Intermediary satellite network for cross-strapping and local network decongestion
Abstract
A space-based electronic data transfer network system is disclosed. The space-based electronic data transfer network system connects to multiple external sources and transmits information securely within the network, enabling information to be quickly communicated between external satellites and ground stations. The space-based electronic data transfer network system is modularly expandable and additional external satellites and communications frequencies may be incorporated into the network by simply adding one or more additional satellites capable of communicating with the external satellite or communications frequency.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A space-based electronic data transfer network comprising:
a plurality of communicatively linked low-earth orbit satellites occupying one or more orbital planes forming at least one continuous communication loop about the Earth, wherein a first content received by a first communicatively linked low-earth orbit satellite from a first geostationary communications satellite is transmitted to a second communicatively linked low-earth orbit satellite, wherein the second communicatively linked low-earth orbit satellite transmits the first content to a second geostationary communications satellite to be transmitted to a ground station.
2 . The space-based electronic data transfer network according to claim 1 wherein a second ground station in direct communication with the second geostationary communications satellite is operating at a high upstream traffic load and the plurality of communicatively linked low-earth orbit satellites redirects upstream traffic from a first ground station in direct communication with the first geostationary communications satellite, the first ground station experiencing a lower upstream traffic load than the second ground station.
3 . The space-based electronic data transfer network according to claim 1 wherein the frequency of the communication link between the first geostationary communications satellite and the first communicatively linked low-earth orbit satellite is within a different band from the frequency of the communication link between the second communicatively linked low-earth orbit satellite and the second geostationary communications satellite.
4 . The space-based electronic data transfer network according to claim 3 wherein the frequency of the communication link between the first geostationary communications satellite and the first communicatively linked low-earth orbit satellite falls within the Ku-band.
5 . The space-based electronic data transfer network according to claim 4 wherein the frequency of the communication link between the second geostationary communications satellite and the second communicatively linked low-earth orbit satellite falls within the K-band.
6 . The space-based electronic data transfer network according to claim 4 wherein the frequency of the communication link between the second geostationary communications satellite and the second communicatively linked low-earth orbit satellite falls within the Ka-band.
7 . The space-based electronic data transfer network according to claim 4 wherein the frequency of the communication link between the second geostationary communications satellite and the second communicatively linked low-earth orbit satellite falls within the C-band.
8 . The space-based electronic data transfer network according to claim 3 wherein the frequency of the communication link between the second geostationary communications satellite and the second communicatively linked low-earth orbit satellite falls within the K-band.
9 . The space-based electronic data transfer network according to claim 8 wherein the frequency of the communication link between the second geostationary communications satellite and the second communicatively linked low-earth orbit satellite falls within the Ku-band.
10 . The space-based electronic data transfer network according to claim 8 wherein the frequency of the communication link between the second geostationary communications satellite and the second communicatively linked low-earth orbit satellite falls within the Ka-band.
11 . The space-based electronic data transfer network according to claim 8 wherein the frequency of the communication link between the second geostationary communications satellite and the second communicatively linked low-earth orbit satellite falls within the C-band.
12 . The space-based electronic data transfer network according to claim 3 wherein the frequency of the communication link between the second geostationary communications satellite and the second communicatively linked low-earth orbit satellite falls within the Ka-band.
13 . The space-based electronic data transfer network according to claim 12 wherein the frequency of the communication link between the second geostationary communications satellite and the second communicatively linked low-earth orbit satellite falls within the Ku-band.
14 . The space-based electronic data transfer network according to claim 12 wherein the frequency of the communication link between the second geostationary communications satellite and the second communicatively linked low-earth orbit satellite falls within the K-band.
15 . The space-based electronic data transfer network according to claim 12 wherein the frequency of the communication link between the second geostationary communications satellite and the second communicatively linked low-earth orbit satellite falls within the C-band.
16 . The space-based electronic data transfer network according to claim 3 wherein the frequency of the communication link between the second geostationary communications satellite and the second communicatively linked low-earth orbit satellite falls within the C-band.
17 . The space-based electronic data transfer network according to claim 16 wherein the frequency of the communication link between the second geostationary communications satellite and the second communicatively linked low-earth orbit satellite falls within the Ku-band.
18 . The space-based electronic data transfer network according to claim 16 wherein the frequency of the communication link between the second geostationary communications satellite and the second communicatively linked low-earth orbit satellite falls within the K-band.
19 . The space-based electronic data transfer network according to claim 16 wherein the frequency of the communication link between the second geostationary communications satellite and the second communicatively linked low-earth orbit satellite falls within the Ka-band.
20 . The space-based electronic data transfer network according to claim 1 wherein the space-based electronic data transfer network is modularly expandable.Join the waitlist — get patent alerts
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