IP Library Granted Patent US 10,122,456
Granted Patent B2
US 10,122,456 · App. 15/461,381 · Granted Nov 6, 2018

Ground based subsystems, for inclusion in optical gateway, and that interface with optical networks external to optical gateway

Inventor: William Hreha (San Jose, CA)
Assignee: SPACE SYSTEMS/LORAL, LLC
H04B10/118H04B7/18513H04J14/02
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Quick Facts
Patent No.
US 10,122,456
App. No.
15/461,381
Granted
Nov 6, 2018
Kind
B2
Abstract

Described herein is a ground based subsystem for inclusion in an optical gateway and for use in transmitting an optical feeder uplink beam to a satellite. The subsystem can include a wavelength-division multiplexing (WDM) multiplexer configured to receive optical data signals from optical network(s) external to the ground based optical gateway, and configured to combine the optical data signals into a wavelength division multiplexed optical signal. The subsystem can also include an optical amplifier to amplify the wavelength division multiplexed optical signal, and transmitter optics to receive the amplified wavelength division multiplexed optical signal and transmit an optical feeder uplink beam to the satellite in dependence thereon. In certain embodiments, the ground based optical gateway does not perform any modulation or demodulation of the optical data signals received from the optical network(s) external to the ground based optical gateway before they are provided to the WDM multiplexer.

Claims (63)

1. A ground based subsystem for inclusion in an optical gateway of a satellite communication system and for use in receiving an optical feeder downlink beam from a satellite of the satellite communication system, the ground based subsystem comprising:

receiver optics configured to receive a wavelength division multiplexed optical feeder downlink beam from a satellite of the satellite communication system;

an optical amplifier configured to amplify the wavelength division multiplexed optical signal received by the amplifier from the receiver optics;

a wavelength-division multiplexing (WDM) demultiplexer configured to receive an amplified wavelength division multiplexed optical signal from the amplifier and separate the amplified wavelength division multiplexed optical signal into a plurality of separate optical signals, each of which has a different peak wavelength;

wherein the ground based subsystem is configured to cause one or more of the optical signals that are output by the WDM demultiplexer to be provided to one or more optical networks that are external to the ground based optical gateway, within which the ground based subsystem is included, without the optical gateway performing any demodulation of, and without the optical gateway performing any modulation of, the one or more optical signals that are provided to the one or more optical networks that are external to the ground based optical gateway; and

further comprising one or more wavelength converters each of which is configured to convert a peak optical wavelength of one of the one or more optical signals, that is being provided to one of the one or more optical networks that are external to the ground based optical gateway, to a different peak optical wavelength before the one of the one or more optical signals is provided to the one of the one or more optical networks that are external to the ground based optical gateway, without the one or more wavelength converters performing any demodulation of, and without the one or more wavelength converters performing any modulation of, the one or more optical signals that are provided to the one or more optical networks that are external to the ground based optical gateway.

2. The ground based subsystem of claim 1 , further comprising:

a plurality of photodetectors, each of which converts a different one of a subset of the optical signals that are output from the WDM demultiplexer, to a respective electrical signal.

3. A ground based subsystem for inclusion in an optical gateway of a satellite communication system and for use in receiving an optical feeder downlink beam from a satellite of the satellite communication system, the ground based subsystem comprising:

receiver optics configured to receive a wavelength division multiplexed optical feeder downlink beam from a satellite of the satellite communication system;

an optical amplifier configured to amplify the wavelength division multiplexed optical signal received by the amplifier from the receiver optics;

a wavelength-division multiplexing (WDM) demultiplexer configured to receive an amplified wavelength division multiplexed optical signal from the amplifier and separate the amplified wavelength division multiplexed optical signal into a plurality of separate optical signals, each of which has a different peak wavelength;

wherein the ground based subsystem is configured to cause one or more of the optical signals that are output by the WDM demultiplexer to be provided to one or more optical networks that are external to the ground based optical gateway, within which the ground based subsystem is included, without the optical gateway performing any demodulation of, and without the optical gateway performing any modulation of, the one or more optical signals that are provided to the one or more optical networks that are external to the ground based optical gateway; and

further comprising one or more frequency converters each of which is configured to one of up-convert or down-convert a frequency of at least one of the one or more optical signals, that is being provided to one of the one or more optical networks that are external to the ground based optical gateway, before the one of the one or more optical signals is provided to the one of the one or more optical networks that are external to the ground based optical gateway, without the one or more frequency converters performing any demodulation of, and without the one or more frequency converters performing any modulation of, the one or more optical signals that are provided to the one or more optical networks that are external to the ground based optical gateway.

