EP3611902A1

Secured multi-payload antennas operators operations

Abstract

A disclosed method for secured multi-payload antennas operators operations comprises generating, by a satellite operations center, SOC, customer commands using an antenna location pointing request for each of at least one antenna associated with each of at least one customer. The method further comprises transmitting, by a satellite operation center (SOC), the customer commands and SOC commands to a vehicle via a ground antenna, where the SOC commands are related to at least one antenna associated with a host. Also, the method comprises generating customer antenna gimballing commands by using the customer commands, and generating host antenna gimballing commands by using the SOC commands. Further, the method comprises gimballing respectively each of the antenna(s) associated with each of the customer(s) by using the customer antenna gimballing commands, and gimballing respectively each of the antenna(s) associated with the host by using the host antenna gimballing commands.

EP3611902A1, drawing sheet 1
Sheet 1 of 22

Term

11.4 yearsto projected expiry

Projected expiry 10 February 2038, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

15 claims: 5 independent, 10 dependent

  1. 1
    A method for secured multi-payload antennas operators operations, the method comprising:transmitting, by at least one customer (770) to a satellite operation center, SOC (750), an antenna location pointing request for each of at least one antenna (721) associated with each of the at least one customer;generating, by the satellite operation center, SOC (750) unencrypted customer commands using the antenna location pointing request for each of the at least one antenna;encrypting, by the SOC, the unencrypted customer commands utilizing a communication security variety, COMSEC, to generate encrypted customer commands;encrypting, by the SOC, unencrypted SOC commands utilizing the COMSEC variety to generate encrypted SOC commands, wherein the unencrypted SOC commands are related to at least one antenna ( 720) associated with a host;transmitting the encrypted customer commands and the encrypted SOC commands by the SOC to a ground antenna (730);transmitting, by the ground antenna, the encrypted customer commands and the encrypted SOC commands to a vehicle (110, 310, 510,);decrypting, by a communication security module (745) on the vehicle, the encrypted customer commands utilizing the COMSEC variety to generate the unencrypted customer commands;decrypting, by the communication security module on the vehicle, the encrypted SOC commands utilizing the COMSEC variety to generate the unencrypted SOC commands;generating, by at least one processor (755), customer antenna gimballing commands for each respective the at least one antenna associated with each of the at least one customer by using the unencrypted customer commands;generating, by the at least one processor (755), host antenna gimballing commands for each respective the at least one antenna associated with the host by using the unencrypted SOC commands;gimballing respectively each of the at least one antenna associated with each of the at least one customer by using the customer antenna gimballing commands;gimballing respectively each of the at least one antenna associated with the host by using the host antenna gimballing commands;generating, by the at least one processor, unencrypted telemetry by using antenna gimballing telemetry;encrypting, by the communication security module, the unencrypted telemetry using the COMSEC variety to generate encrypted telemetry;transmitting, by the vehicle, the encrypted telemetry to the ground antenna;transmitting, by the ground antenna, the encrypted telemetry to the SOC;decrypting, by the SOC, the encrypted telemetry utilizing the COMSEC variety to generate the unencrypted telemetry;generating, by the SOC, an antenna pointing location for each of the at least one antenna associated with each of the at least one customer by using the unencrypted telemetry;and transmitting, by the SOC, the antenna pointing location for each of the at least one antenna associated with each of the at least one customer respectively to each of the at least one customer.
  2. 3
    The method of any of claims 1 or 2, wherein the at least one antenna associated with the host comprises at least one antenna reflector.
  3. 4
    The method of any of claims 1-3, wherein the vehicle is one of a satellite, an aircraft, an unmanned aerial vehicle (UAV), or a space plane.
  4. 5
    The method of any of claims 1-4, wherein the COMSEC variety comprises at least one of at least one encryption key or at least one algorithm.
  5. 6
    The method of any of claims 1-5, wherein the ground antenna (730) transmits the encrypted customer commands and the encrypted SOC commands utilizing an out-of-band frequency.
  6. 7
    The method of any of claims 1- 6, wherein the vehicle transmits the encrypted telemetry to the ground antenna utilizing an out-of-band frequency.
  7. 9
    The method of any of claims 1-8, wherein the SOC utilizes a database that comprises host antenna decommutated information and does not comprise customer antenna decommutated information to read to unencrypted telemetry to determine the telemetry data related to the antenna(s) (720) that is utilized by the SOC.
  8. 10
    The method of any of claims 1-9, wherein the SOC utilizes, in a secure portion of the SOC, a database that comprises customer antenna decommutated information and does not comprise host antenna decommutated information to read to unencrypted telemetry to determine the telemetry data related to the antenna(s) (721) that is utilized by the customers (770).
  9. 11
    A system for secured multi-payload antennas operators operations, the system comprising:a SOC (750) configured to generate unencrypted customer commands using an antenna location pointing request for each of at least one antenna (721) associated with each of at least one customer;the SOC configured to encrypt the unencrypted customer commands utilizing a communication security "COMSEC" variety to generate encrypted customer commands, to encrypt unencrypted SOC commands utilizing the COMSEC variety to generate encrypted SOC commands, wherein the unencrypted SOC commands are related to at least one antenna (720) associated with the host, and to transmit the encrypted customer commands and the encrypted SOC commands to a ground antenna (, 730);a ground antenna (730) to transmit the encrypted customer commands and the encrypted SOC commands to a vehicle (710);a communication security module (745) on the vehicle to decrypt the encrypted AOC commands utilizing the COMSEC variety to generate the unencrypted AOC commands, and to decrypt the encrypted SOC commands utilizing the COMSEC variety to generate the unencrypted SOC commands;at least one processor to generate customer antenna gimballing commands for each respective the at least one antenna associated with each of the at least one customer by using the unencrypted customer commands, and to generate host antenna gimballing commands for each respective the at least one antenna associated with the host by using the unencrypted SOC commands;wherein the system configured to perform the methods of any of claims 1-10.
  10. 13
    The system of any of claims 11 or 12, wherein the at least one antenna associated with the host comprises at least one antenna reflector.
  11. 14
    The system of any of claims 11- 13, wherein the vehicle is one of a satellite, an aircraft, an unmanned aerial vehicle (UAV), or a space plane.
  12. 15
    The system of any of claims 11-14, wherein the system comprises at least one command receiver (740) configured to receive the encrypted customer commands and the encrypted SOC commands.