Patents by Inventor Douglas L. McMakin

Douglas L. McMakin 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: 20230273310
    Abstract: Methods and apparatus for scanning articles, such as footwear, to provide information regarding the contents of the articles are described. According to one aspect, a footwear scanning system includes a platform configured to contact footwear to be scanned, an antenna array configured to transmit electromagnetic waves through the platform into the footwear and to receive electromagnetic waves from the footwear and the platform, a transceiver coupled with antennas of the antenna array and configured to apply electrical signals to at least one of the antennas to generate the transmitted electromagnetic waves and to receive electrical signals from at least another of the antennas corresponding to the electromagnetic waves received by the others of the antennas, and processing circuitry configured to process the received electrical signals from the transceiver to provide information regarding contents within the footwear.
    Type: Application
    Filed: July 24, 2017
    Publication date: August 31, 2023
    Applicant: Battelle Memorial Institute
    Inventors: Justin L. Fernandes, Douglas L. McMakin, David M. Sheen, Jonathan R. Tedeschi, Thomas E. Hall
  • Patent number: 11021661
    Abstract: Conversion of heavy fossil hydrocarbons (HFH) to a variety of value-added chemicals and/or fuels can be enhanced using microwave (MW) and/or radio-frequency (RF) energy. Variations of reactants, process parameters, and reactor design can significantly influence the relative distribution of chemicals and fuels generated as the product. In one example, a system for flash microwave conversion of HFH includes a source concentrating microwave or RF energy in a reaction zone having a pressure greater than 0.9 atm, a continuous feed having HFH and a process gas passing through the reaction zone, a HFH-to-liquids catalyst contacting the HFH in at least the reaction zone, and dielectric discharges within the reaction zone. The HFH and the catalyst have a residence time in the reaction zone of less than 30 seconds. In some instances, a plasma can form in or near the reaction zone.
    Type: Grant
    Filed: February 21, 2012
    Date of Patent: June 1, 2021
    Assignee: Battelle Memorial Institute
    Inventors: James J. Strohm, John C. Linehan, Benjamin Q. Roberts, Douglas L. McMakin, David M. Sheen, Jeffrey W. Griffin, James A. Franz, Charlene Franz
  • Patent number: 9715012
    Abstract: Methods and apparatus for scanning articles, such as footwear, to provide information regarding the contents of the articles are described. According to one aspect, a footwear scanning system includes a platform configured to contact footwear to be scanned, an antenna array configured to transmit electromagnetic waves through the platform into the footwear and to receive electromagnetic waves from the footwear and the platform, a transceiver coupled with antennas of the antenna array and configured to apply electrical signals to at least one of the antennas to generate the transmitted electromagnetic waves and to receive electrical signals from at least another of the antennas corresponding to the electromagnetic waves received by the others of the antennas, and processing circuitry configured to process the received electrical signals from the transceiver to provide information regarding contents within the footwear.
    Type: Grant
    Filed: April 25, 2013
    Date of Patent: July 25, 2017
    Assignee: Battelle Memorial Institute
    Inventors: Justin L. Fernandes, Douglas L. McMakin, David M. Sheen, Jonathan R. Tedeschi
  • Publication number: 20140320331
    Abstract: Methods and apparatus for scanning articles, such as footwear, to provide information regarding the contents of the articles are described. According to one aspect, a footwear scanning system includes a platform configured to contact footwear to be scanned, an antenna array configured to transmit electromagnetic waves through the platform into the footwear and to receive electromagnetic waves from the footwear and the platform, a transceiver coupled with antennas of the antenna array and configured to apply electrical signals to at least one of the antennas to generate the transmitted electromagnetic waves and to receive electrical signals from at least another of the antennas corresponding to the electromagnetic waves received by the others of the antennas, and processing circuitry configured to process the received electrical signals from the transceiver to provide information regarding contents within the footwear.
    Type: Application
    Filed: April 25, 2013
    Publication date: October 30, 2014
    Applicant: Battelle Memorial Institute
    Inventors: Justin L. Fernandes, Douglas L. McMakin, David M. Sheen, Jonathan R. Tedeschi
  • Patent number: 8823391
    Abstract: A regenerative feedback resonant circuit for measuring a transient response in a loop is disclosed. The circuit includes an amplifier for generating a signal in the loop. The circuit further includes a resonator having a resonant cavity and a material located within the cavity. The signal sent into the resonator produces a resonant frequency. A variation of the resonant frequency due to perturbations in electromagnetic properties of the material is measured.