4. The ground based subsystem of claim 3 , further comprising:

a plurality of photodetectors, each of which converts a different one of a subset of the optical signals that are output from the WDM demultiplexer, to a respective electrical signal.

5. A ground based subsystem for inclusion in an optical gateway of a satellite communication system and for use in receiving an optical feeder downlink beam from a satellite of the satellite communication system, the ground based subsystem comprising:

receiver optics configured to receive a wavelength division multiplexed optical feeder downlink beam from a satellite of the satellite communication system;

an optical amplifier configured to amplify the wavelength division multiplexed optical signal received by the amplifier from the receiver optics;

a wavelength-division multiplexing (WDM) demultiplexer configured to receive an amplified wavelength division multiplexed optical signal from the amplifier and separate the amplified wavelength division multiplexed optical signal into a plurality of separate optical signals, each of which has a different peak wavelength;

a plurality of photodetectors, each of which converts a different one of a subset of the optical signals that are output from the WDM demultiplexer, to a respective electrical signal;

wherein the ground based subsystem is configured to cause one or more of the optical data signals that are output by the WDM demultiplexer to be provided to one or more optical networks that are external to the ground based optical gateway, within which the ground based subsystem is included, without the optical gateway performing any demodulation of, and without the optical gateway performing any modulation of, the one or more optical signals that are provided to the one or more optical networks that are external to the ground based optical gateway; and

wherein the subset of the optical signals that are converted to electrical signals by the plurality of photodetectors do not include the one or more of the optical signals that, after being output by the WDM demultiplexer, are provided to one or more optical networks that are external to the ground based optical gateway.

6. The ground based subsystem of claim 5 , further comprising:

one or more wavelength converters each of which is configured to convert a peak optical wavelength of one of the one or more optical signals, that is being provided to one of the one or more optical networks that are external to the ground based optical gateway, to a different peak optical wavelength before the one of the one or more optical signals is provided to the one of the one or more optical networks that are external to the ground based optical gateway, without the one or more wavelength converters performing any demodulation of, and without the one or more wavelength converters performing any modulation of, the one or more optical signals that are provided to the one or more optical networks that are external to the ground based optical gateway.

7. The ground based subsystem of claim 5 , further comprising:

one or more frequency converters each of which is configured to one of up-convert or down-convert a frequency of at least one of the one or more optical signals, that is being provided to one of the one or more optical networks that are external to the ground based optical gateway, before the one of the one or more optical signals is provided to the one of the one or more optical networks that are external to the ground based optical gateway, without the one or more frequency converters performing any demodulation of, and without the one or more frequency converters performing any modulation of, the one or more optical signals that are provided to the one or more optical networks that are external to the ground based optical gateway.

8. A method for use by a ground based optical gateway of a satellite communication system, the method comprising:

receiving a wavelength division multiplexed optical feeder downlink beam from a satellite of the satellite communication system;

amplifying the wavelength division multiplexed optical signal;

demultiplexing the amplified wavelength division multiplexed optical signal, using a WDM demultiplexer within the ground based optical gateway of the satellite communication system, to thereby separate the amplified wavelength division multiplexed optical signal into a plurality of optical signals, each of which has a different peak wavelength;

providing one or more of the optical data signals that are output by the WDM demultiplexer, within the ground based optical gateway of the satellite communication system, to one or more optical networks that are external to the ground based optical gateway without the optical gateway performing any modulation of, and without the optical gateway performing any demodulation of, the one or more optical data signals that are provided to the one or more optical networks that are external to the ground based optical gateway; and

converting a peak optical wavelength of at least one of the one or more optical signals, that is being provided to one of the one or more optical networks that are external to the ground based optical gateway, to a different peak optical wavelength before the at least one of the one or more optical signals is provided to the one of the one or more optical networks that are external to the ground based optical gateway;

wherein the converting the peak optical wavelength of the at least one of the one or more optical data signals is performed without performing any demodulation of, and without performing any modulation of, the one or more optical signals that are provided to the one or more optical networks that are external to the ground based optical gateway.

9. The method of claim 8 , further comprising:

converting at least a subset of the optical signals that result from the demultiplexing to respective electrical signals.

