Patents by Inventor Eugene A. Terray

Eugene A. Terray 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: 7545705
    Abstract: A system and method for measuring the directional spectrum of one or more waves in a fluid medium using a multi-beam sonar system. In an exemplary embodiment, range cells located within a plurality of acoustic beams are sampled to provide current velocity data. Optionally, wave surface height and pressure data is obtained as well. This velocity, wave height, and pressure data is Fourier-transformed by one or more signal processors within the system, and a surface height spectrum produced. A cross-spectral coefficient matrix at each observed frequency is also generated from this data. A sensitivity vector specifically related to the ADCP's transducer array geometry is used in conjunction with maximum likelihood method (MLM), iterative maximum likelihood method (IMLM), or other similar methods to solve a the wave equation at each frequency and produce a frequency-specific wave directional spectrum.
    Type: Grant
    Filed: December 18, 2007
    Date of Patent: June 9, 2009
    Assignee: Teledyne RD Instruments, Inc.
    Inventors: Blair H Brumley, Eugene A Terray, Brandon S Strong
  • Publication number: 20080094940
    Abstract: A system and method for measuring the directional spectrum of one or more waves in a fluid medium using a multi-beam sonar system. In an exemplary embodiment, range cells located within a plurality of acoustic beams are sampled to provide current velocity data. Optionally, wave surface height and pressure data is obtained as well. This velocity, wave height, and pressure data is Fourier-transformed by one or more signal processors within the system, and a surface height spectrum produced. A cross-spectral coefficient matrix at each observed frequency is also generated from this data. A sensitivity vector specifically related to the ADCP's transducer array geometry is used in conjunction with maximum likelihood method (MLM), iterative maximum likelihood method (IMLM), or other similar methods to solve a the wave equation at each frequency and produce a frequency-specific wave directional spectrum.
    Type: Application
    Filed: December 18, 2007
    Publication date: April 24, 2008
    Applicant: TELEDYNE RD INSTRUMENTS, INC.
    Inventors: Blair Brumley, Eugene Terray, Brandon Strong
  • Patent number: 7317660
    Abstract: A system and method for measuring the directional spectrum of one or more waves in a fluid medium using a multi-beam sonar system is disclosed. In an exemplary embodiment, range cells located within a plurality of acoustic beams are sampled to provide current velocity data. Optionally, wave surface height and pressure data is obtained as well. A sensitivity vector specifically related to the ADCP's transducer array geometry is used in conjunction with maximum likelihood method (MLM), iterative maximum likelihood method (IMLM), or other similar methods to solve a the wave equation at each frequency and produce a frequency-specific wave directional spectrum. The frequency-specific spectra are combined to construct a complete two-dimensional wave directional spectrum.
    Type: Grant
    Filed: January 30, 2004
    Date of Patent: January 8, 2008
    Assignee: Teledyne RD Instruments, Inc.
    Inventors: Blair H. BrumleĆ½, Eugene A. Terray, Brandon S. Strong
  • Publication number: 20040184350
    Abstract: A system and method for measuring the directional spectrum of one or more waves in a fluid medium using a multi-beam sonar system. In an exemplary embodiment, range cells located within a plurality of acoustic beams are sampled to provide current velocity data. Optionally, wave surface height and pressure data is obtained as well. This velocity, wave height, and pressure data is Fourier-transformed by one or more signal processors within the system, and a surface height spectrum produced. A cross-spectral coefficient matrix at each observed frequency is also generated from this data. A sensitivity vector specifically related to the ADCP's transducer array geometry is used in conjunction with maximum likelihood method (MLM), iterative maximum likelihood method (IMLM), or other similar methods to solve a the wave equation at each frequency and produce a frequency-specific wave directional spectrum.
    Type: Application
    Filed: January 30, 2004
    Publication date: September 23, 2004
    Inventors: Blair H. Brumley, Eugene A. Terray, Brandon S. Strong
  • Patent number: 6700834
    Abstract: A system and method for measuring the directional spectrum of one or more waves in a fluid medium using a multi-beam sonar system. In an exemplary embodiment, range cells located within a plurality of acoustic beams are sampled to provide current velocity data. Optionally, wave surface height and pressure data is obtained as well. This velocity, wave height, and pressure data is Fourier-transformed by one or more signal processors within the system, and a surface height spectrum produced. A cross-spectral coefficient matrix at each observed frequency is also generated from this data. A sensitivity vector specifically related to the ADCP's transducer array geometry is used in conjunction with maximum likelihood method (MLM), iterative maximum likelihood method (IMLM), or other similar methods to solve a the wave equation at each frequency and produce a frequency-specific wave directional spectrum.
    Type: Grant
    Filed: July 23, 2001
    Date of Patent: March 2, 2004
    Assignee: RD Instruments, Inc.
