IP Library Granted Patent US 12689438
Granted Patent B2
US 12689438 · App. 18/724,675 · Granted Jul 21, 2026

User satellite, relay satellite, satellite system and communication method

Inventors: Takehiko Sonoda (Saitama, JP); Masanori Seki (Ibaraki, JP)
Assignee: Warpspace, Inc.
H04B10/118H04B10/29
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Quick Facts
Patent No.
US 12689438
App. No.
18/724,675
Granted
Jul 21, 2026
Kind
B2
Abstract

There is provided a technique for implementing instantly responsive communication flexibly by setting communication occasions in an on-demand manner that are not included in a communication plan scheduled in advance for inter-satellite optical communication. One aspect of the present disclosure relates to a satellite including an optical signal obtainer that captures an optical beacon transmitted from a relay satellite in response to a communication request received from an earth station, an image processor that retrieves a bright spot in a captured image frame, an optical beacon detector that detects the optical beacon based on a flickering state of the retrieved bright spot, and an optical communicator that establishes inter-satellite optical communication with the relay satellite based on the detected optical beacon.

Claims (56)

1 . A relay satellite, comprising:

a communicator that communicates with an earth station;

an optical signal transceiver that, in response to a communication request for a satellite received from the earth station, transmits an optical beacon to the satellite and receives a response signal from the satellite detecting the optical beacon;

an optical communicator that establishes inter-satellite optical communication with the satellite based on reception of the response signal; and

a communication controller that uses the communicator to relay data received from the satellite in the inter-satellite optical communication to the earth station,

wherein the optical communicator performs inter-satellite optical communication based on a predetermined communication schedule and upon receiving a communication request for a satellite from the earth station, establishes inter-satellite optical communication with the satellite with priority over the predetermined communication schedule.

2 . The relay satellite as claimed in claim 1 , wherein the optical beacon has a predetermined flickering pattern including identification information of the relay satellite and identification information of the satellite.

3 . The relay satellite as claimed in claim 1 , wherein the optical signal transceiver transmits an optical beacon including a predetermined flickering pattern.

4 . A relay satellite, comprising:

a communicator that communicates with an earth station;

an optical signal transceiver that, in response to a communication request for a satellite received from the earth station, transmits an optical beacon to the satellite and receives a response signal from the satellite detecting the optical beacon;

an optical communicator that establishes inter-satellite optical communication with the satellite based on reception of the response signal; and

a communication controller that uses the communicator to relay data received from the satellite in the inter-satellite optical communication to the earth station,

wherein the optical communicator performs inter-satellite optical communication based on a predetermined communication schedule and upon receiving a communication request for a satellite from the earth station, uses spare time in the communication schedule to establish inter-satellite optical communication with the satellite.

5 . The relay satellite as claimed in claim 4 , wherein the optical beacon has a predetermined flickering pattern including identification information of the relay satellite and identification information of the satellite.

6 . The relay satellite as claimed in claim 4 , wherein the optical signal transceiver transmits an optical beacon including a predetermined flickering pattern.

7 . A data relay method implemented by a relay satellite, the method comprising:

transmitting, in response to a communication request for a satellite received from an earth station, an optical beacon to the satellite;

receiving a response signal from the satellite detecting the optical beacon;

establishing inter-satellite optical communication with the satellite based on reception of the response signal; and

relaying data received from the satellite in the inter-satellite optical communication to the earth station,

wherein the establishing comprises performing inter-satellite optical communication based on a predetermined communication schedule and upon receiving a communication request for a satellite from the earth station, using spare time in the communication schedule to establish inter-satellite optical communication with the satellite.

8 . A data relay method implemented by a relay satellite, the method comprising:

transmitting, in response to a communication request for a satellite received from an earth station, an optical beacon to the satellite;

receiving a response signal from the satellite detecting the optical beacon;

establishing inter-satellite optical communication with the satellite based on reception of the response signal; and

relaying data received from the satellite in the inter-satellite optical communication to the earth station,

wherein the establishing comprises performing inter-satellite optical communication based on a predetermined communication schedule and upon receiving a communication request for a satellite from the earth station, establishes inter-satellite optical communication with the satellite with priority over the communication schedule.

9 . A data relay method implemented by a relay satellite, the method comprising:

performing inter-satellite optical communication based on a predetermined communication schedule;

upon receiving a communication request for a satellite received from an earth station, determining an instantly responsive communication time that is not scheduled in the predetermined communication schedule;

in response to the communication request, transmitting an optical beacon to the satellite;

receiving a response signal from the satellite detecting the optical beacon;

establishing inter-satellite optical communication with the satellite based on reception of the response signal;

receiving data from the satellite in the inter-satellite optical communication within the instantly responsive communication time; and

relaying the data to the earth station.

10 . A relay satellite, comprising:

a communicator that communicates with an earth station;

an optical signal transceiver that transmits an optical beacon to a satellite and receives a response signal from the satellite detecting the optical beacon;

an optical communicator that in response to the response signal, establishes inter-satellite optical communication with the satellite based on a predetermined communication schedule; and

a communication controller that receives data from the satellite in the inter-satellite optical communication and uses the communicator to relay the data to the earth station,

wherein in response to a communication request for the satellite received from the earth station, the optical signal transceiver transmits the optical beacon to the satellite, and in response to the communication request, the optical communicator further determines an instantly responsive communication time that is not scheduled in the predetermined communication schedule to establish inter-satellite optical communication with the satellite in the instantly responsive communication time.

11 . A data relay method implemented by a relay satellite, the method comprising:

performing inter-satellite optical communication based on a predetermined communication schedule;

upon receiving a communication request for a satellite received from an earth station, determining an instantly responsive communication time with priority over the predetermined communication schedule;

in response to the communication request, transmitting an optical beacon to the satellite;

receiving a response signal from the satellite detecting the optical beacon;

establishing inter-satellite optical communication with the satellite based on reception of the response signal;

receiving data from the satellite in the inter-satellite optical communication within the instantly responsive communication time; and

relaying the data to the earth station.

12 . A relay satellite, comprising:

a communicator that communicates with an earth station;

an optical signal transceiver that transmits an optical beacon to a satellite and receives a response signal from the satellite detecting the optical beacon;

an optical communicator that in response to the response signal, establishes inter-satellite optical communication with the satellite based on a predetermined communication schedule; and

a communication controller that receives data from the satellite in the inter-satellite optical communication and uses the communicator to relay the data to the earth station,

wherein in response to a communication request for the satellite received from the earth station, the optical signal transceiver transmits the optical beacon to the satellite, and in response to the communication request, the optical communicator further determines an instantly responsive communication time with priority over the predetermined communication schedule to establish inter-satellite optical communication with the satellite in the instantly responsive communication time.