10. A method for use by a ground based optical gateway of a satellite communication system, the method comprising:

receiving a wavelength division multiplexed optical feeder downlink beam from a satellite of the satellite communication system;

amplifying the wavelength division multiplexed optical signal;

demultiplexing the amplified wavelength division multiplexed optical signal, using a WDM demultiplexer within the ground based optical gateway of the satellite communication system, to thereby separate the amplified wavelength division multiplexed optical signal into a plurality of optical signals, each of which has a different peak wavelength;

providing one or more of the optical data signals that are output by the WDM demultiplexer, within the ground based optical gateway of the satellite communication system, to one or more optical networks that are external to the ground based optical gateway without the optical gateway performing any modulation of, and without the optical gateway performing any demodulation of, the one or more optical data signals that are provided to the one or more optical networks that are external to the ground based optical gateway; and

up-converting or down-converting a frequency of at least one of the one or more optical signals, that is being provided to one of the one or more optical networks that are external to the ground based optical gateway, before the at least one of the one or more optical signals is provided to the one of the one or more optical networks that are external to the ground based optical gateway;

wherein the up-converting or down-converting is performed without performing any demodulation of, and without performing any modulation of, the one or more optical signals that are provided to the one or more optical networks that are external to the ground based optical gateway.

11. The method of claim 10 , further comprising:

converting at least a subset of the optical signals that result from the demultiplexing to respective electrical signals.

12. A method for use by a ground based optical gateway of a satellite communication system, the method comprising:

receiving a wavelength division multiplexed optical feeder downlink beam from a satellite of the satellite communication system;

amplifying the wavelength division multiplexed optical signal;

demultiplexing the amplified wavelength division multiplexed optical signal, using a WDM demultiplexer within the ground based optical gateway of the satellite communication system, to thereby separate the amplified wavelength division multiplexed optical signal into a plurality of optical signals, each of which has a different peak wavelength;

providing one or more of the optical signals that are output by the WDM demultiplexer, within the ground based optical gateway of the satellite communication system, to one or more optical networks that are external to the ground based optical gateway without the optical gateway performing any modulation of, and without the optical gateway performing any demodulation of, the one or more optical signals that are provided to the one or more optical networks that are external to the ground based optical gateway; and

converting a subset of the optical signals that result from the demultiplexing to respective electrical signals within the ground based optical gateway;

wherein the subset of the optical signals that are converted to electrical signals within the ground based optical gateway do not include the one or more of the optical signals that are provided to one or more optical networks that are external to the ground based optical gateway without the optical gateway performing any modulation and without the optical gateway performing any demodulation thereof; and

converting a peak optical wavelength of at least one of the one or more optical signals, that is being provided to one of the one or more optical networks that are external to the ground based optical gateway, to a different peak optical wavelength before the at least one of the one or more optical signals is provided to the one of the one or more optical networks that are external to the ground based optical gateway;

wherein the converting the peak optical wavelength of the at least one of the one or more optical data signals is performed without performing any demodulation of, and without performing any modulation of, the one or more optical signals that are provided to the one or more optical networks that are external to the ground based optical gateway.

13. A method for use by a ground based optical gateway of a satellite communication system, the method comprising:

receiving a wavelength division multiplexed optical feeder downlink beam from a satellite of the satellite communication system;

amplifying the wavelength division multiplexed optical signal;

demultiplexing the amplified wavelength division multiplexed optical signal, using a WDM demultiplexer within the ground based optical gateway of the satellite communication system, to thereby separate the amplified wavelength division multiplexed optical signal into a plurality of optical signals, each of which has a different peak wavelength;

providing one or more of the optical signals that are output by the WDM demultiplexer, within the ground based optical gateway of the satellite communication system, to one or more optical networks that are external to the ground based optical gateway without the optical gateway performing any modulation of, and without the optical gateway performing any demodulation of, the one or more optical signals that are provided to the one or more optical networks that are external to the ground based optical gateway; and

converting a subset of the optical signals that result from the demultiplexing to respective electrical signals within the ground based optical gateway;

wherein the subset of the optical signals that are converted to electrical signals within the ground based optical gateway do not include the one or more of the optical signals that are provided to one or more optical networks that are external to the ground based optical gateway without the optical gateway performing any modulation and without the optical gateway performing any demodulation thereof; and

up-converting or down-converting a frequency of at least one of the one or more optical signals, that is being provided to one of the one or more optical networks that are external to the ground based optical gateway, before the at least one of the one or more optical signals is provided to the one of the one or more optical networks that are external to the ground based optical gateway;

wherein the up-converting or down-converting is performed without performing any demodulation of, and without performing any modulation of, the one or more optical signals that are provided to the one or more optical networks that are external to the ground based optical gateway.

