Patents by Inventor Scot S. Olivier

Scot S. Olivier 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: 9720223
    Abstract: The telescopes described are configured in an integrated telescope package by permanently fixing optical components of the telescope at predefined positions without having movable or adjustable components in the optical layout of the telescope to improve immunity to vibrations and other perturbations and to maintain stability of the optical alignment.
    Type: Grant
    Filed: March 14, 2014
    Date of Patent: August 1, 2017
    Assignee: Lawrence Livermore National Security, LLC
    Inventors: Vincent J. Riot, Brian J. Bauman, Darrell Carter, Willem H. De Vries, Scot S. Olivier
  • Patent number: 9586704
    Abstract: A space object modeling system that models the evolution of space debris is provided. The modeling system simulates interaction of space objects at simulation times throughout a simulation period. The modeling system includes a propagator that calculates the position of each object at each simulation time based on orbital parameters. The modeling system also includes a collision detector that, for each pair of objects at each simulation time, performs a collision analysis. When the distance between objects satisfies a conjunction criterion, the modeling system calculates a local minimum distance between the pair of objects based on a curve fitting to identify a time of closest approach at the simulation times and calculating the position of the objects at the identified time. When the local minimum distance satisfies a collision criterion, the modeling system models the debris created by the collision of the pair of objects.
    Type: Grant
    Filed: May 2, 2013
    Date of Patent: March 7, 2017
    Assignee: Lawrence Livermore National Security, LLC
    Inventors: Sergei Nikolaev, Willem H. De Vries, John R. Henderson, Matthew A. Horsley, Ming Jiang, Joanne L. Levatin, Scot S. Olivier, Alexander J. Pertica, Donald W. Phillion, Harry K. Springer
  • Patent number: 9067693
    Abstract: An ephemeris refinement system includes satellites with imaging devices in earth orbit to make observations of space-based objects (“target objects”) and a ground-based controller that controls the scheduling of the satellites to make the observations of the target objects and refines orbital models of the target objects. The ground-based controller determines when the target objects of interest will be near enough to a satellite for that satellite to collect an image of the target object based on an initial orbital model for the target objects. The ground-based controller directs the schedules to be uploaded to the satellites, and the satellites make observations as scheduled and download the observations to the ground-based controller. The ground-based controller then refines the initial orbital models of the target objects based on the locations of the target objects that are derived from the observations.
    Type: Grant
    Filed: July 26, 2012
    Date of Patent: June 30, 2015
    Assignee: Lawrence Livermore National Security, LLC
    Inventors: Scot S. Olivier, Alexander J. Pertica, Vincent J. Riot, Willem H. De Vries, Brian J. Bauman, Sergei Nikolaev, John R. Henderson, Donald W. Phillion
  • Patent number: 9020748
    Abstract: An ephemeris refinement system includes satellites with imaging devices in earth orbit to make observations of space-based objects (“target objects”) and a ground-based controller that controls the scheduling of the satellites to make the observations of the target objects and refines orbital models of the target objects. The ground-based controller determines when the target objects of interest will be near enough to a satellite for that satellite to collect an image of the target object based on an initial orbital model for the target objects. The ground-based controller directs the schedules to be uploaded to the satellites, and the satellites make observations as scheduled and download the observations to the ground-based controller. The ground-based controller then refines the initial orbital models of the target objects based on the locations of the target objects that are derived from the observations.
    Type: Grant
    Filed: July 26, 2012
    Date of Patent: April 28, 2015
    Assignee: Lawrence Livermore National Security, LLC
    Inventors: Scot S. Olivier, Alexander J. Pertica, Vincent J. Riot, Willem H. De Vries, Brian J. Bauman, Sergei Nikolaev, John R. Henderson, Donald W. Phillion
  • Patent number: 8862398
    Abstract: A system for tracking objects that are in earth orbit via a constellation or network of satellites having imaging devices is provided. An object tracking system includes a ground controller and, for each satellite in the constellation, an onboard controller. The ground controller receives ephemeris information for a target object and directs that ephemeris information be transmitted to the satellites. Each onboard controller receives ephemeris information for a target object, collects images of the target object based on the expected location of the target object at an expected time, identifies actual locations of the target object from the collected images, and identifies a next expected location at a next expected time based on the identified actual locations of the target object. The onboard controller processes the collected image to identify the actual location of the target object and transmits the actual location information to the ground controller.
