Patents by Inventor Paul Doersch

Paul Doersch 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: 10745127
    Abstract: Provided herein are systems and methods for providing reliable control of an unmanned aerial vehicle (UAV). A system for providing reliable control of the UAV can include a computing device that can execute reliable and unreliable programs. The unreliable programs can be isolated from the reliable programs by virtue of executing one or more of the programs in a virtual machine client. The UAV can initiate a recovery action when one or more of the unreliable programs fail. The recovery action can be performed without input from one or more of the unreliable programs.
    Type: Grant
    Filed: April 10, 2018
    Date of Patent: August 18, 2020
    Assignee: Kespry Inc.
    Inventors: Benjamin Stuart Stabler, Robert Parker Clark, Nathaniel Hall-Snyder, Paul Doersch
  • Patent number: 10124908
    Abstract: Provided herein are systems and method for autonomously or semi-autonomously landing an unmanned aerial vehicle (UAV) on a landing pad. The landing pad can include features configured to correct misalignment of the UAV on the landing pad. The landing pad can additionally include one or more markers than can be identified by the UAV to aid the UAV in locating the landing pad and determining the location of the UAV relative to the landing pad.
    Type: Grant
    Filed: October 21, 2014
    Date of Patent: November 13, 2018
    Assignee: Kespry Inc.
    Inventors: Benjamin Stuart Stabler, Nathaniel Hall-Snyder, Paul Doersch, Marcus Hammond
  • Publication number: 20180229842
    Abstract: Provided herein are systems and methods for providing reliable control of an unmanned aerial vehicle (UAV). A system for providing reliable control of the UAV can include a computing device that can execute reliable and unreliable programs. The unreliable programs can be isolated from the reliable programs by virtue of executing one or more of the programs in a virtual machine client. The UAV can initiate a recovery action when one or more of the unreliable programs fail. The recovery action can be performed without input from one or more of the unreliable programs.
    Type: Application
    Filed: April 10, 2018
    Publication date: August 16, 2018
    Inventors: Benjamin Stuart Stabler, Robert Parker Clark, Nathaniel Hall-Snyder, Paul Doersch
  • Patent number: 9938008
    Abstract: Provided herein are systems and methods for providing reliable control of an unmanned aerial vehicle (UAV). A system for providing reliable control of the UAV can include a computing device that can execute reliable and unreliable programs. The unreliable programs can be isolated from the reliable programs by virtue of executing one or more of the programs in a virtual machine client. The UAV can initiate a recovery action when one or more of the unreliable programs fail. The recovery action can be performed without input from one or more of the unreliable programs.
    Type: Grant
    Filed: April 22, 2015
    Date of Patent: April 10, 2018
    Assignee: Kespry Inc.
    Inventors: Benjamin Stuart Stabler, Robert Parker Clark, Nathaniel Hall-Snyder, Paul Doersch
  • Patent number: 9836047
    Abstract: A data communication system for unmanned aerial vehicles includes communication links comprising a low-throughput capacity communication link and a high-throughput capacity communication link. The data communication system can also include a base station, to which the unmanned aerial vehicles send aerial data, and from which the unmanned aerial vehicles receive command signals. As the unmanned aerial vehicles perform missions in an open, distant airspace, the unmanned aerial vehicles can gather large volume data such as aerial images or videos. The data communication system allows opportunistic transfer of the gathered aerial data from the unmanned aerial vehicles to the base station when a high-throughput communication link is established. The data communication system allows constant communication between the base station and the unmanned aerial vehicles to send and receive low volume, operation-critical data, such as commands or on-going flight path changes, using a low-throughput communication link.
    Type: Grant
    Filed: June 10, 2015
    Date of Patent: December 5, 2017
    Assignee: Kespry, Inc.
    Inventors: Robert Parker Clark, John D. Laxson, Paul Doersch
  • Publication number: 20160363929
    Abstract: A data communication system for unmanned aerial vehicles includes communication links comprising a low-throughput capacity communication link and a high-throughput capacity communication link. The data communication system can also include a base station, to which the unmanned aerial vehicles send aerial data, and from which the unmanned aerial vehicles receive command signals. As the unmanned aerial vehicles perform missions in an open, distant airspace, the unmanned aerial vehicles can gather large volume data such as aerial images or videos. The data communication system allows opportunistic transfer of the gathered aerial data from the unmanned aerial vehicles to the base station when a high-throughput communication link is established. The data communication system allows constant communication between the base station and the unmanned aerial vehicles to send and receive low volume, operation-critical data, such as commands or on-going flight path changes, using a low-throughput communication link.
    Type: Application
    Filed: June 10, 2015
    Publication date: December 15, 2016
    Inventors: Robert Parker Clark, John D. Laxson, Paul Doersch
  • Publication number: 20160257424
    Abstract: Provided herein are systems and method for autonomously or semi-autonomously landing an unmanned aerial vehicle (UAV) on a landing pad. The landing pad can include features configured to correct misalignment of the UAV on the landing pad. The landing pad can additionally include one or more markers than can be identified by the UAV to aid the UAV in locating the landing pad and determining the location of the UAV relative to the landing pad.
    Type: Application
    Filed: October 21, 2014
    Publication date: September 8, 2016
    Inventors: Benjamin Stuart Stabler, Nathaniel Hall-Snyder, Paul Doersch, Marcus Hammond
  • Publication number: 20150225081
    Abstract: Provided herein are systems and methods for providing reliable control of an unmanned aerial vehicle (UAV). A system for providing reliable control of the UAV can include a computing device that can execute reliable and unreliable programs. The unreliable programs can be isolated from the reliable programs by virtue of executing one or more of the programs in a virtual machine client. The UAV can initiate a recovery action when one or more of the unreliable programs fail. The recovery action can be performed without input from one or more of the unreliable programs.
    Type: Application
    Filed: April 22, 2015
    Publication date: August 13, 2015
    Inventors: Benjamin Stuart Stabler, Robert Parker Clark, Nathaniel Hall-Snyder, Paul Doersch