Patents by Inventor Andrew Michael Neish

Andrew Michael Neish has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 12366665
    Abstract: A satellite constellation system includes a plurality of satellites, wherein each satellite is configured to orbit in one of a plurality of orbital planes of the satellite constellation system at an altitude range corresponding to low earth orbit (LEO), wherein each of the plurality of orbital planes includes a corresponding one of a plurality of satellite subsets of a plurality of satellites, wherein a first orbital plane of the plurality of orbital planes corresponds to a first coverage area facilitated by a plurality of navigation signals transmitted by ones of the plurality of satellites in the first orbital plane, wherein the plurality of navigation signals transmitted by the ones of the plurality of satellites in the first orbital plane each have a first primary pseudo-random noise (PRN) code; and wherein a second orbital plane of the plurality of orbital planes corresponds to a second coverage area facilitated by a plurality of navigation signals transmitted by ones of the plurality of satellites in th
    Type: Grant
    Filed: April 19, 2024
    Date of Patent: July 22, 2025
    Assignee: Xona Space Systems Inc.
    Inventors: Andrew Michael Neish, Robert Martin Grayson, Tyler Gerald René Reid, Adrien Louis Henry Perkins
  • Publication number: 20250216558
    Abstract: A satellite constellation system includes a plurality of satellites, wherein each satellite is configured to orbit in one of a plurality of orbital planes of the satellite constellation system at an altitude range corresponding to low earth orbit (LEO), wherein each of the plurality of orbital planes includes a corresponding one of a plurality of satellite subsets of a plurality of satellites, wherein a first orbital plane of the plurality of orbital planes corresponds to a first coverage area facilitated by a plurality of navigation signals transmitted by ones of the plurality of satellites in the first orbital plane, wherein the plurality of navigation signals transmitted by the ones of the plurality of satellites in the first orbital plane each have a first primary pseudo-random noise (PRN) code; and wherein a second orbital plane of the plurality of orbital planes corresponds to a second coverage area facilitated by a plurality of navigation signals transmitted by ones of the plurality of satellites in th
    Type: Application
    Filed: April 19, 2024
    Publication date: July 3, 2025
    Applicant: Xona Space Systems Inc.
    Inventors: Andrew Michael Neish, Robert Martin Grayson, Tyler Gerald René Reid, Adrien Louis Henry Perkins
  • Patent number: 12228654
    Abstract: A node of a satellite constellation system includes a global positioning receiver configured to receive first signaling from a first plurality of non-LEO navigation satellites of a constellation of non-LEO navigation satellites in non-LEO around the earth. A transceiver is configured to send and receive inter-node communications with other nodes of the satellite constellation system. At least one processor is configured to execute operational instructions that cause the at least one processor to perform operations that include: determining a state of the node of the satellite constellation system based on applying precise point positioning (PPP) correction data to the first signaling, wherein the PPP correction data is received separately from the first signaling; and generating a navigation message based on the state of the node.
    Type: Grant
    Filed: November 3, 2022
    Date of Patent: February 18, 2025
    Assignee: Xona Space Systems Inc.
    Inventors: Tyler Gerald René Reid, Kazuma Gunning, Adrien Louis Henry Perkins, Andrew Michael Neish
  • Patent number: 12189041
    Abstract: A ground-based node of a satellite system operates by: communicating control data with LEO navigation satellites in LEO around the earth; transmitting corrections data to the LEO navigation satellites; receiving a first collection of observations based on signaling from non-LEO navigation satellites in non-LEO around the earth, the signaling including collected observations from the non-LEO navigation satellites; receiving a second collection of observations based on navigation messages from the LEO navigation satellites, wherein the navigation messages facilitate client devices to determine their enhanced position when received in conjunction with second signaling from the non-LEO navigation satellites, and wherein the navigation messages are generated by the LEO navigation satellites in response to the corrections data; updating the corrections data based on the first collection of observations, the second collection of observations and based on telemetry data corresponding to the LEO navigation satellites
    Type: Grant
    Filed: October 30, 2023
    Date of Patent: January 7, 2025
    Assignee: Xona Space Systems Inc.
    Inventors: Tyler Gerald René Reid, Kazuma Gunning, Adrien Louis Henry Perkins, Andrew Michael Neish
  • Publication number: 20240302532
    Abstract: A ground-based node of a satellite system operates by: communicating control data with LEO navigation satellites in LEO around the earth; transmitting corrections data to the LEO navigation satellites; receiving a first collection of observations based on signaling from non-LEO navigation satellites in non-LEO around the earth, the signaling including collected observations from the non-LEO navigation satellites; receiving a second collection of observations based on navigation messages from the LEO navigation satellites, wherein the navigation messages facilitate client devices to determine their enhanced position when received in conjunction with second signaling from the non-LEO navigation satellites, and wherein the navigation messages are generated by the LEO navigation satellites in response to the corrections data; updating the corrections data based on the first collection of observations, the second collection of observations and based on telemetry data corresponding to the LEO navigation satellites
    Type: Application
    Filed: October 30, 2023
    Publication date: September 12, 2024
    Applicant: Xona Space Systems Inc.