    Type: Grant
    Filed: March 13, 2013
    Date of Patent: October 14, 2014
    Assignee: Lawrence Livermore National Security LLC
    Inventors: Willem H. De Vries, Scot S. Olivier, Alexander J. Pertica
  • Publication number: 20140278082
    Abstract: A system for tracking objects that are in earth orbit via a constellation or network of satellites having imaging devices is provided. An object tracking system includes a ground controller and, for each satellite in the constellation, an onboard controller. The ground controller receives ephemeris information for a target object and directs that ephemeris information be transmitted to the satellites. Each onboard controller receives ephemeris information for a target object, collects images of the target object based on the expected location of the target object at an expected time, identifies actual locations of the target object from the collected images, and identifies a next expected location at a next expected time based on the identified actual locations of the target object. The onboard controller processes the collected image to identify the actual location of the target object and transmits the actual location information to the ground controller.
    Type: Application
    Filed: March 13, 2013
    Publication date: September 18, 2014
    Applicant: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
    Inventors: Willem H. De Vries, Scot S. Olivier, Alexander J. Pertica
  • Publication number: 20140267722
    Abstract: The telescopes described are configured in an integrated telescope package by permanently fixing optical components of the telescope at predefined positions without having movable or adjustable components in the optical layout of the telescope to improve immunity to vibrations and other perturbations and to maintain stability of the optical alignment.
    Type: Application
    Filed: March 14, 2014
    Publication date: September 18, 2014
    Applicant: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
    Inventors: Vincent J. Riot, Brian J. Bauman, Darrell Carter, Willem H. De Vries, Scot S. Olivier
  • Publication number: 20130275036
    Abstract: An ephemeris refinement system includes satellites with imaging devices in earth orbit to make observations of space-based objects (“target objects”) and a ground-based controller that controls the scheduling of the satellites to make the observations of the target objects and refines orbital models of the target objects. The ground-based controller determines when the target objects of interest will be near enough to a satellite for that satellite to collect an image of the target object based on an initial orbital model for the target objects. The ground-based controller directs the schedules to be uploaded to the satellites, and the satellites make observations as scheduled and download the observations to the ground-based controller. The ground-based controller then refines the initial orbital models of the target objects based on the locations of the target objects that are derived from the observations.
    Type: Application
    Filed: July 26, 2012
    Publication date: October 17, 2013
    Applicant: Lawrence Livermore National Security, LLC
    Inventors: Scot S. Olivier, Alexander J. Pertica, Vincent J. Riot, Willem H. De Vries, Brian J. Bauman, Sergei Nikolaev, John R. Henderson, Donald W. Phillion
  • Publication number: 20130124079
    Abstract: An ephemeris refinement system includes satellites with imaging devices in earth orbit to make observations of space-based objects (“target objects”) and a ground-based controller that controls the scheduling of the satellites to make the observations of the target objects and refines orbital models of the target objects. The ground-based controller determines when the target objects of interest will be near enough to a satellite for that satellite to collect an image of the target object based on an initial orbital model for the target objects. The ground-based controller directs the schedules to be uploaded to the satellites, and the satellites make observations as scheduled and download the observations to the ground-based controller. The ground-based controller then refines the initial orbital models of the target objects based on the locations of the target objects that are derived from the observations.
    Type: Application
    Filed: July 26, 2012
    Publication date: May 16, 2013
    Applicant: Lawrence Livermore National Security, LLC
    Inventors: Scot S. Olivier, Alexander J. Pertica, Vincent J. Riot, Willem H. De Vries, Brian J. Bauman, Sergei Nikolaev, John R. Henderson, Donald W. Phillion
  • Publication number: 20130124174
    Abstract: An internally parallel PDES (“IP-PDES”) system performs logical processes in parallel and further performs the internal processing of at least one logical process in parallel. Because the IP-PDES system is PDES-based, each logical process may have its processing performed in parallel with the other logical processes. The IP-PDES system allows for certain logical processes to be designated as internally parallel meaning that the logical process, referred to as an IP logical process, has its internal processing also performed in parallel. The IP-DES system allocates multiple nodes for such an IP logical process so that executable code of the IP logical process executes in parallel at the allocated nodes to simulate the occurrence of an event. Internal parallelism within a PDES may help overcome resource limitations and help speed up the overall simulation.