    Type: Grant
    Filed: February 14, 2012
    Date of Patent: September 2, 2014
    Assignee: Battelle Memorial Institute
    Inventors: A. Mark Jones, James F. Kelly, John S. McCloy, Douglas L. McMakin
  • Patent number: 8710441
    Abstract: Differential polarization imaging systems include an axicon configured to provide a displacement of ray bundles associated with different image patches. The displaced ray bundles are directed to antenna horns and orthomode transducers so as to provide outputs correspond to orthogonal linear states of polarization (SOPs). The outputs are directed to a differential radiometer so that Stokes parameter differences between image patches can be obtained. The ray bundle displacements can be selected to correspond to a mechanical spacing of antenna horns. In some examples, ray bundle displacement corresponds to a displacement less than the diffraction limit.
    Type: Grant
    Filed: March 2, 2012
    Date of Patent: April 29, 2014
    Assignee: Battelle Memorial Institute
    Inventors: Bruce E. Bernacki, James F. Kelly, David M. Sheen, Jonathan R. Tedeschi, Thomas E. Hall, Brian K. Hatchell, Patrick Valdez, Douglas L. McMakin
  • Publication number: 20130229302
    Abstract: Differential polarization imaging systems include an axicon configured to provide a displacement of ray bundles associated with different image patches. The displaced ray bundles are directed to antenna horns and orthomode transducers so as to provide outputs correspond to orthogonal linear states of polarization (SOPs). The outputs are directed to a differential radiometer so that Stokes parameter differences between image patches can be obtained. The ray bundle displacements can be selected to correspond to a mechanical spacing of antenna horns. In some examples, ray bundle displacement corresponds to a displacement less than the diffraction limit.
    Type: Application
    Filed: March 2, 2012
    Publication date: September 5, 2013
    Inventors: Bruce E. Bernacki, James F. Kelly, David M. Sheen, Jonathan R. Tedeschi, Thomas E. Hall, Brian K. Hatchell, Patrick Valdez, Douglas L. McMakin
  • Publication number: 20130207670
    Abstract: A regenerative feedback resonant circuit for measuring a transient response in a loop is disclosed. The circuit includes an amplifier for generating a signal in the loop. The circuit further includes a resonator having a resonant cavity and a material located within the cavity. The signal sent into the resonator produces a resonant frequency. A variation of the resonant frequency due to perturbations in electromagnetic properties of the material is measured.
    Type: Application
    Filed: February 14, 2012
    Publication date: August 15, 2013
    Applicant: BATTELLE MEMORIAL INSTITUTE
    Inventors: A. Mark Jones, James F. Kelly, John S. McCloy, Douglas L. McMakin
  • Patent number: 8258995
    Abstract: Methods and apparatuses for imaging material properties in natural-fiber-containing materials can utilize time-domain data. In particular, images can be constructed that provide quantified measures of localized moisture content. For example, one or more antennas and at least one transceiver can be configured to collect time-domain data from radiation interacting with the natural-fiber-containing materials. The antennas and the transceivers are configured to transmit and receive electromagnetic radiation at one or more frequencies, which are between 50 MHz and 1 THz, according to a time-domain impulse function. A computing device is configured to transform the time-domain data to frequency-domain data, to apply a synthetic imaging algorithm for constructing a three-dimensional image of the natural-fiber-containing materials, and to provide a quantified measure of localized moisture content based on a pre-determined correlation of moisture content to frequency-domain data.
    Type: Grant
    Filed: November 12, 2010
    Date of Patent: September 4, 2012
    Assignee: Battelle Memorial Institute
    Inventors: Kyle J. Bunch, Douglas L. McMakin
  • Patent number: 7986260
    Abstract: Circularly-polarized antennas and their methods of use for active holographic imaging through barriers. The antennas are dielectrically loaded to optimally match the dielectric constant of the barrier through which images are to be produced. The dielectric loading helps to remove barrier-front surface reflections and to couple electromagnetic energy into the barrier.
