• DocumentCode
    3237504
  • Title

    A Self-Adaptable Method to Optimize the Performance of Frequency-To-Code Conversion Based Measurement Systems

  • Author

    Pereira, J. M Dias ; Postolache, O. ; Girao, Pedro

  • Author_Institution
    Escola Super. de Tecnol., Inst. Politec. de Setubal, Setubal
  • fYear
    2005
  • fDate
    5-7 Sept. 2005
  • Firstpage
    295
  • Lastpage
    298
  • Abstract
    Accuracy, error compensation and simplicity of transducer´s communication and interfacing are three important topics in the design and development of any measurement system. Nowadays, there are a substantial number of transducers and actuators that generate or receive, respectively, frequency modulated signals. The main advantages associated with frequency transducers include its high noise immunity, high output signal power, wide dynamic range and simplicity of signal interfacing and coding [1-2]. The frequency-to-digital conversion (FDC) is easily performed by any microcontroller, or circuits based on commercial off-the- shelf (COTS) components, without need of an analog-to-digital converter (ADC), and the same easiness exists when frequency signals are required for actuators. Eliminating the need of ADCs and DACs reduces the cost of instrumentation and measurement systems and eliminates a large number of error sources associated with these conversion devices. This paper is dedicated to FDC based measurement systems, giving particular attention to calibration issues and self- adaptive measurement capabilities that can be used to select a suitable conversion accuracy for a given signal-to-noise ratio. Some simulation and experimental results for a temperature and humidity measurement system will be included as application examples.
  • Keywords
    error compensation; frequency modulation; microcontrollers; transducers; COTS components; commercial off-the-shelf components; error compensation; frequency modulated signals; frequency transducers; frequency-to-code conversion measurement systems; high noise immunity; high output signal power; microcontroller; self-adaptable method; Actuators; Circuit noise; Error compensation; Frequency conversion; Frequency measurement; Frequency modulation; Optimization methods; Particle measurements; Signal generators; Transducers; accuracy; calibration; error compensation; frequency-to-digital conversion;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Intelligent Data Acquisition and Advanced Computing Systems: Technology and Applications, 2005. IDAACS 2005. IEEE
  • Conference_Location
    Sofia
  • Print_ISBN
    0-7803-9445-3
  • Electronic_ISBN
    0-7803-9446-1
  • Type

    conf

  • DOI
    10.1109/IDAACS.2005.282990
  • Filename
    4062141