IP Library Granted Patent US 12,438,613
Granted Patent B2
US 12,438,613 · App. 17/992,867 · Granted Oct 7, 2025

Quality of service (QOS) method and system for free space optics (FSO) communications

Inventor: Josh Benjamin Buen (Washington, DC)
Assignee: The Government of the United States of America, as represented by the Secretary of the Navy
H04B10/112H04Q11/0062H04Q2011/0084
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Quick Facts
Patent No.
US 12,438,613
App. No.
17/992,867
Granted
Oct 7, 2025
Kind
B2
Abstract

Methods, systems, and devices to realize Quality of Service (QoS) in a Free Space Optics (FSO) communications link. In operation, the application generating the data source assigns a QoS value to each data packet for optical transmission. The FSO system converts this value to a QoS metric based on the capability of the system to synthesize transmit signals of varying bandwidths. The QoS modulator synthesizes a waveform with bandwidth selected by the QoS metric. This implementation may take the form of time-division multiplexing either at the intra- or inter-packet level; there are fixed time intervals arranged between the transmit and receive FSO systems for specific waveform bandwidths. The transmit and receive process continues in a typical fashion until the signal reaches the QoS optical receiver followed by the QoS demodulator. Here the bandwidth set by the QoS metric is accounted for in either the analog or digital domain and the recovery of the original data source follows. This process provides the advantage of improved resiliency of critical networking packets in an FSO communications link.

Claims (48)

1. A method of operating a Free Space Optics (FSO) system that employs Quality of Service (QoS) transmission between FSO terminals, the method comprising:

a QoS Metric generator applying a QoS metric to a data steam;

a QoS modulator generating a modulated representation of the data stream, a bandwidth of the modulated representation determined by the QoS metric;

an Optical Transmitter optically transmitting the modulated representation;

an Optical Receiver optically receiving the transmitted modulated representation;

a QoS Optical Receiver developing an intermediate frequency (IF) or baseband digital signal from the received modulated representation accounting for variations in bandwidth due to the QoS metric; and

a QoS demodulator recovering the data stream from the signal accounting for variations in bandwidth due to the QoS metric,

wherein the QoS modulator synthesizes a waveform with the bandwidth selected by the QoS metric using time-division multiplexing either at an intra- or inter-data packet level.

2. The method of operating a Free Space Optics (FSO) system according to claim 1 , wherein the QoS Metric generator generates a QoS metric value associated with the data stream, the QoS metric value having a higher value for higher priority data streams.

3. The method of operating a Free Space Optics (FSO) system according to claim 2 , wherein the QoS metric value is included in the data stream.

4. The method of operating a Free Space Optics (FSO) system according to claim 1 , wherein the QoS modulator bandwidth is lower for data streams associated with a higher QoS metric value.

5. The method of operating a Free Space Optics (FSO) system according to claim 1 ,

wherein the QoS Metric generator generates a QoS metric value associated with the data stream,

wherein the QoS metric value has a higher value for higher priority data streams,

wherein the QoS metric value is included in the data stream, and

wherein the QoS modulator bandwidth is lower for data streams associated with a higher QoS metric value.

6. The method of operating a Free Space Optics (FSO) system according to claim 1 , wherein there are fixed time intervals between transmitting the modulated representation for specific waveform bandwidths.

7. A Free Space Optics (FSO) system that employs Quality of Service (QoS) transmission between FSO terminals, the system comprising:

a QoS Metric generator applying a QoS metric to a data steam;

a QoS modulator generating a modulated representation of the data stream, a bandwidth of the modulated representation determined by the QoS metric;

an Optical Transmitter optically transmitting the modulated representation;

an Optical Receiver optically receiving the transmitted modulated representation;

a QoS Optical Receiver developing an intermediate frequency (IF) or baseband digital signal from the received modulated representation accounting for variations in bandwidth due to the QoS metric; and

a QoS demodulator recovering the data stream from the signal accounting for variations in bandwidth due to the QoS metric,

wherein the QoS modulator synthesizes a waveform with the bandwidth selected by the QoS metric using time-division multiplexing either at an intra- or inter-data packet level.

8. The Free Space Optics (FSO) system according to claim 7 , wherein the QoS Metric generator generates a QoS metric value associated with the data stream, the QoS metric value having a higher value for higher priority data streams.

9. The Free Space Optics (FSO) system according to claim 8 , wherein the QoS metric value is included in the data stream.

10. The Free Space Optics (FSO) system according to claim 7 , wherein the QoS modulator bandwidth is lower for data streams associated with a higher QoS metric value.

11. The Free Space Optics (FSO) system according to claim 7 ,

wherein the QoS Metric generator generates a QoS metric value associated with the data stream,

wherein the QoS metric value has a higher value for higher priority data streams,

wherein the QoS metric value is included in the data stream, and

wherein the QoS modulator bandwidth is lower for data streams associated with a higher QoS metric value.

12. The Free Space Optics (FSO) system according to claim 7 , wherein there are fixed time intervals between transmitting the modulated representation for specific waveform bandwidths.

13. A Free Space Optics (FSO) terminal that employs Quality of Service (QoS) transmission between FSO terminals, the system comprising:

a QoS Metric generator applying a QoS metric to a data steam;

a QoS modulator generating a modulated representation of the data stream, a bandwidth of the modulated representation determined by the QoS metric; and

an Optical Transmitter optically transmitting the modulated representation,

wherein an Optical Receiver optically receives the transmitted modulated representation, and a QoS demodulator operatively associated with the Optical Transmitter recovers the data stream from the signal accounting for variations in bandwidth due to the QoS metric,

wherein the QoS modulator synthesizes a waveform with the bandwidth selected by the QoS metric using time-division multiplexing either at an intra- or inter-data packet level.

14. The Free Space Optics (FSO) system according to claim 13 , wherein the QoS Metric generator generates a QoS metric value associated with the data stream, the QoS metric value having a higher value for higher priority data streams.

15. The Free Space Optics (FSO) system according to claim 13 , wherein the QoS metric value is included in the data stream.

16. The Free Space Optics (FSO) system according to claim 13 , wherein the QoS modulator bandwidth is lower for data streams associated with a higher QoS metric value.

17. The Free Space Optics (FSO) system according to claim 13 ,

wherein the QoS Metric generator generates a QoS metric value associated with the data stream,

wherein the QoS metric value has a higher value for higher priority data streams,

wherein the QoS metric value is included in the data stream, and

wherein the QoS modulator bandwidth is lower for data streams associated with a higher QoS metric value.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 8, 2026
From: BEUN, JOSHUA BENJAMIN
To: THE GOVERNMENT OF THE UNITED STATES OF AMERICA, AS REPRESENTED BY THE SECRETARY OF THE NAVY
Reel/Frame 074600/0405 →
Continuity (2)
Provisional Application 63282101 · Nov 22, 2021
Related Publication 20230163848A1 · May 25, 2023
References Cited (2)
US 20150171968A1 · Featherston · 2015 [cited by examiner]
US 20220038934A1 · Kumar · 2022 [cited by examiner]