    Type: Application
    Filed: June 4, 2012
    Publication date: May 16, 2013
    Inventors: David R. Jefferson, Alexander Pertica, Matthew C. Brown, Willem H. De Vries, Benjamin J. Fasenfest, Matthew A. Horsley, Ming Jiang, James R. Leek, JoAnne L. Levatin, Segei Nikolaev, Scot S. Olivier, Donald William Phillion, Harry K. Springer
  • Patent number: 8123354
    Abstract: Badal Optometer and rotating cylinders are inserted in the AO-OCT to correct large spectacle aberrations such as myopia, hyperopic and astigmatism for ease of clinical use and reduction. Spherical mirrors in the sets of the telescope are rotated orthogonally to reduce aberrations and beam displacement caused by the scanners. This produces greatly reduced AO registration errors and improved AO performance to enable high order aberration correction in a patient eyes.
    Type: Grant
    Filed: April 12, 2011
    Date of Patent: February 28, 2012
    Assignee: Lawrence Livermore National Security, LLC
    Inventors: Scot S. Olivier, Diana C. Chen, Steven M. Jones, Sean M. McNary
  • Publication number: 20110194072
    Abstract: Badal Optometer and rotating cylinders are inserted in the AO-OCT to correct large spectacle aberrations such as myopia, hyperopic and astigmatism for ease of clinical use and reduction. Spherical mirrors in the sets of the telescope are rotated orthogonally to reduce aberrations and beam displacement caused by the scanners. This produces greatly reduced AO registration errors and improved AO performance to enable high order aberration correction in a patient eyes.
    Type: Application
    Filed: April 12, 2011
    Publication date: August 11, 2011
    Inventors: Scot S. Olivier, Diana C. Chen, Steven M. Jones, Sean M. McNary
  • Patent number: 7942527
    Abstract: Badal Optometer and rotating cylinders are inserted in the AO-OCT to correct large spectacle aberrations such as myopia, hyperopic and astigmatism for ease of clinical use and reduction. Spherical mirrors in the sets of the telescope are rotated orthogonally to reduce aberrations and beam displacement caused by the scanners. This produces greatly reduced AO registration errors and improved AO performance to enable high order aberration correction in a patient eyes.
    Type: Grant
    Filed: January 20, 2010
    Date of Patent: May 17, 2011
    Assignee: Lawrence Livermore National Security, LLC
    Inventors: Scot S. Olivier, Diana C. Chen, Steven M. Jones, Sean M. McNary
  • Patent number: 7791734
    Abstract: This invention permits retinal images to be acquired at high speed and with unprecedented resolution in three dimensions (4×4×6 ?m). The instrument achieves high lateral resolution by using adaptive optics to correct optical aberrations of the human eye in real time. High axial resolution and high speed are made possible by the use of Fourier-domain optical coherence tomography. Using this system, we have demonstrated the ability to image microscopic blood vessels and the cone photoreceptor mosaic.
    Type: Grant
    Filed: May 2, 2006
    Date of Patent: September 7, 2010
    Assignees: Lawrence Livermore National Security, LLC, University of California
    Inventors: Scot S. Olivier, John S. Werner, Robert J. Zawadzki, Sophie P. Laut, Steven M. Jones
  • Publication number: 20100149490
    Abstract: Badal Optometer and rotating cylinders are inserted in the AO-OCT to correct large spectacle aberrations such as myopia, hyperopic and astigmatism for ease of clinical use and reduction. Spherical mirrors in the sets of the telescope are rotated orthogonally to reduce aberrations and beam displacement caused by the scanners. This produces greatly reduced AO registration errors and improved AO performance to enable high order aberration correction in a patient eyes.