    Type: Grant
    Filed: February 18, 2009
    Date of Patent: July 26, 2011
    Assignee: Battelle Memorial Institute
    Inventors: Douglas L McMakin, Ronald H Severtsen, Wayne M Lechelt, James M Prince
  • Publication number: 20110057827
    Abstract: Methods and apparatuses for imaging material properties in natural-fiber-containing materials can utilize time-domain data. In particular, images can be constructed that provide quantified measures of localized moisture content. For example, one or more antennas and at least one transceiver can be configured to collect time-domain data from radiation interacting with the natural-fiber-containing materials. The antennas and the transceivers are configured to transmit and receive electromagnetic radiation at one or more frequencies, which are between 50 MHz and 1 THz, according to a time-domain impulse function. A computing device is configured to transform the time-domain data to frequency-domain data, to apply a synthetic imaging algorithm for constructing a three-dimensional image of the natural-fiber-containing materials, and to provide a quantified measure of localized moisture content based on a pre-determined correlation of moisture content to frequency-domain data.
    Type: Application
    Filed: November 12, 2010
    Publication date: March 10, 2011
    Applicant: BATTELLE MEMORIAL INSTITUTE
    Inventors: Kyle J. Bunch, Douglas L. McMakin
  • Patent number: 7855673
    Abstract: The present invention includes methods and apparatuses for imaging material properties in natural-fiber-containing materials. In particular, the images can provide quantified measures of localized moisture content. Embodiments of the invention utilize an array of antennas and at least one transceiver to collect amplitude and phase data from radiation interacting with the natural-fiber-containing materials. The antennas and the transceivers are configured to transmit and receive electromagnetic radiation at one or more frequencies, which are between 50 MHz and 1 THz. A conveyance system passes the natural-fiber-containing materials through a field of view of the array of antennas. A computing device is configured to apply a synthetic imaging algorithm to construct a three-dimensional image of the natural-fiber-containing materials that provides a quantified measure of localized moisture content. The image and the quantified measure are both based on the amplitude data, the phase data, or both.
    Type: Grant
    Filed: July 10, 2008
    Date of Patent: December 21, 2010
    Assignee: Battelle Memorial Institute
    Inventors: Kyle J. Bunch, Brian J. Tucker, Ronald H. Severtsen, Thomas E. Hall, Douglas L. McMakin, Wayne M. Lechelt, Jeffrey W. Griffin, David M. Sheen
  • Patent number: 7844081
    Abstract: Disclosed herein are exemplary embodiments of imaging systems and methods of using such systems. In one exemplary embodiment, one or more direct images of the body of a clothed subject are received, and a motion signature is determined from the one or more images. In this embodiment, the one or more images show movement of the body of the subject over time, and the motion signature is associated with the movement of the subject's body. In certain implementations, the subject can be identified based at least in part on the motion signature. Imaging systems for performing any of the disclosed methods are also disclosed herein. Furthermore, the disclosed imaging, rendering, and analysis methods can be implemented, at least in part, as one or more computer-readable media comprising computer-executable instructions for causing a computer to perform the respective methods.
    Type: Grant
    Filed: May 15, 2006
    Date of Patent: November 30, 2010
    Assignee: Battelle Memorial Institute
    Inventors: Douglas L. McMakin, Mike O. Kennedy
  • Patent number: 7834802
    Abstract: Disclosed are systems, methods, devices, and apparatus to determine if a clothed individual is carrying a suspicious, concealed object. This determination includes establishing data corresponding to an image of the individual through interrogation with electromagnetic radiation in the 200 MHz to 1 THz range. In one form, image data corresponding to intensity of reflected radiation and differential depth of the reflecting surface is received and processed to detect the suspicious, concealed object.
    Type: Grant
    Filed: April 28, 2008
    Date of Patent: November 16, 2010
    Assignee: Battelle Memorial Institute
    Inventors: Paul E. Keller, Thomas E. Hall, Douglas L. McMakin
  • Patent number: 7809171
    Abstract: One embodiment of the present invention includes interrogating a location along a face of a person with multiple wavelengths of electromagnetic radiation. Signals are established corresponding to detection of the wavelengths reflected from the location. A determination is made as to whether a disguising material covers at least a part of the face based on a difference in range to the location indicated by these signals. Alternatively, the signals may correspond to reflections by different portions of an eye of the person and a determination is made regarding the location of one or more eyes of the person based on the signals. In one particular nonlimiting form, a multispectral, three-dimensional signature of facial features is registered to eye location that may include the iris, nose, chin, mouth, check or the like for facial recognition/identification.
