IP Library Granted Patent US 9,882,632
Granted Patent B1
US 9,882,632 · App. 15/388,269 · Granted Jan 30, 2018

Satellite constellation switching

Inventor: Jun Fang (San Jose, CA)
Assignee: SPACE SYSTEMS/LORAL, LLC
H04B7/18521H04B7/155H04B7/18504
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Quick Facts
Patent No.
US 9,882,632
App. No.
15/388,269
Granted
Jan 30, 2018
Kind
B1
Abstract

A constellation of satellites form a communication system that includes communication between satellites and ground terminals as well as communication between satellites. The inter-satellite communication is implemented via wireless network comprising a first set of rings in a first orientation and a second set of rings in a second orientation. Each ring of the first set of rings and the second set of rings comprises two ringlets transmitting in opposite directions. Each satellite of the plurality of satellites is configured to communicate in a ring of the first set of rings and communicate in a ring of the second set of rings.

Claims (75)

1. A satellite communication system, comprising:

a plurality of satellites, each of the satellites is configured to wirelessly communicate with ground terminals, each of the satellites is configured to wirelessly communicate with other satellites to form a wireless network comprising a first set of rings in a first orientation and a second set of rings in a second orientation, each ring of the first set of rings and the second set of rings comprises two ringlets transmitting in opposite directions, each satellite of the plurality of satellites is configured to communicate in a ring of the first set of rings and communicate in a ring of the second set of rings, each of the satellites of the plurality are configured to automatically detect a portion of the wireless network being unavailable, and to alert other satellite that the portion of the wireless network being unavailable.

2. The satellite communication system of claim 1 , wherein:

the satellites are configured to travel in a set of planes;

the first set of rings are intra-plane rings; and

the second set of rings are inter-plane rings.

3. The satellite communication system of claim 1 , wherein:

the first set of rings are oriented South-North; and

the second set of rings are oriented East-West.

4. The satellite communication system of claim 1 , wherein:

the first set of rings are orthogonal to the second set of rings.

5. The satellite communication system of claim 1 , wherein:

each satellite of the plurality of satellites is configured to communicate with four neighbors, with two of the neighbors being in a same plane and two of the neighbors being in neighboring planes.

6. The satellite communication system of claim 1 , wherein:

the plurality of satellites comprise a constellation of satellites orbiting the Earth;

as each satellite of the constellation orbits the Earth, it is handed-off between ground terminals in different locations; and

the plurality of satellites configured to determine a target satellite of the constellation of satellites orbiting the Earth that will be in orbital position to service a destination of a message at a future time of delivery of the message to the destination and transmit the message toward the identified target satellite.

7. The satellite communication system of claim 1 , wherein:

the plurality of satellites are Low Earth Orbit satellites or Medium Earth Orbit satellites.

8. The satellite communication system of claim 1 , wherein:

the satellites are configured to wirelessly communicate with other satellites via RF communication.

9. The satellite communication system of claim 1 , wherein:

the satellites are configured to wirelessly communicate with other satellites via optical communication.

10. The satellite communication system of claim 1 , wherein:

each of the satellites of the plurality include routing data structures that indicate an exit ringlet for sending messages to other satellite; and

each of the satellites of the plurality are configured to update the routing data structures in response to the portion of the wireless network being unavailable.

11. A satellite communication system, comprising:

a spacecraft; and

a communications payload comprising a ground communication interface configured to communicate with one or more ground terminals and an inter-satellite communication interface configured to communicate with other satellites via two network rings, each network ring comprises two ringlets transmitting in opposite directions, the ground communication interface is connected to the inter-satellite communication interface, and the inter-satellite communication interface comprises:

a MAC client;

a first controller for the first ring in communication with the MAC client; and

a second controller for the second ring in communication with the MAC client.

12. The satellite communication system of claim 11 , the inter-satellite communication interface comprises:

a first interface for an intra-plane ring in communication with the MAC client; and

a second interface for an inter-plane ring in communication with the MAC client.

13. The satellite communication system of claim 11 , the inter-satellite communication interface comprises:

a first Ring Select for the first ring, the first Ring Select in communicating with the MAC client and the first controller;

a first Ringlet Data Path for a first ringlet of the first ring, the first Ringlet Data Path in communication with the first Ring Select and the MAC client;

a second Ringlet Data Path for a second ringlet of the first ring, the second Ringlet Data Path in communication with the first Ring Select and the MAC client;

a second Ring Select for the second ring, the second Ring Select in communicating with the MAC client and the second controller;

a third Ringlet Data Path for a first ringlet of the second ring, the third Ringlet Data Path in communication with the second Ring Select and the MAC client; and

a fourth Ringlet Data Path for a second ringlet of the second ring, the fourth Ringlet Data Path in communication with the second Ring Select and the MAC client.

