Patents by Inventor Matthew Steiger

Matthew Steiger 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: 20230161059
    Abstract: A volume interrogation system can use an accelerated beam of charged particles to interrogate objects using charged-particle attenuation and scattering tomography to screen items such as portable electronic devices, packages, baggage, industrial products, or food products for the presence of materials of interest inside. The exemplary systems and methods in this patent document can be employed in checkpoint applications to scan items. Such checkpoint applications can include border crossings, mass transit terminals (subways, buses, railways, ferries, etc.), and government and private-sector facilities.
    Type: Application
    Filed: November 14, 2022
    Publication date: May 25, 2023
    Inventors: Robert D. Penny, Michael James Sossong, Matthew Steiger, Young K. Lee
  • Patent number: 11614552
    Abstract: A volume interrogation system can use an accelerated beam of charged particles to interrogate objects using charged-particle attenuation and scattering tomography to screen items such as portable electronic devices, packages, baggage, industrial products, or food products for the presence of materials of interest inside. The exemplary systems and methods in this patent document can be employed in checkpoint applications to scan items. Such checkpoint applications can include border crossings, mass transit terminals (subways, buses, railways, ferries, etc.), and government and private-sector facilities.
    Type: Grant
    Filed: April 20, 2020
    Date of Patent: March 28, 2023
    Assignee: Decision Sciences International Corporation
    Inventors: Robert D. Penny, Michael James Sossong, Matthew Steiger, Young K. Lee
  • Patent number: 11152190
    Abstract: A volume interrogation system can use an accelerated beam of charged particles to interrogate objects using charged-particle attenuation and scattering tomography to screen items such as electronic devices, packages, baggage, industrial products, or food products for the presence of materials of interest inside. The apparatus, systems, and methods in this patent document can be employed in checkpoint applications to scan items. Such checkpoint applications can include border crossings, mass transit terminals (subways, buses, railways, ferries, etc.), and government and private-sector facilities.
    Type: Grant
    Filed: April 20, 2020
    Date of Patent: October 19, 2021
    Assignee: Decision Sciences International Corporation
    Inventors: Robert D. Penny, Michael James Sossong, Matthew Steiger, Young K. Lee
  • Publication number: 20200335299
    Abstract: A volume interrogation system can use an accelerated beam of charged particles to interrogate objects using charged-particle attenuation and scattering tomography to screen items such as electronic devices, packages, baggage, industrial products, or food products for the presence of materials of interest inside. The apparatus, systems, and methods in this patent document can be employed in checkpoint applications to scan items. Such checkpoint applications can include border crossings, mass transit terminals (subways, buses, railways, ferries, etc.), and government and private-sector facilities.
    Type: Application
    Filed: April 20, 2020
    Publication date: October 22, 2020
    Inventors: Robert D. Penny, Michael James Sossong, Matthew Steiger, Young K. Lee
  • Publication number: 20200333482
    Abstract: A volume interrogation system can use an accelerated beam of charged particles to interrogate objects using charged-particle attenuation and scattering tomography to screen items such as portable electronic devices, packages, baggage, industrial products, or food products for the presence of materials of interest inside. The exemplary systems and methods in this patent document can be employed in checkpoint applications to scan items. Such checkpoint applications can include border crossings, mass transit terminals (subways, buses, railways, ferries, etc.), and government and private-sector facilities.
    Type: Application
    Filed: April 20, 2020
    Publication date: October 22, 2020
    Inventors: Robert D. Penny, Michael James Sossong, Matthew Steiger, Young K. Lee
  • Patent number: 9639973
    Abstract: Disclosed technology can provide a process for generating reconstructed muon image resolution to optimize the use of the limited angular range muon track data collected by a muon tomography system. In one aspect, a process for improving reconstructed muon image resolution for a volume of interest (VOI) imaged by a muon tomography system includes: collecting raw muon track data of cosmic ray muon tracks passing through the VOI; grouping the raw muon track data into two or more subsets of tracks based on at least one angular distribution of the muon tracks in the raw muon track data; generating a set of images of the VOI based on the two or more subsets of tracks; and combining information from the set of reconstructed images and a reconstructed image based on the full set of the raw muon track data to obtain a resulting reconstructed image of the VOI.
    Type: Grant
    Filed: April 3, 2015
    Date of Patent: May 2, 2017
    Assignee: Decision Sciences International Corporation
    Inventors: Chuanyong Bai, Joel Kindem, Weidong Luo, Matthew Steiger, Sean Simon, Michael James Sossong
  • Publication number: 20150287237
    Abstract: Disclosed technology can provide a process for generating reconstructed muon image resolution to optimize the use of the limited angular range muon track data collected by a muon tomography system. In one aspect, a process for improving reconstructed muon image resolution for a volume of interest (VOI) imaged by a muon tomography system includes: collecting raw muon track data of cosmic ray muon tracks passing through the VOI; grouping the raw muon track data into two or more subsets of tracks based on at least one angular distribution of the muon tracks in the raw muon track data; generating a set of images of the VOI based on the two or more subsets of tracks; and combining information from the set of reconstructed images and a reconstructed image based on the full set of the raw muon track data to obtain a resulting reconstructed image of the VOI.
    Type: Application
    Filed: April 3, 2015
    Publication date: October 8, 2015
    Inventors: Chuanyong Bai, Joel Kindem, Weidong Luo, Matthew Steiger, Sean Simon, Michael James Sossong