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Passive wireless antenna sensor for strain, temperature, crack and fatigue measurement

  • US 9,574,966 B2
  • Filed: 10/02/2014
  • Issued: 02/21/2017
  • Est. Priority Date: 02/15/2008
  • Status: Active Grant
First Claim
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1. A method of monitoring a condition of a structure, comprising:

  • transmitting, at a first time, an interrogation signal to a passive wireless antenna sensor mounted on the structure, wherein the interrogation signal includes frequencies in a frequency range, wherein the frequency range includes a resonant frequency of the passive wireless antenna sensor, wherein the passive wireless antenna sensor is configured such that a change in the condition of the structure will change the resonant frequency;

    receiving a first backscattered signal, wherein the first backscattered signal comprises an antenna backscattered signal from the passive wireless antenna sensor and a structure backscattered signal from the structure, wherein the antenna backscattered signal is modulated by the passive wireless antenna sensor at a modulated frequency;

    detecting a first envelope of the first backscattered signal;

    normalizing the first envelope;

    selecting a reference amplitude;

    determining a first frequency of the first envelope that is associated with the reference amplitude;

    transmitting, at a second time, the interrogation signal to the passive wireless antenna sensor mounted on the structure;

    receiving a second backscattered signal, wherein the second backscattered signal comprises an antenna backscattered signal from the passive wireless antenna sensor and a structure backscattered signal from the structure, wherein the antenna backscattered signal is modulated by the passive wireless antenna sensor at a modulated frequency;

    detecting a second envelope of the second backscattered signal;

    normalizing the second envelope;

    determining a second frequency of the second envelope that is associated with the reference amplitude;

    determining a frequency shift based on a difference between the first frequency and the second frequency; and

    determining the condition of the structure based on the frequency shift.

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