Sizing satellite beam capacity

US9801075B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9801075-B2
Application numberUS-201615056350-A
CountryUS
Kind codeB2
Filing dateFeb 29, 2016
Priority dateFeb 29, 2016
Publication dateOct 24, 2017
Grant dateOct 24, 2017

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A processor includes a memory storing instructions executable by the processor. The instructions include determining a capacity of a plurality of satellite beams based at least in part on a beam traffic density associated with each of the plurality of satellite beams and transmitting, to a communication satellite, a control signal that commands the communication satellite to transmit the plurality of satellite beams in accordance with the beam traffic density determined by the processor. The processor may be incorporated into a telecommunications system that includes a communication satellite programmed to transmit signals in accordance with a plurality of beams.

First claim

Opening claim text (preview).

The invention claimed is: 1. A processor comprising a memory storing instructions executable by the processor, the instructions including: determining a beam traffic density based at least in part on a peak-to-average ratio associated with each of a plurality of satellites beams, wherein the peak-to-average ratio includes a ratio of an average number of concurrent users to a peak number of concurrent users of one of the plurality of satellite beams; determining a capacity of each of the plurality of satellite beams based at least in part on the beam traffic density associated with each of the plurality of satellite beams; and transmitting, to a communication satellite, a control signal that commands the communication satellite to transmit the plurality of satellite beams in accordance with the beam traffic density determined by the processor. 2. The processor of claim 1 , wherein the instructions include determining the beam traffic density based at least in part on a number of concurrent users in each of the plurality of satellite beams. 3. The processor of claim 1 , wherein the instructions include determining the beam traffic density for each of the plurality of satellite beams over a predetermined period of time. 4. The processor of claim 1 , wherein the instructions include determining the beam traffic density based at least in part on a probability that a number of concurrent users in each of the plurality of satellite beams is below a predetermined threshold over a predetermined period of time. 5. The processor of claim 1 , wherein the instructions include determining the beam traffic density based at least in part on an average number of concurrent users in each of the plurality of satellite beams over a predetermined period of time. 6. The processor of claim 1 , wherein the instructions include determining the capacity of each of the plurality of satellite beams based at least in part on a bandwidth associated with at least one carrier associated with each of the plurality of satellite beams and a spectral efficiency associated with the at least one carrier. 7. The processor of claim 6 , wherein the instructions include allocating a beam throughput to each of the plurality of satellite beams based at least in part on the bandwidth associated with the at least one carrier. 8. The processor of claim 7 , wherein the instructions include allocating the beam throughput to each of the plurality of satellite beams based at least in part on a number of carriers associated with each of the plurality of satellite beams. 9. The processor of claim 7 , wherein the communication satellite allocates the capacity of each of the plurality of satellite beams based at least in part on the control signal. 10. A telecommunications system comprising: a communication satellite programmed to transmit signals in accordance with a plurality of beams; a processor having a memory storing instructions executable by the processor, wherein the processor is programmed to determine a capacity of each of the plurality of beams based at least in part on a beam traffic density associated with each of the plurality of beams, wherein the processor is programmed to determine the beam traffic density based at least in part on a peak-to-average ratio associated with each of the plurality of beams, wherein the peak-to-average ratio includes a ratio of an average number of concurrent users to a peak number of concurrent users of one of the plurality of beams. 11. The telecommunications system of claim 10 , wherein the processor is programmed to determine the beam traffic density based at least in part on a number of concurrent users in each of the plurality of beams. 12. The telecommunications system of claim 10 , wherein the processor is programmed to determine the beam traffic density for each of the plurality of beams over a predetermined period of time. 13. The telecommunications system of claim 10 , wherein the processor is programmed to determine the beam traffic density based at least in part on a probability that a number of concurrent users in each of the plurality of beams is below a predetermined threshold over a predetermined period of time. 14. The telecommunications system of claim 10 , wherein the processor is programmed to determine the beam traffic density based at least in part on an average number of concurrent users in each of the plurality of beams over a predetermined period of time. 15. The telecommunications system of claim 10 , wherein the processor is programmed to determine the capacity of each of the plurality of beams based at least in part on a bandwidth associated with at least one carrier associated with each of the plurality of beams and a spectral efficiency associated with the at least one carrier. 16. The telecommunications system of claim 15 , wherein the processor is programmed to allocate a beam throughput to each of the plurality of beams based at least in part on the bandwidth associated with the at least one carrier. 17. The telecommunications system of claim 16 , wherein the processor is programmed to allocate a beam throughput to each of the plurality of beams based at least in part on a number of carriers associated with each of the plurality of beams. 18. The telecommunications system of claim 10 , wherein the processor is programmed to generate a beam layout that includes each of the plurality of beams and iteratively update the beam layout in accordance with the capacity of each of the plurality of beams. 19. A processor comprising a memory storing instructions executable by the processor, the instructions including: determining a capacity of each of a plurality of satellite beams based at least in part on a beam traffic density associated with each of the plurality of satellite beams, a bandwidth associated with at least one carrier associated with each of the plurality of satellite beams, and a spectral efficiency associated with the at least one carrier; allocating a beam throughput to each of the plurality of satellite beams based at least in part on the bandwidth associated with the at least one carrier and a number of carriers associated with each of the plurality of satellite beams; and transmitting, to a communication satellite, a control signal that commands the communication satellite to transmit the plurality of satellite beams in accordance with the beam traffic density determined by the processor. 20. A telecommunications system comprising: a communication satellite programmed to transmit signals in accordance with a plurality of beams; and a processor having a memory storing instructions executable by the processor, wherein the processor is programmed to determine a capacity of each of the plurality of beams based at least in part on a beam traffic density associated with each of the plurality of beams, determine the capacity of each of the plurality of beams based at least in part on a bandwidth associated with at least one carrier associated with each of the plurality of beams and a spectral efficiency associated with the at least one carrier, and allocate a beam throughput to each of the plurality of beams based at least in part on the bandwidth associated with the at least one carrier and on a number of carriers associated with each of the plurality of beams.

Assignees

Inventors

Classifications

  • Airborne or Satellite Networks (space-based or airborne stations H04B7/185) · CPC title

  • Space-based or airborne stations; {Stations for satellite systems}(H04B7/204 takes precedence) · CPC title

  • H04W16/24Primary

    Cell structures · CPC title

  • H04W16/28Primary

    using beam steering · CPC title

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Frequently asked questions

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What does patent US9801075B2 cover?
A processor includes a memory storing instructions executable by the processor. The instructions include determining a capacity of a plurality of satellite beams based at least in part on a beam traffic density associated with each of the plurality of satellite beams and transmitting, to a communication satellite, a control signal that commands the communication satellite to transmit the plural…
Who is the assignee on this patent?
Hughes Network Systems Llc
What technology area does this patent fall under?
Primary CPC classification H04W16/24. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Oct 24 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).