• DocumentCode
    190043
  • Title

    Attofarad-level capacitance variation detector uses RF-sensor with 98/100 MHz oscillator/local superheterodyne scheme for wireless pest sensor

  • Author

    Nishikawa, Hisashi ; Matsumoto, Takaki ; Tanaka, Ami ; Douseki, Takakuni

  • Author_Institution
    Ritsumeikan Univ., Kusatsu, Japan
  • fYear
    2014
  • fDate
    2-5 Nov. 2014
  • Firstpage
    1555
  • Lastpage
    1558
  • Abstract
    An ultrasmall-capacitance-variation detector was developed that consists of a VHF-band LC oscillator, sensing pads, and a superheterodyne scheme that magnifies the resonant-frequency shift. An oscillator frequency (~100 MHz) in the VHF band allows a small base capacitance to be used for resonance, which provides a high sensitivity to small changes in capacitance. An RF sensor with a superheterodyne scheme magnifies the frequency shift and enhances the sensor sensitivity up to the attofarad level. The sensitive sensor must be isolated from human movement and other environmental influences to ensure accurate measurements. A simple shield consisting of a small ground loop with a perimeter of 17 cm was added to the sensor assembly. As an application of the sensing system, a wireless sensor for the non-invasive detection of pests inside wood was constructed. It was able to detect the movement of insects inside a wooden post.
  • Keywords
    VHF oscillators; capacitance measurement; wireless sensor networks; RF-sensor; VHF-band LC oscillator; attofarad-level capacitance variation detector; resonant-frequency shift; sensing pads; sensor sensitivity; superheterodyne scheme; ultrasmall-capacitance-variation detector; wireless pest sensor; Capacitance; Insects; Oscillators; Resonant frequency; Sensitivity; Sensors; Wireless sensor networks; Attfarad capacitance variation detector; RF sensor; Superheterodyne; Wireless pest sensor;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    SENSORS, 2014 IEEE
  • Conference_Location
    Valencia
  • Type

    conf

  • DOI
    10.1109/ICSENS.2014.6985313
  • Filename
    6985313