Patents by Inventor Bruce J. Holmes

Bruce J. Holmes 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: 11955018
    Abstract: Disclosed are algorithms and agent-based structures for a system and technique for analyzing and managing the airspace. The technique includes managing bulk properties of large numbers of heterogeneous multidimensional aircraft trajectories in an airspace, for the purpose of maintaining or increasing system safety, and to identify possible phase transition structures to predict when an airspace will approach the limits of its capacity. The paths of the multidimensional aircraft trajectories are continuously recalculated in the presence of changing conditions (traffic, exclusionary airspace, weather, for example) while optimizing performance measures and performing trajectory conflict detection and resolution. Such trajectories are represented as extended objects endowed with pseudo-potential, maintaining objectives for time, acceleration limits, and fuel-efficient paths by bending just enough to accommodate separation.
    Type: Grant
    Filed: April 20, 2020
    Date of Patent: April 9, 2024
    Assignee: SMARTSKY NETWORKS LLC
    Inventors: Bruce K. Sawhill, James W. Herriot, Bruce J. Holmes
  • Patent number: 11923955
    Abstract: A unified radio system for providing wireless communication to a communication device on an aircraft regardless of aircraft altitude may include a terrestrial network including a plurality of terrestrial base stations configured to communicate primarily in a ground communication layer below a first altitude, an ATG network including a plurality of ATG base stations configured to communicate primarily in an ATG communication layer above a second altitude, an air-to-air mesh network for data relays through connected aircraft, and an aircraft with an onboard antenna assembly and a unified radio. The unified radio may be configured to monitor network parameters of the terrestrial network and the ATG network and switch between a currently serving network and a non-serving network based on the network parameters.
    Type: Grant
    Filed: April 23, 2020
    Date of Patent: March 5, 2024
    Assignee: SMARTSKY NETWORKS LLC
    Inventors: Elbert Stanford Eskridge, Jr., Bruce J. Holmes, Gerard James Hayes, James Evans Ladd, Jr.
  • Publication number: 20220358845
    Abstract: An aviation advisory module may include processing circuitry configured to receive data indicative of internal factors and external factors related to route optimization of an aircraft. At least some of the external factors may include dynamic parameters that are changeable while the aircraft is in-flight. The processing circuitry may also be configured to generate a guidance output associated with a route of the aircraft based on integration of the internal factors and the external factors to optimize the route for a user-selected cost parameter, and provide a graphical representation of the guidance output along with comparative data or context information associated with the user-selected cost parameter.
    Type: Application
    Filed: August 26, 2020
    Publication date: November 10, 2022
    Inventor: Bruce J. HOLMES
  • Publication number: 20220295247
    Abstract: A system for providing services to remote airports includes a backbone network, an antenna assembly and a remote services module. The backbone network operates using first assigned RF spectrum and is configured to provide backhaul services and network control to operably couple one or more base stations of the backbone network to the Internet. The antenna assembly is disposed at a remote airport to define an airport cell and is configured to communicate wirelessly with an aircraft located in the airport cell via second assigned RF spectrum. The antenna assembly is operably coupled to the backbone network for backhaul to the Internet or an intranet. The remote services module is accessible by the aircraft both in flight and on the ground within the airport cell via the antenna assembly. The remote services module includes processing circuitry configuring the remote services module to provide the aircraft with access to obtain airside or landside services associated with the remote airport.
    Type: Application
    Filed: July 9, 2020
    Publication date: September 15, 2022
    Inventors: Bruce J. Holmes, Elbert Stanford Eskridge, JR., James Evans Ladd, JR.
  • Publication number: 20220223052
    Abstract: A system for improving cockpit operations in an aircraft includes an airborne augmented reality module and a ground-based information management module. The augmented reality module may be disposed in the cockpit of the aircraft and may include processing circuitry configured to generate an augmented reality display in the cockpit based at least in part on selected external environmental data received. The information management module may be configured to include external environmental data received from a plurality of sources and generate the selected external environmental data for communication to the augmented reality module via a wireless communication network while the aircraft is in flight. The selected external environmental data may be selected based on aircraft location and a determination of temporal relevance and locational relevance of the selected external environmental data.
    Type: Application
    Filed: May 8, 2020
    Publication date: July 14, 2022
    Inventors: Bruce J. Holmes, Elbert Stanford Eskridge, James Evans Ladd
  • Publication number: 20220208011
    Abstract: A method of providing a cloud-based flight management system (FMS) may include receiving an input to a flight management computer (FMC) client in an airborne aircraft indicative of a need for FMS data, communicating a request for the FMS data to a FMS management module located remotely from the airborne aircraft via a wireless communication network, receiving a response to the request at the FMC client of the airborne aircraft via the wireless communication network, and, based on the response, generating an output on the airborne aircraft via the FMC client.