    Inventors: Tyler Gerald René Reid, Kazuma Gunning, Adrien Louis Henry Perkins, Andrew Michael Neish
  • Publication number: 20240255653
    Abstract: A satellite is operable to generate a navigation message. Encrypted navigation message data is generated from the navigation message by applying an encryption scheme to the navigation message. An encrypted ranging signal is generated by applying the encryption scheme to a spreading code of the satellite. A secure navigation signal is generated based on modulating the encrypted navigation message data upon the encrypted ranging signal. The secure navigation signal is broadcast for receipt by at least one client device. The secure navigation signal facilitates the at least one client device to determine state data of the at least one client device by utilizing key data associated with the encryption scheme.
    Type: Application
    Filed: December 22, 2023
    Publication date: August 1, 2024
    Applicant: Xona Space Systems Inc.
    Inventors: Andrew Michael Neish, Robert Martin Grayson, Joshua Earl McGhee
  • Patent number: 12032076
    Abstract: A low-earth orbit (LEO) satellite operates to: determine an orbital position of the LEO satellite based on the first signaling and based on precise point positioning (PPP) correction data associated with the constellation of non-LEO navigation satellites, wherein the PPP correction data includes orbital correction data and timing correction data associated with the constellation of non-LEO navigation satellites, and wherein the PPP correction data is received separate from the first signaling; determine, based on the inter-satellite communications, an error condition associated with one of the other LEO navigation satellites of the constellation of LEO navigation satellites; and broadcast a navigation message based on the orbital position, wherein the navigation message includes a timing signal and the orbital position associated with the LEO satellite, correction data associated with the constellation of non-LEO navigation satellites, and an alert signal that indicates the error condition associated with one
    Type: Grant
    Filed: April 18, 2023
    Date of Patent: July 9, 2024
    Assignee: Xona Space Systems Inc.
    Inventors: Kazuma Gunning, Andrew Michael Neish, Adrien Louis Henry Perkins
  • Publication number: 20240125944
    Abstract: A low-earth orbit (LEO) satellite operates to: determine an orbital position of the LEO satellite based on the first signaling and based on precise point positioning (PPP) correction data associated with the constellation of non-LEO navigation satellites, wherein the PPP correction data includes orbital correction data and timing correction data associated with the constellation of non-LEO navigation satellites, and wherein the PPP correction data is received separate from the first signaling; determine, based on the inter-satellite communications, an error condition associated with one of the other LEO navigation satellites of the constellation of LEO navigation satellites; and broadcast a navigation message based on the orbital position, wherein the navigation message includes a timing signal and the orbital position associated with the LEO satellite, correction data associated with the constellation of non-LEO navigation satellites, and an alert signal that indicates the error condition associated with one
    Type: Application
    Filed: April 18, 2023
    Publication date: April 18, 2024
    Applicant: Xona Space Systems Inc.
    Inventors: Kazuma Gunning, Andrew Michael Neish, Adrien Louis Henry Perkins
  • Patent number: 11899120
    Abstract: A navigation processing system includes at least one processor configured to execute operational instructions that cause the at least one processor to perform operations that include generating navigation data. A data stream is generated based on the navigation data and a data channel spreading sequence. A pilot stream is generated based on a pilot channel spreading sequence. A navigation signal is generated based on applying a bandwidth-efficient modulation scheme to the data stream and the pilot stream. The navigation is signal is broadcast via a navigation signal transmitter for receipt by at least one client device.
    Type: Grant
    Filed: June 30, 2021
    Date of Patent: February 13, 2024
    Assignee: Xona Space Systems Inc.
    Inventors: Robert Martin Grayson, Andrew Michael Neish, Joshua Earl McGhee
  • Patent number: 11640002
    Abstract: A low-earth orbit (LEO) satellite includes a global positioning receiver configured to receive first signaling from a first plurality of non-LEO navigation satellites of a constellation of non-LEO navigation satellites in non-LEO around the earth. An inter-satellite transceiver is configured to send and receive inter-satellite communications with other LEO navigation satellites in a constellation of LEO navigation satellites. At least one processor is configured to execute operational instructions that cause the at least one processor to perform operations that include: determining an orbital position of the LEO satellite based on applying precise point positioning (PPP) correction data to the first signaling, wherein the PPP correction data is received separately from the first signaling; and generating a navigation message based on the orbital position.
