IP Library Granted Patent US 10,425,890
Granted Patent B2
US 10,425,890 · App. 15/444,854 · Granted Sep 24, 2019

Low power mode in a satellite-based broadcast data service

Inventors: James William Bishop, Jr. (Colorado Springs, CO); Corey Alan Miller (Phoenix, AZ); Thomas Russell Topping (Phoenix, AZ)
H04W52/0203H04B7/18523H04H20/426H04H20/74H04H40/90H04H60/06H04W52/0216H04W72/005Y02D70/00Y02D70/446
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Quick Facts
Patent No.
US 10,425,890
App. No.
15/444,854
Granted
Sep 24, 2019
Kind
B2
Abstract

A satellite system controller for a satellite system can comprise a receiving module, an interval selector, an epoch selector, and a scheduler. The receiving module can receive, from a transmission originator device, a set interval request message requesting the satellite system controller set a transmission interval and an epoch time for a satellite receiver, the transmission interval being an amount of time the satellite receiver is to remain in a sleep mode between expected transmissions and the epoch time being an instant at which the satellite receiver is to expect a satellite transmission. The interval selector can determine, based on the transmission interval, a sleep mode cycle for the satellite receiver. The epoch selector can select the epoch time according to the sleep mode cycle and the scheduler can schedule the satellite transmission with the satellite system at approximately the epoch time and according to the sleep mode cycle.

Claims (24)

1. A satellite receiver, comprising:

a satellite receiver controller to retrieve a transmission interval and an epoch time from a wakeup list, select a next wakeup time, enter a sleep mode according to said transmission interval, exit said sleep mode according to said transmission interval, and receive a satellite transmission according to said epoch time;

wherein said transmission interval is an amount of time said satellite receiver is to remain in said sleep mode between expected transmissions and said epoch time is an instant, after the satellite receiver awakes from the sleep mode, at which said satellite receiver expects broadcasts to be transmitted.

2. The satellite receiver according to claim 1 , further comprising:

a reception module to receive a satellite transmission including said transmission interval and said epoch time;

wherein said satellite receiver controller enters said transmission interval and said epoch time in said wakeup time list.

3. The satellite receiver according to claim 1 , wherein an epoch selector at a remote broadcast controller determines a least-loaded epoch time as a basis for selecting said epoch time.

4. The satellite receiver according to claim 3 , wherein said epoch selector selects said epoch time based on a number of broadcast groups utilizing said epoch time.

5. The satellite receiver according to claim 3 , wherein said epoch selector selects said epoch time based on an intersection of available epoch times according to said transmission interval and one or more in-use epoch times.

6. The satellite receiver according to claim 3 , wherein said epoch selector selects said epoch time for a broadcast group.

7. The satellite receiver according to claim 1 , wherein an interval selector at a remote broadcast controller determines said sleep mode cycle based on a native time scale of said satellite system.

8. A satellite receiver communication method, comprising:

retrieving, with a satellite receiver controller of said satellite receiver, a transmission interval and an epoch time from a wakeup list, said transmission interval being an amount of time said satellite receiver is to remain in a sleep mode between expected transmissions and said epoch time being an instant, after the satellite receiver awakes from the sleep mode, at which said satellite receiver expects broadcasts to be transmitted;

entering said sleep mode according to said transmission interval;

exiting said sleep mode according to said transmission interval; and

receiving a satellite transmission according to said epoch time.

9. The satellite receiver communication method according to claim 8 , further comprising:

receiving a satellite transmission including said transmission interval and said epoch time; and

entering said transmission interval and said epoch time in said wakeup time list.

10. The satellite receiver communication method according to claim 8 , further comprising determining, via a remote broadcast controller, a least-loaded epoch time as a basis for selecting said epoch time.

11. The satellite receiver communication method according to claim 8 , wherein said epoch time is selected based on a number of broadcast groups utilizing said epoch time.

12. The satellite receiver communication method according to claim 8 , wherein said epoch time is selected based on an intersection of available epoch times according to said transmission interval and one or more in-use epoch times.

13. The satellite receiver communication method according to claim 8 , wherein said epoch time is selected for a broadcast group.

14. The satellite receiver communication method according to claim 8 , further comprising determining said sleep mode cycle based on a native time scale of said satellite system.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2023
From: BISHOP, JR., JAMES WILLIAM; MILLER, COREY ALAN; TOPPING, THOMAS RUSSELL
To: EXELIS INC.
Reel/Frame 062755/0177 →
MERGER Recorded Feb 21, 2023
From: EXELIS INC.
To: HARRIS CORPORATION
Reel/Frame 062755/0447 →
Continuity (2)
Division 14726416 · May 29, 2015
Related Publication 20170171808A1 · Jun 15, 2017