    Type: Grant
    Filed: January 10, 2005
    Date of Patent: October 5, 2010
    Assignee: Battelle Memorial Institute
    Inventors: James C. Solinsky, Norman C. Anheier, Jr., Douglas L. McMakin
  • Publication number: 20100207803
    Abstract: Circularly-polarized antennas and their methods of use for active holographic imaging through barriers. The antennas are dielectrically loaded to optimally match the dielectric constant of the barrier through which images are to be produced. The dielectric loading helps to remove barrier-front surface reflections and to couple electromagnetic energy into the barrier.
    Type: Application
    Filed: February 18, 2009
    Publication date: August 19, 2010
    Applicant: BATTELLE MEMORIAL INSTITUTE
    Inventors: Douglas L. McMakin, Ronald H. Severtsen, Wayne M. Lechelt, James M. Prince
  • Patent number: 7548185
    Abstract: An arrangement of receivers and transmitters used in wideband holographic imaging using a reduced number of physical antenna elements compared to established techniques and systems. At least one of the receivers is configured to receive the reflected signal from three or more of transmitters, and at least one transmitter is configured to transmit a signal to an object, the reflection of which will be received by at least three receivers. The improved arrays are easily incorporated into existing microwave and millimeter wave holographic imaging equipment utilizing the existing mechanical features of this equipment, as well as the existing wideband holographic imaging algorithms and electronics for constructing images.
    Type: Grant
    Filed: September 30, 2005
    Date of Patent: June 16, 2009
    Assignee: Battelle Memorial Institute
    Inventors: David M. Sheen, Douglas L. McMakin
  • Publication number: 20090140907
    Abstract: Disclosed are systems, methods, devices, and apparatus to determine if a clothed individual is carrying a suspicious, concealed object. This determination includes establishing data corresponding to an image of the individual through interrogation with electromagnetic radiation in the 200 MHz to 1 THz range. In one form, image data corresponding to intensity of reflected radiation and differential depth of the reflecting surface is received and processed to detect the suspicious, concealed object.
    Type: Application
    Filed: April 28, 2008
    Publication date: June 4, 2009
    Inventors: Paul E. Keller, Thomas E. Hall, Douglas L. McMakin
  • Publication number: 20080272954
    Abstract: The present invention includes methods and apparatuses for imaging material properties in natural-fiber-containing materials. In particular, the images can provide quantified measures of localized moisture content. Embodiments of the invention utilize an array of antennas and at least one transceiver to collect amplitude and phase data from radiation interacting with the natural-fiber-containing materials. The antennas and the transceivers are configured to transmit and receive electromagnetic radiation at one or more frequencies, which are between 50 MHz and 1 THz. A conveyance system passes the natural-fiber-containing materials through a field of view of the array of antennas. A computing device is configured to apply a synthetic imaging algorithm to construct a three-dimensional image of the natural-fiber-containing materials that provides a quantified measure of localized moisture content. The image and the quantified measure are both based on the amplitude data, the phase data, or both.
    Type: Application
    Filed: July 10, 2008
    Publication date: November 6, 2008
    Inventors: Kyle J. Bunch, Brian J. Tucker, Ronald H. Severtsen, Thomas E. Hall, Douglas L. McMakin, Wayne M. Lechelt, Jeffrey W. Griffin, David M. Sheen
  • Patent number: 7405692
    Abstract: Disclosed are systems, methods, devices, and apparatus to interrogate a clothed individual with electromagnetic radiation to determine if a concealed object is being carried. This determination includes establishing data corresponding to an image of the individual with a pair of opposed, semi-cylindrical array panels each configured to interrogate the individual with electromagnetic radiation in the 200 MHz to 1 THz range.
    Type: Grant
    Filed: October 30, 2003
    Date of Patent: July 29, 2008
    Assignee: Battelle Memorial Institute
    Inventors: Douglas L. McMakin, Thomas E. Hall, David M. Sheen, Ronald H. Severtsen