    Type: Grant
    Filed: October 27, 2022
    Date of Patent: May 2, 2023
    Assignee: Xona Space Systems Inc.
    Inventors: Tyler Gerald René Reid, Kazuma Gunning, Adrien Louis Henry Perkins, Andrew Michael Neish
  • Publication number: 20230130388
    Abstract: A node of a satellite constellation system includes a global positioning receiver configured to receive first signaling from a first plurality of non-LEO navigation satellites of a constellation of non-LEO navigation satellites in non-LEO around the earth. A transceiver is configured to send and receive inter-node communications with other nodes of the satellite constellation system. At least one processor is configured to execute operational instructions that cause the at least one processor to perform operations that include: determining a state of the node of the satellite constellation system based on applying precise point positioning (PPP) correction data to the first signaling, wherein the PPP correction data is received separately from the first signaling; and generating a navigation message based on the state of the node.
    Type: Application
    Filed: November 3, 2022
    Publication date: April 27, 2023
    Applicant: Xona Space Systems Inc.
    Inventors: Tyler Gerald René Reid, Kazuma Gunning, Adrien Louis Henry Perkins, Andrew Michael Neish
  • Publication number: 20230055546
    Abstract: A low-earth orbit (LEO) satellite includes a global positioning receiver configured to receive first signaling from a first plurality of non-LEO navigation satellites of a constellation of non-LEO navigation satellites in non-LEO around the earth. An inter-satellite transceiver is configured to send and receive inter-satellite communications with other LEO navigation satellites in a constellation of LEO navigation satellites. At least one processor is configured to execute operational instructions that cause the at least one processor to perform operations that include: determining an orbital position of the LEO satellite based on applying precise point positioning (PPP) correction data to the first signaling, wherein the PPP correction data is received separately from the first signaling; and generating a navigation message based on the orbital position.
    Type: Application
    Filed: October 27, 2022
    Publication date: February 23, 2023
    Applicant: Xona Space Systems Inc.
    Inventors: Tyler Gerald René Reid, Kazuma Gunning, Adrien Louis Henry Perkins, Andrew Michael Neish
  • Publication number: 20230003907
    Abstract: A navigation processing system includes at least one processor configured to execute operational instructions that cause the at least one processor to perform operations that include generating navigation data. A data stream is generated based on the navigation data and a data channel spreading sequence. A pilot stream is generated based on a pilot channel spreading sequence. A navigation signal is generated based on applying a bandwidth-efficient modulation scheme to the data stream and the pilot stream. The navigation is signal is broadcast via a navigation signal transmitter for receipt by at least one client device.
    Type: Application
    Filed: June 30, 2021
    Publication date: January 5, 2023
    Applicant: Xona Space Systems Inc.
    Inventors: Robert Martin Grayson, Andrew Michael Neish, Joshua Earl McGhee
  • Patent number: 11513232
    Abstract: A low-earth orbit (LEO) satellite includes a global positioning receiver configured to receive first signaling from a first plurality of non-LEO navigation satellites. An inter-satellite transceiver is configured to send and receive inter-satellite communications with other LEO navigation satellites. At least one processor is configured to execute operational instructions that cause the at least one processor to perform operations that include: determining an orbital position of the LEO satellite based on the first signaling; and generating a navigation message based on the orbital position. A navigation signal transmitter configured to broadcast the navigation message to at least one client device, the navigation message facilitating the at least one client device to determine an enhanced position of the at least one client device based on the navigation message and further based on second signaling received from a second plurality of non-LEO navigation satellites.
    Type: Grant
    Filed: February 28, 2020
    Date of Patent: November 29, 2022
    Assignee: Xona Space Systems Inc.
    Inventors: Tyler Gerald René Reid, Kazuma Gunning, Adrien Louis Henry Perkins, Andrew Michael Neish
  • Publication number: 20200379118
    Abstract: A low-earth orbit (LEO) satellite includes a global positioning receiver configured to receive first signaling from a first plurality of non-LEO navigation satellites. An inter-satellite transceiver is configured to send and receive inter-satellite communications with other LEO navigation satellites. At least one processor is configured to execute operational instructions that cause the at least one processor to perform operations that include: determining an orbital position of the LEO satellite based on the first signaling; and generating a navigation message based on the orbital position. A navigation signal transmitter configured to broadcast the navigation message to at least one client device, the navigation message facilitating the at least one client device to determine an enhanced position of the at least one client device based on the navigation message and further based on second signaling received from a second plurality of non-LEO navigation satellites.
    Type: Application
    Filed: February 28, 2020
    Publication date: December 3, 2020
    Applicant: Xona Space Systems Inc.
    Inventors: Tyler Gerald René Reid, Kazuma Gunning, Adrien Louis Henry Perkins, Andrew Michael Neish