    Type: Application
    Filed: April 22, 2020
    Publication date: June 30, 2022
    Inventors: Bruce J. Holmes, Elbert Stanford Eskridge, JR., James Evans Ladd, JR.
  • Publication number: 20220209847
    Abstract: A unified radio system for providing wireless communication to a communication device on an aircraft regardless of aircraft altitude may include a terrestrial network including a plurality of terrestrial base stations configured to communicate primarily in a ground communication layer below a first altitude, an ATG network including a plurality of ATG base stations configured to communicate primarily in an ATG communication layer above a second altitude, an air-to-air mesh network for data relays through connected aircraft, and an aircraft with an onboard antenna assembly and a unified radio. The unified radio may be configured to monitor network parameters of the terrestrial network and the ATG network and switch between a currently serving network and a non-serving network based on the network parameters.
    Type: Application
    Filed: April 23, 2020
    Publication date: June 30, 2022
    Inventors: Elbert Stanford Eskridge, JR., Bruce J. Holmes, Gerard James Hayes, James Evans Ladd, JR.
  • Publication number: 20200250999
    Abstract: Disclosed are algorithms and agent-based structures for a system and technique for analyzing and managing the airspace. The technique includes managing bulk properties of large numbers of heterogeneous multidimensional aircraft trajectories in an airspace, for the purpose of maintaining or increasing system safety, and to identify possible phase transition structures to predict when an airspace will approach the limits of its capacity. The paths of the multidimensional aircraft trajectories are continuously recalculated in the presence of changing conditions (traffic, exclusionary airspace, weather, for example) while optimizing performance measures and performing trajectory conflict detection and resolution. Such trajectories are represented as extended objects endowed with pseudo-potential, maintaining objectives for time, acceleration limits, and fuel-efficient paths by bending just enough to accommodate separation.
    Type: Application
    Filed: April 20, 2020
    Publication date: August 6, 2020
    Inventors: Bruce K. Sawhill, James W. Herriot, Bruce J. Holmes
  • Patent number: 10657828
    Abstract: Disclosed are algorithms and agent-based structures for a system and technique for analyzing and managing the airspace. The technique includes managing bulk properties of large numbers of heterogeneous multidimensional aircraft trajectories in an airspace, for the purpose of maintaining or increasing system safety, and to identify possible phase transition structures to predict when an airspace will approach the limits of its capacity. The paths of the multidimensional aircraft trajectories are continuously recalculated in the presence of changing conditions (traffic, exclusionary airspace, weather, for example) while optimizing performance measures and performing trajectory conflict detection and resolution. Such trajectories are represented as extended objects endowed with pseudo-potential, maintaining objectives for time, acceleration limits, and fuel-efficient paths by bending just enough to accommodate separation.
    Type: Grant
    Filed: October 24, 2017
    Date of Patent: May 19, 2020
    Assignee: Smartsky Networks LLC
    Inventors: Bruce K. Sawhill, James W. Herriot, Bruce J. Holmes
  • Publication number: 20190311631
    Abstract: An aviation advisory module may include processing circuitry configured to receive data indicative of internal factors and external factors related to route optimization of an aircraft. At least some of the external factors may include dynamic parameters that are changeable while the aircraft is in-flight. The processing circuitry may also be configured to receive updates to the dynamic parameters via a wireless communication network that includes a high bandwidth return link from the aircraft while the aircraft is in-flight, update trajectory deconfliction of a trajectory of the aircraft and trajectories of one or more other aircraft, and generate a guidance output associated with a route of the aircraft based on integration of the dynamic parameters, the trajectory deconfliction and the internal factors.
    Type: Application
    Filed: October 10, 2017
    Publication date: October 10, 2019
    Inventor: Bruce J. Holmes
  • Publication number: 20190012752
    Abstract: An aerospace commerce exchange system may include a network, a plurality of clients operably coupled to the network, and an aerospace commerce exchange platform operably coupled to the network to provide exchange services to exchange members via respective ones of the clients. The aerospace commerce exchange platform may include an IP asset library configured to store information regarding IP assets provided by the exchange members, and a search module configured to enable searching relative to the IP assets by the exchange members. The search module may be configured to facilitate contact between a searcher and a provider relative to a particular asset stored in the IP asset library and found by the searcher using the search module.