14. The satellite communication system of claim 11 , wherein:

the inter-satellite communication interface is configured to access a message for communication to a destination, identify a target spacecraft of a constellation of spacecraft orbiting the Earth that will be in orbital position to service the destination at a future time of delivery of the message to the destination, choose a ringlet to transmit the message based on the identified target spacecraft, and send the message toward the identified target satellite via the chosen ringlet.

15. The satellite communication system of claim 11 , wherein:

the inter-satellite communication interface is configured to discover that at least a portion of a ringlet is not available, send out a control packet on one or both of the network rings identifying the portion of the ringlet that is not available and updating a routing data structure based on the portion of the ringlet is not available.

16. The satellite communication system of claim 11 , wherein:

the ground communication interface is configured to receive a message from a ground terminal; and

the inter-satellite communication interface is configured to encapsulate the message into a layer two packet and transmit the layer two packet on one of the ringlets.

17. The satellite communication system of claim 11 , wherein:

the inter-satellite communication interface is configured to operate as a layer two switch for communication with other satellites via two network rings.

18. The satellite communication system of claim 11 , wherein:

the two network rings comprise an intra-plane ring and an inter-plane ring.

19. The satellite communication system of claim 11 , wherein:

the two network rings comprise a first ring at a first orientation and a second ring at a second orientation.

20. The satellite communication system of claim 11 , wherein:

the spacecraft is a bus of a satellite.

21. A method for operating a satellite communication system, comprising,

accessing a message for communication to a destination via a constellation of satellites orbiting the Earth, each of the satellites configured to wirelessly communicate with other satellites to form a wireless network comprising a first set of rings and a second set of rings such that each satellite of the constellation of satellites is configured to communicate in a ring of the first set of rings and communicate in a ring of the second set of rings, each ring of the first set of rings and the second set of rings comprises two ringlets transmitting in opposite directions;

identifying a target satellite of the constellation of satellites orbiting the Earth that will be in orbital position to service the destination at a future time of delivery of the message to the destination;

operating a network switch on one or more satellites of the constellation of satellites orbiting the Earth to send the message toward the identified target satellite;

transmitting the message from the identified target satellite to the destination;

automatically discovering that at least a portion of the wireless network is not available; and

sending out one or more control packets on the first set of rings and the second set of rings identifying the portion of the wireless network that is not available.

22. The method of claim 21 , wherein:

the satellites are configured to travel in planes;

the first set of rings are inter-plane rings; and

the second set of rings are intra-plane rings.

23. The method of claim 21 , further comprising:

updating routing data structures on the satellite based on the portion of the wireless network is not available; and

communicating between satellites using the updated routing data structures.

24. The method of claim 21 , wherein the method further comprises:

encapsulating the message into a layer two packet, the network switch operates as a layer two switch that sends the message encapsulated in the layer two packet toward the identified target satellite via the first set of rings and the second set of rings.

25. The method of claim 21 , wherein:

the operating the network switch on one or more satellites of the constellation of satellites orbiting the Earth to send the message toward the identified target satellite includes operating the first set of rings and the second set of rings as Resilient Packet Rings.

Assignments (16)
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 044167/0396 Recorded May 4, 2023
From: ROYAL BANK OF CANADA, AS AGENT
To: MAXAR INTELLIGENCE INC.; MAXAR SPACE LLC
Reel/Frame 063543/0001 →
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 →
SECURITY INTEREST Recorded Oct 5, 2017
From: DIGITALGLOBE, INC.; MACDONALD, DETTWILER AND ASSOCIATES LTD.; MACDONALD, DETTWILER AND ASSOCIATES CORPORATION; MACDONALD, DETTWILER AND ASSOCIATES INC.; MDA GEOSPATIAL SERVICES INC.; SPACE SYSTEMS/LORAL, LLC; MDA INFORMATION SYSTEMS LLC
To: ROYAL BANK OF CANADA, AS THE COLLATERAL AGENT
Reel/Frame 044167/0396 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 29, 2016
From: FANG, JUN
To: SPACE SYSTEMS/LORAL, LLC
Reel/Frame 040806/0679 →