    Type: Application
    Filed: January 20, 2010
    Publication date: June 17, 2010
    Inventors: Scot S. Olivier, Diana C. Chen, Steven M. Jones, Sean M. McNary
  • Patent number: 7692838
    Abstract: A deformable mirror formed out of two layers of a nanolaminate foil attached to a stiff substrate is introduced. Deformation is provided by an electrostatic force between two of the layers. The internal stiffness of the structure allows for high-spatial-frequency shapes. The nanolaminate foil of the present invention allows for a high-quality mirror surface. The device achieves high precision in the vertical direction by using foils with accurately controlled thicknesses, but does not require high precision in the lateral dimensions, allowing such mirrors to be fabricated using crude lithography techniques. Such techniques allow structures up to about the meter scale to be fabricated.
    Type: Grant
    Filed: January 30, 2009
    Date of Patent: April 6, 2010
    Assignee: Lawrence Livermore National Security, LLC
    Inventors: Alexandros P. Papavasiliou, Scot S. Olivier
  • Patent number: 7665844
    Abstract: An adaptive optics scanning laser ophthalmoscopes is introduced to produce non-invasive views of the human retina. The use of dual deformable mirrors improved the dynamic range for correction of the wavefront aberrations compared with the use of the MEMS mirror alone, and improved the quality of the wavefront correction compared with the use of the bimorph mirror alone. The large-stroke bimorph deformable mirror improved the capability for axial sectioning with the confocal imaging system by providing an easier way to move the focus axially through different layers of the retina.
    Type: Grant
    Filed: October 18, 2007
    Date of Patent: February 23, 2010
    Assignee: Lawrence Livermore National Security LLC
    Inventors: Diana C. Chen, Scot S. Olivier, Steven M. Jones
  • Publication number: 20090159186
    Abstract: A deformable mirror formed out of two layers of a nanolaminate foil attached to a stiff substrate is introduced. Deformation is provided by an electrostatic force between two of the layers. The internal stiffness of the structure allows for high-spatial-frequency shapes. The nanolaminate foil of the present invention allows for a high-quality mirror surface. The device achieves high precision in the vertical direction by using foils with accurately controlled thicknesses, but does not require high precision in the lateral dimensions, allowing such mirrors to be fabricated using crude lithography techniques. Such techniques allow structures up to about the meter scale to be fabricated.
    Type: Application
    Filed: January 30, 2009
    Publication date: June 25, 2009
    Inventors: Alexandros P Papavasiliou, Scot S. Olivier
  • Patent number: 7518780
    Abstract: A deformable mirror formed out of two layers of a nanolaminate foil attached to a stiff substrate is introduced. Deformation is provided by an electrostatic force between two of the layers. The internal stiffness of the structure allows for high-spatial-frequency shapes. The nanolaminate foil of the present invention allows for a high-quality mirror surface. The device achieves high precision in the vertical direction by using foils with accurately controlled thicknesses, but does not require high precision in the lateral dimensions, allowing such mirrors to be fabricated using crude lithography techniques. Such techniques allow structures up to about the meter scale to be fabricated.
    Type: Grant
    Filed: August 8, 2006
    Date of Patent: April 14, 2009
    Assignee: Lawrence Livermore National Laboratory, LLC
    Inventors: Alexandros P. Papavasiliou, Scot S. Olivier
  • Publication number: 20080218694
    Abstract: An adaptive optics scanning laser opthalmoscopes is introduced to produce non-invasive views of the human retina. The use of dual deformable mirrors improved the dynamic range for correction of the wavefront aberrations compared with the use of the MEMS mirror alone, and improved the quality of the wavefront correction compared with the use of the bimorph mirror alone. The large-stroke bimorph deformable mirror improved the capability for axial sectioning with the confocal imaging system by providing an easier way to move the focus axially through different layers of the retina.
    Type: Application
    Filed: October 18, 2007
    Publication date: September 11, 2008
    Inventors: Diana C. Chen, Scot S. Olivier, Steven M. Jones