    Type: Application
    Filed: August 28, 2018
    Publication date: January 10, 2019
    Inventors: Blane Edward Rockafellow, Elbert Stanford Eskridge, JR., Bruce J. Holmes
  • Publication number: 20180040250
    Abstract: Disclosed are algorithms and agent-based structures for a system and technique for analyzing and managing the airspace. The technique includes managing bulk properties of large numbers of heterogeneous multidimensional aircraft trajectories in an airspace, for the purpose of maintaining or increasing system safety, and to identify possible phase transition structures to predict when an airspace will approach the limits of its capacity. The paths of the multidimensional aircraft trajectories are continuously recalculated in the presence of changing conditions (traffic, exclusionary airspace, weather, for example) while optimizing performance measures and performing trajectory conflict detection and resolution. Such trajectories are represented as extended objects endowed with pseudo-potential, maintaining objectives for time, acceleration limits, and fuel-efficient paths by bending just enough to accommodate separation.
    Type: Application
    Filed: October 24, 2017
    Publication date: February 8, 2018
    Inventors: Bruce K. Sawhill, James W. Herriot, Bruce J. Holmes
  • Patent number: 9830827
    Abstract: Disclosed are algorithms and agent-based structures for a system and technique for analyzing and managing the airspace. The technique includes managing bulk properties of large numbers of heterogeneous multidimensional aircraft trajectories in an airspace, for the purpose of maintaining or increasing system safety, and to identify possible phase transition structures to predict when an airspace will approach the limits of its capacity. The paths of the multidimensional aircraft trajectories are continuously recalculated in the presence of changing conditions (traffic, exclusionary airspace, weather, for example) while optimizing performance measures and performing trajectory conflict detection and resolution. Such trajectories are represented as extended objects endowed with pseudo-potential, maintaining objectives for time, acceleration limits, and fuel-efficient paths by bending just enough to accommodate separation.
    Type: Grant
    Filed: February 6, 2015
    Date of Patent: November 28, 2017
    Assignee: SMARTSKY NETWORKS LLC
    Inventors: Bruce K. Sawhill, James W. Herriot, Bruce J. Holmes
  • Publication number: 20150154873
    Abstract: Disclosed are algorithms and agent-based structures for a system and technique for analyzing and managing the airspace. The technique includes managing bulk properties of large numbers of heterogeneous multidimensional aircraft trajectories in an airspace, for the purpose of maintaining or increasing system safety, and to identify possible phase transition structures to predict when an airspace will approach the limits of its capacity. The paths of the multidimensional aircraft trajectories are continuously recalculated in the presence of changing conditions (traffic, exclusionary airspace, weather, for example) while optimizing performance measures and performing trajectory conflict detection and resolution. Such trajectories are represented as extended objects endowed with pseudo-potential, maintaining objectives for time, acceleration limits, and fuel-efficient paths by bending just enough to accommodate separation.
    Type: Application
    Filed: February 6, 2015
    Publication date: June 4, 2015
    Inventors: Bruce K. Sawhill, James W. Herriot, Bruce J. Holmes
  • Patent number: 8965672
    Abstract: Disclosed are algorithms and agent-based structures for a system and technique for analyzing and managing the airspace. The technique includes managing bulk properties of large numbers of heterogeneous multidimensional aircraft trajectories in an airspace, for the purpose of maintaining or increasing system safety, and to identify possible phase transition structures to predict when an airspace will approach the limits of its capacity. The paths of the multidimensional aircraft trajectories are continuously recalculated in the presence of changing conditions (traffic, exclusionary airspace, weather, for example) while optimizing performance measures and performing trajectory conflict detection and resolution. Such trajectories are represented as extended objects endowed with pseudo-potential, maintaining objectives for time, acceleration limits, and fuel-efficient paths by bending just enough to accommodate separation.
    Type: Grant
    Filed: September 27, 2013
    Date of Patent: February 24, 2015
    Assignee: NextGen AeroSciences, LLC
    Inventors: Bruce K. Sawhill, James W. Herriot, Bruce J. Holmes
  • Patent number: 8954262
    Abstract: Disclosed are algorithms and agent-based structures for a system and technique for analyzing and managing the airspace. The technique includes managing bulk properties of large numbers of heterogeneous multidimensional aircraft trajectories in an airspace, for the purpose of maintaining or increasing system safety, and to identify possible phase transition structures to predict when an airspace will approach the limits of its capacity. The paths of the multidimensional aircraft trajectories are continuously recalculated in the presence of changing conditions (traffic, exclusionary airspace, weather, for example) while optimizing performance measures and performing trajectory conflict detection and resolution. Such trajectories are represented as extended objects endowed with pseudo-potential, maintaining objectives for time, acceleration limits, and fuel-efficient paths by bending just enough to accommodate separation.
