USRE47535E

Method and apparatus for accommodating device and/or signal mismatch in a sensor array

Claim Score by NHIP

Read claim 1, the broadest

Abstract

Noise discrimination in signals from a plurality of sensors is conducted by enhancing the phase difference in the signals such that off-axis pick-up is suppressed while on-axis pick-up is enhanced. Alternatively, attenuation/expansion are applied to the signals in a phase difference dependent manner, consistent with suppression of off-axis pick-up and on-axis enhancement. Nulls between sensitivity lobes are widened, effectively narrowing the sensitivity lobes and improving directionality and noise discrimination.

Term

Term ended

Expired 26 August 2025, 1.1 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

77 claims: 5 independent, 72 dependent

  1. 1
    Broadest claimClaim Score 37, narrow(NHIP)A method for accommodating device and/or signal mismatch in a sensor array system having a plurality of sensors configured to generate a plurality of input signals including first and second sensors generating first and second input signals, the plurality of input signals being representable, at least one frequency, by input vectors each having a phase component and a magnitude component, including first and second input vectors, the method comprising:generating the first and second input signals from the first and second sensors;processing, using a processor, the first and second input signals, the processing including, at the at least one frequency, using the magnitudes of the first and second input vectors to obtain corresponding first and second magnitude-matched vectors each having a magnitude that is substantially equal to one of an arithmetic mean, a geometric mean, a harmonic mean, or a root-mean-square of the magnitudes of two or more input vectors;and generating an output signal having a magnitude that is a function of at least one of the first and second magnitude-matched vectors.
  2. 22
    A sensitivity matching circuit adapted to accommodate device and/or signal mismatch in a sensor array system having a plurality of sensors configured to generate a plurality of input signals including first and second sensors generating first and second input signals, the plurality of input signals being representable, at least one frequency, by input vectors each having a phase component and a magnitude component, including first and second input vectors, the sensitivity matching circuit comprising:one or more circuits adapted to generate the first and second input signals from the first and second sensors and process the first and second input signals, the processing including, at the at least one frequency, using the magnitudes of the first and second input vectors to obtain corresponding first and second magnitude-matched vectors each having a magnitude that is substantially equal to one of an arithmetic mean, a geometric mean, a harmonic mean, or a root-mean-square of the magnitude of two or more input vectors, the one or more circuits further adapted to generate an output signal having a magnitude that is a function of at least one of the first and second magnitude-matched vectors.
  3. 43
    A method comprising:generating, by an input signal generator, first and second input signals from first and second sensors in a sensor array, wherein the first and second input signals are represented, at least at a frequency, by first and second input vectors each having a phase component and a magnitude component;processing, using a processor, the first and second input signals, the processing including using the magnitude component of the first and second input vectors to obtain corresponding first and second output vectors each having a magnitude that is substantially equal to a mathematical mean of the magnitudes of two or more input vectors;wherein the mathematical mean is a value selected from the group consisting of an arithmetic mean, a geometric mean, a harmonic mean, a root-mean-square, a logarithmic mean, and a particular mean selected based on characteristics of the first and second input signals;and generating, by an output signal generator, an output signal, wherein the output signal is represented, at least at the frequency, by an output vector generated as a vector sum of the first and second output vectors.
  4. 56
    A sensitivity matching circuit comprising:one or more input signal generator circuits adapted to perform generating first and second input signals from a first and second sensor in a sensor array, wherein the first and second input signals are represented, at least at a frequency, by first and second input vectors each having a phase component and a magnitude component;one or more processor circuits adapted to perform processing the first and second input signals, the processing including using the magnitude component of the first and second input vectors to obtain corresponding first and second output vectors each having a magnitude that is substantially equal to a mathematical mean of the magnitudes of two or more input vectors;wherein the mathematical mean is a value selected from the group consisting of an arithmetic mean, a geometric mean, a harmonic mean, a root-mean-square, a logarithmic mean, and a particular mean selected based on characteristics of the first and second input signals;and one or more output signal generator circuits adapted to perform generating an output signal, wherein the output signal is represented, at least at the frequency, by an output vector generated as a vector sum of the first and second output vectors.
  5. 67
    A system for signal processing, the system comprising:an input signal generator that generates first and second input signals from a first and second sensor in a sensor array, wherein the first and second input signals are represented, at least at a frequency, by first and second input vectors each having a phase component and a magnitude component;a processor that processes the first and second input signals, the processing including using the magnitude component of the first and second input vectors to obtain corresponding first and second output vectors each having a magnitude that is substantially equal to a mathematical mean of the magnitudes of two or more input vectors;wherein the mathematical mean is a value selected from the group consisting of an arithmetic mean, a geometric mean, a harmonic mean, a root-mean-square, a logarithmic mean, and a particular mean selected based on characteristics of the first and second input signals;and an output signal generator that generates an output signal, wherein the output signal is represented, at least at the frequency, by an output vector generated as a vector sum of the first and second output vectors.