . The method for detecting and tracking colliding space debris according to claim 6 , wherein measuring optical light generated by the space debris colliding with each other is detected by a telescope.

10 . The method for detecting and tracking colliding space debris according to claim 6 , wherein the detection signal is used to estimate a size of the space debris.