IP Library Patent Application 11039971
Patent Application
App. No. 11/039,971

Offset satellite communication cell arrays with orthogonal polarizations

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Quick Facts
Patent No.
US None
App. No.
11/039,971
Abstract

A communication satellite has multiple communication signal amplifiers coupled to multiple transmit horns that transmit communication signals to multiple corresponding geographic cells. The satellite includes a first set of communication signal amplifiers and transmit horns that cooperate to deliver multiple distinct communication signals of a first polarization to a first array of multiple adjacent geographic cells having interstices or intersections between them. The satellite also includes a second set of communication signal amplifiers and transmit horns that cooperate to deliver multiple distinct communication signals of a second polarization to a second array of multiple adjacent geographic cells having interstices or intersections between them. The first and second polarizations are orthogonal to each other, such as horizontal and vertical polarizations or right- and left-circular polarizations. In addition, the adjacent geographic cells of the first array are generally centered at the interstices between and overlap the cells of the second array, and the cells of the second array are generally centered at the interstices between and overlap the cells of the first array.

Claims (25)

1 . A communication satellite having plural communication signal amplifiers coupled to plural transmit horns that transmit communication signals to plural corresponding geographic cells, the improvement comprising:

a first set of communication signal amplifiers and transmit horns that cooperate to deliver plural distinct communication signals of a first polarization to a first array of plural adjacent geographic cells having first interstices between them; and

a second set of communication signal amplifiers and transmit horns that cooperate to deliver plural distinct communication signals of a second polarization to a second array of plural adjacent geographic cells having second interstices between them, the second polarization being orthogonal to the first polarization and the adjacent geographic cells of the second array generally being centered at the first interstices and substantially overlapping geographic cells of the first array.

2 . The satellite of claim 1 in which cells in the respective first and second arrays are in close-packed arrangements with each other.

3 . The satellite of claim 1 in which the cells in the first and second arrays include central regions with increased signal-to-noise ratios and the positioning of the cells in the first and second arrays provides a close-packed arrangement of the central regions of the cells in the first and second arrays.

4 . The satellite of claim 3 in which the central regions of the cells in the first array are substantially surrounded by the central regions of the cells in the second array and in which the central regions of the cells in the second array are substantially surrounded by the central regions of the cells in the first array.

5 . The satellite of claim 1 in which each of the communication signal amplifiers delivers plural distinct communication signals to plural respective transmit horns on a common set of frequency-distinct communication sub-bands and the transmit horns are coupled to the communication signal amplifiers so that immediately adjacent geographic cells of the respective first and second arrays do not receive communication signals on the same communication sub-bands.

6 . The satellite of claim 5 in which the cells in the first and second arrays include central regions with increased signal-to-noise ratios and the positioning of the cells in the first and second arrays provides a close-packed arrangement of the central regions of the cells in the first and second arrays.

7 . The satellite of claim 6 in which the central region of a cell of a selected polarization and a selected communication sub-band is separated from an adjacent central region of a cell of the selected polarization and selected communication sub-band by at least the full extent of the central region of a cell having a polarization or a sub-band different from the selected polarization and the selected communication sub-band.

8 . A satellite communication method that includes transmitting communication signals to plural geographic cells, the method comprising:

delivering plural distinct communication signals of a first polarization to a first array of plural adjacent geographic cells having first interstices between them; and

delivering plural distinct communication signals of a second polarization to a second array of plural adjacent geographic cells having second interstices between them, the second polarization being orthogonal to the first polarization and the adjacent geographic cells of the second array generally being centered at the first interstices and substantially overlapping geographic cells of the first array.

9 . The method of claim 8 in which cells in the respective first and second arrays are in close-packed arrangements with each other.

10 . The method of claim 8 in which the cells in the first and second arrays include central regions with increased signal-to-noise ratios and the positioning of the cells in the first and second arrays provides a close-packed arrangement of the central regions of the cells in the first and second arrays.

11 . The method of claim 10 in which the central regions of the cells in the first array are substantially surrounded by the central regions of the cells in the second array and in which the central regions of the cells in the second array are substantially surrounded by the central regions of the cells in the first array.

12 . The method of claim 8 in which delivering plural distinct communication signals of the first and second polarizations includes delivering the plural distinct communication signals on a common set of frequency-distinct communication sub-bands, whereby immediately adjacent geographic cells of the respective first and second arrays do not receive communication signals on the same communication sub-bands.

13 . The method of claim 12 in which the cells in the first and second arrays include central regions with increased signal-to-noise ratios and the positioning of the cells in the first and second arrays provides a close-packed arrangement of the central regions of the cells in the first and second arrays.

14 . The method of claim 13 in which the central region of a cell of a selected polarization and a selected communication sub-band is separated from an adjacent central region of a cell of the selected polarization and selected communication sub-band by at least the full extent of the central region of a cell having a polarization or a sub-band different from the selected polarization and the selected communication sub-band.

15 . A communication satellite having plural communication signal amplifiers coupled to plural transmit horns that transmit communication signals to plural corresponding geographic cells, the improvement comprising:

a first set of communication signal amplifiers and transmit horns that cooperate to deliver plural distinct communication signals of a first signal characteristic to a first array of plural adjacent geographic cells having first interstices between them; and

a second set of communication signal amplifiers and transmit horns that cooperate to deliver plural distinct communication signals of a second signal characteristic to a second array of plural adjacent geographic cells having second interstices between them, the second signal characteristic being distinctive relative to the first signal characteristic and the adjacent geographic cells of the second array generally being centered at the first interstices and substantially overlapping geographic cells of the first array.

16 . The satellite of claim 15 in which the first and second signal characteristics relate to signal polarizations, signal frequencies, or both.

17 . The satellite of claim 15 in which the first and second signal characteristics relate to signal frequencies.

18 . The satellite of claim 15 in which the cells in the first and second arrays include central regions with increased signal-to-noise ratios and the positioning of the cells in the first and second arrays provides a close-packed arrangement of the central regions of the cells in the first and second arrays.

19 . The satellite of claim 15 in which each of the communication signal amplifiers delivers plural distinct communication signals to plural respective transmit horns on a common set of frequency-distinct communication sub-bands and the transmit horns are coupled to the communication signal amplifiers so that immediately adjacent geographic cells of the respective first and second arrays do not receive communication signals on the same communication sub-bands.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 21, 2007
From: SPACECODE LLC
To: SPACECODE LLC; STAR NUCLEUS COMPANY LIMITED
Reel/Frame 019323/0043 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 12, 2005
From: THOMPSON, MARK D.
To: SPACECODE LLC
Reel/Frame 016968/0135 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 3, 2005
From: BUCCA, STEVE
To: SPACECODE LLC
Reel/Frame 016968/0173 →