    Inventors: Blair H. Brumley, Eugene A. Terray, Brandon S. Strong
  • Publication number: 20020018400
    Abstract: A system and method for measuring the directional spectrum of one or more waves in a fluid medium using a multi-beam sonar system. In an exemplary embodiment, range cells located within a plurality of acoustic beams are sampled to provide current velocity data. Optionally, wave surface height and pressure data is obtained as well. This velocity, wave height, and pressure data is Fourier-transformed by one or more signal processors within the system, and a surface height spectrum produced. A cross-spectral coefficient matrix at each observed frequency is also generated from this data. A sensitivity vector specifically related to the ADCP's transducer array geometry is used in conjunction with maximum likelihood method (NLM), iterative maximum likelihood method (IMLM), or other similar methods to solve a the wave equation at each frequency and produce a frequency-specific wave directional spectrum.
    Type: Application
    Filed: July 23, 2001
    Publication date: February 14, 2002
    Inventors: Blair H. Brumley, Eugene A. Terray, Brandon S. Strong
  • Patent number: 6282151
    Abstract: A system and method for measuring the directional spectrum of one or more waves in a fluid medium using a multi-beam sonar system. In an exemplary embodiment, range cells located within a plurality of acoustic beams are sampled to provide current velocity data. Optionally, wave surface height and pressure data is obtained as well. This velocity, wave height, and pressure data is Fourier-transformed by one or more signal processors within the system, and a surface height spectrum produced. A cross-spectral coefficient matrix at each observed frequency is also generated from this data. A sensitivity vector specifically related to the ADCP's transducer array geometry is used in conjunction with maximum likelihood method (MLM), iterative maximum likelihood method (IMLM), or other similar methods to solve a the wave equation at each frequency and produce a frequency-specific wave directional spectrum.
    Type: Grant
    Filed: February 1, 2000
    Date of Patent: August 28, 2001
    Assignee: Rowe-Deines Instruments
    Inventors: Blair H. Brumley, Eugene A. Terray, Brandon S. Strong
  • Patent number: 6052334
    Abstract: A system and method for measuring the directional spectrum of one or more waves in a fluid medium using a multi-beam sonar system. In an exemplary embodiment, range cells located within a plurality of acoustic beams are sampled to provide current velocity data. Optionally, wave surface height and pressure data is obtained as well. This velocity, wave height, and pressure data is Fourier-transformed by one or more signal processors within the system, and a surface height spectrum produced. A cross-spectral coefficient matrix at each observed frequency is also generated from this data. A sensitivity vector specifically related to the ADCP's transducer array geometry is used in conjunction with maximum likelihood method (MLM), iterative maximum likelihood method (IMLM), or other similar methods to solve a the wave equation at each frequency and produce a frequency-specific wave directional spectrum.
    Type: Grant
    Filed: August 4, 1998
    Date of Patent: April 18, 2000
    Assignee: Rowe-Deines Instruments
    Inventors: Blair H. Brumley, Eugene A. Terray, Brandon S. Strong
  • Patent number: 5615173
    Abstract: A system and method for measuring current velocities using coded-pulse broadband acoustic signals. Autocorrelation of two phase coded pulses which are in the water during a single transmission cycle is used to calculate a Doppler frequency. The effective result is current profilers having improved profiling range and spatio-temporal resolution.
    Type: Grant
    Filed: July 23, 1996
    Date of Patent: March 25, 1997
    Assignee: Rowe, Deines Instruments Incorporated
    Inventors: Blair H. Brumley, Kent L. Deines, Ramon G. Cabrera, Eugene A. Terray
  • Patent number: 5483499
    Abstract: A system and method for measuring current velocities using coded-pulse broadband acoustic signals. Autocorrelation of two phase coded pulses which are in the water during a single transmission cycle is used to calculate a Doppler frequency. The effective result is current profilers having improved profiling range and spatio-temporal resolution.
    Type: Grant
    Filed: September 30, 1994
    Date of Patent: January 9, 1996
    Assignee: Rowe-Deines Instruments, Inc.
    Inventors: Blair H. Brumley, Kent L. Deines, Ramon G. Cabrera, Eugene A. Terray
  • Patent number: 5208785
    Abstract: A system and method for measuring current velocities using coded-pulse broadband acoustic signals. Autocorrelation of two phase coded pulses which are in the water during a single transmission cycle is used to calculate a Doppler frequency. The effective result is current profilers having improved profiling range and spatio-temporal resolution.
    Type: Grant
    Filed: March 13, 1992
    Date of Patent: May 4, 1993
    Assignee: Rowe, Deines Instruments Incorporated
    Inventors: Blair H. Brumley, Kent L. Deines, Ramon G. Cabrera, Eugene A. Terray
  • Patent number: RE35535
    Abstract: A system and method for measuring current velocities using coded-pulse broadband acoustic signals. Autocorrelation of two phase coded pulses which are in the water during a single transmission cycle is used to calculate a Doppler frequency. The effective result is current profilers having improved profiling range and spatio-temporal resolution.
    Type: Grant
    Filed: May 4, 1995
    Date of Patent: June 17, 1997
    Assignee: Rowe, Deines Instruments Incorporated
    Inventors: Blair H. Brumley, Kent L. Deines, Ramon G. Cabrera, Eugene A. Terray