    Type: Grant
    Filed: November 20, 2013
    Date of Patent: February 10, 2015
    Assignee: NextGen AeroSciences, LLC
    Inventors: Bruce K. Sawhill, James W. Herriot, Bruce J. Holmes
  • Publication number: 20140188378
    Abstract: Disclosed are algorithms and agent-based structures for a system and technique for analyzing and managing the airspace. The technique includes managing bulk properties of large numbers of heterogeneous multidimensional aircraft trajectories in an airspace, for the purpose of maintaining or increasing system safety, and to identify possible phase transition structures to predict when an airspace will approach the limits of its capacity. The paths of the multidimensional aircraft trajectories are continuously recalculated in the presence of changing conditions (traffic, exclusionary airspace, weather, for example) while optimizing performance measures and performing trajectory conflict detection and resolution. Such trajectories are represented as extended objects endowed with pseudo-potential, maintaining objectives for time, acceleration limits, and fuel-efficient paths by bending just enough to accommodate separation.
    Type: Application
    Filed: November 20, 2013
    Publication date: July 3, 2014
    Inventors: Bruce K. Sawhill, James W. Herriot, Bruce J. Holmes
  • Publication number: 20140163850
    Abstract: Disclosed are algorithms and agent-based structures for a system and technique for analyzing and managing the airspace. The technique includes managing bulk properties of large numbers of heterogeneous multidimensional aircraft trajectories in an airspace, for the purpose of maintaining or increasing system safety, and to identify possible phase transition structures to predict when an airspace will approach the limits of its capacity. The paths of the multidimensional aircraft trajectories are continuously recalculated in the presence of changing conditions (traffic, exclusionary airspace, weather, for example) while optimizing performance measures and performing trajectory conflict detection and resolution. Such trajectories are represented as extended objects endowed with pseudo-potential, maintaining objectives for time, acceleration limits, and fuel-efficient paths by bending just enough to accommodate separation.
    Type: Application
    Filed: September 27, 2013
    Publication date: June 12, 2014
    Inventors: Bruce K. Sawhill, James W. Herriot, Bruce J. Holmes
  • Patent number: 8594917
    Abstract: Disclosed are algorithms and agent-based structures for a system and technique for analyzing and managing the airspace. The technique includes managing bulk properties of large numbers of heterogeneous multidimensional aircraft trajectories in an airspace, for the purpose of maintaining or increasing system safety, and to identify possible phase transition structures to predict when an airspace will approach the limits of its capacity. The paths of the multidimensional aircraft trajectories are continuously recalculated in the presence of changing conditions (traffic, exclusionary airspace, weather, for example) while optimizing performance measures and performing trajectory conflict detection and resolution. Such trajectories are represented as extended objects endowed with pseudo-potential, maintaining objectives for time, acceleration limits, and fuel-efficient paths by bending just enough to accommodate separation.
    Type: Grant
    Filed: January 25, 2012
    Date of Patent: November 26, 2013
    Assignee: Nextgen Aerosciences, LLC
    Inventors: Bruce K. Sawhill, James W. Herriot, Bruce J. Holmes
  • Patent number: 8554458
    Abstract: Disclosed are algorithms and agent-based structures for a system and technique for analyzing and managing the airspace. The technique includes managing bulk properties of large numbers of heterogeneous multidimensional aircraft trajectories in an airspace, for the purpose of maintaining or increasing system safety, and to identify possible phase transition structures to predict when an airspace will approach the limits of its capacity. The paths of the multidimensional aircraft trajectories are continuously recalculated in the presence of changing conditions (traffic, exclusionary airspace, weather, for example) while optimizing performance measures and performing trajectory conflict detection and resolution. Such trajectories are represented as extended objects endowed with pseudo-potential, maintaining objectives for time, acceleration limits, and fuel-efficient paths by bending just enough to accommodate separation.
    Type: Grant
    Filed: January 25, 2012
    Date of Patent: October 8, 2013
    Assignee: NextGen Aerosciences, LLC
    Inventors: Bruce K. Sawhill, James W. Herriot, Bruce J. Holmes