Assignments (14)
CHANGE OF NAME Recorded Jan 7, 2026
From: MAXAR SPACE LLC
To: LANTERIS SPACE LLC
Reel/Frame 074270/0351 →
CHANGE OF NAME Recorded Nov 6, 2025
From: MAXAR SPACE LLC
To: LANTERIS SPACE LLC
Reel/Frame 073512/0398 →
RELEASE (REEL 060389/FRAME 0720) Recorded May 12, 2023
From: ROYAL BANK OF CANADA
To: MAXAR INTELLIGENCE INC.; MAXAR SPACE LLC
Reel/Frame 063633/0431 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded May 5, 2023
From: MAXAR INTELLIGENCE INC. (F/K/A DIGITALGLOBE, INC.); AURORA INSIGHT INC.; MAXAR MISSION SOLUTIONS INC. ((F/K/A RADIANT MISSION SOLUTIONS INC. (F/K/A THE RADIANT GROUP, INC.)); MAXAR SPACE LLC (F/K/A SPACE SYSTEMS/LORAL, LLC); SPATIAL ENERGY, LLC; MAXAR SPACE ROBOTICS LLC ((F/K/A SSL ROBOTICS LLC) (F/K/A MDA US SYSTEMS LLC)); MAXAR TECHNOLOGIES HOLDINGS INC.
To: SIXTH STREET LENDING PARTNERS, AS ADMINISTRATIVE AGENT
Reel/Frame 063660/0138 →
TERMINATION AND RELEASE OF PATENT SECURITY AGREEMENT - RELEASE OF REEL/FRAME 060389/0782 Recorded May 4, 2023
From: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
To: MAXAR INTELLIGENCE INC.; MAXAR SPACE LLC
Reel/Frame 063544/0074 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS AND TRADEMARKS - RELEASE OF REEL/FRAME 051258/0720 Recorded May 4, 2023
From: ROYAL BANK OF CANADA, AS AGENT
To: MAXAR INTELLIGENCE INC.; MAXAR SPACE LLC
Reel/Frame 063542/0543 →
RELEASE OF SECURITY INTEREST Recorded Jun 21, 2022
From: WILMINGTON TRUST, NATIONAL ASSOCIATION
To: DIGITALGLOBE, INC.; SPACE SYSTEMS/LORAL, LLC; RADIANT GEOSPATIAL SOLUTIONS LLC
Reel/Frame 060390/0282 →
SECURITY AGREEMENT Recorded Jun 17, 2022
From: MAXAR INTELLIGENCE INC.; MAXAR SPACE LLC
To: WILMINGTON TRUST, NATIONAL ASSOCIATION
Reel/Frame 060389/0782 →
SECURITY AGREEMENT Recorded Jun 16, 2022
From: MAXAR INTELLIGENCE INC.; MAXAR SPACE LLC
To: ROYAL BANK OF CANADA
Reel/Frame 060389/0720 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 11, 2021
From: SPACE SYSTEMS/LORAL, LLC
To: MAXAR SPACE LLC
Reel/Frame 054960/0466 →
PATENT SECURITY AGREEMENT Recorded Sep 23, 2020
From: SPACE SYSTEMS/LORAL, LLC
To: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 053866/0810 →
SECURITY AGREEMENT (NOTES) Recorded Dec 12, 2019
From: DIGITALGLOBE, INC.; RADIANT GEOSPATIAL SOLUTIONS LLC; SPACE SYSTEMS/LORAL, LLC (F/K/A SPACE SYSTEMS/LORAL INC.)
To: WILMINGTON TRUST, NATIONAL ASSOCIATION, - AS NOTES COLLATERAL AGENT
Reel/Frame 051262/0824 →
AMENDED AND RESTATED U.S. PATENT AND TRADEMARK SECURITY AGREEMENT Recorded Dec 11, 2019
From: SPACE SYSTEMS/LORAL, LLC
To: ROYAL BANK OF CANADA, AS COLLATERAL AGENT
Reel/Frame 051258/0720 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2017
From: HREHA, WILLIAM
To: SPACE SYSTEMS/LORAL, LLC
Reel/Frame 041660/0144 →
Continuity (2)
Provisional Application 62454532 · Feb 3, 2017
Related Publication 20180227054A1 · Aug 9, 2018