Patents by Inventor Noah LIMES

Noah LIMES 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).

  • Publication number: 20260236042
    Abstract: The present disclosure provides vehicle collision avoidance system (CAS) that includes a first CAS module for a robotic vehicle that includes an interface to a first network; a hard stop interface communicatively coupled to the robotic vehicle; one or more computer processors; one or more computer readable storage media; and program instructions stored on the one or more computer readable storage media for execution by at least one of the one or more computer processors, the stored program instructions including instructions to: determine a relative position of a second CAS module based on information from the first network; responsive to determining that the second CAS module is within a first distance from the first CAS module, issue an alert; and responsive to determining that the second CAS module is within a second distance from the first CAS module, transmit a hard stop signal to the robotic vehicle.
    Type: Application
    Filed: April 23, 2026
    Publication date: August 13, 2026
    Inventors: Gregory COLVIN, Garrett DOWD, Jeffrey KEIP, Noah LIMES, Kevin O'TOOLE, Greg BAUMGARDNER
  • Patent number: 12656789
    Abstract: The present disclosure provides vehicle collision avoidance system (CAS) that includes a first CAS module for a robotic vehicle that includes an interface to a first network; a hard stop interface communicatively coupled to the robotic vehicle; one or more computer processors; one or more computer readable storage media; and program instructions stored on the one or more computer readable storage media for execution by at least one of the one or more computer processors, the stored program instructions including instructions to: determine a relative position of a second CAS module based on information from the first network; responsive to determining that the second CAS module is within a first distance from the first CAS module, issue an alert; and responsive to determining that the second CAS module is within a second distance from the first CAS module, transmit a hard stop signal to the robotic vehicle.
    Type: Grant
    Filed: April 12, 2024
    Date of Patent: June 16, 2026
    Assignee: Battelle Memorial Institute
    Inventors: Gregory Colvin, Garrett Dowd, Jeffrey Keip, Noah Limes, Kevin O'Toole, Greg Baumgardner
  • Publication number: 20250258504
    Abstract: The present disclosure provides vehicle collision avoidance system (CAS) that includes a first CAS module for a robotic vehicle that includes an interface to a first network; a hard stop interface communicatively coupled to the robotic vehicle; one or more computer processors; one or more computer readable storage media; and program instructions stored on the one or more computer readable storage media for execution by at least one of the one or more computer processors, the stored program instructions including instructions to: determine a relative position of a second CAS module based on information from the first network; responsive to determining that the second CAS module is within a first distance from the first CAS module, issue an alert; and responsive to determining that the second CAS module is within a second distance from the first CAS module, transmit a hard stop signal to the robotic vehicle.
    Type: Application
    Filed: April 12, 2024
    Publication date: August 14, 2025
    Inventors: Gregory COLVIN, Garrett DOWD, Jeffrey KEIP, Noah LIMES, Kevin O'TOOLE, Greg BAUMGARDNER
  • Publication number: 20250111590
    Abstract: In an approach to real-time sensor visualization in a presence of scattering particles, a system includes a vehicle, the vehicle comprising: one or more computing devices, Light Detection and Ranging (LiDAR) circuitry; and one or more vehicle sensors. The system is configured to: emit pulsed light waves from the LiDAR circuitry; receive return data from the LiDAR circuitry; receive sensor data from the one or more vehicle sensors; filter the return data and the sensor data to visualize a plurality of terrain points without obscuring points; and create a software rendered presentation of a surroundings.
    Type: Application
    Filed: September 26, 2024
    Publication date: April 3, 2025
    Inventors: Philip P. CHENEY, Noah LIMES, Noah LUDWIG, David HALL, Anthony POLINORI, Wesley C. PIRKLE