• DocumentCode
    771705
  • Title

    A hybrid star-ring architecture for fiber Bragg grating sensor system

  • Author

    Peng, Peng-Chun ; Tseng, Hong-Yih ; Chi, Sien

  • Author_Institution
    Inst. of Electro-Opt. Eng., Nat. Chiao-Tung Univ., Taiwan, Taiwan
  • Volume
    15
  • Issue
    9
  • fYear
    2003
  • Firstpage
    1270
  • Lastpage
    1272
  • Abstract
    In this letter, we present a hybrid star-ring architecture for a highly reliable fiber Bragg grating (FBG) sensor system and demonstrate its effectiveness. The main trunk of the proposed sensor network is star topology and the sensing branches comprise a series of concatenated ring subnets. The weakness in reliability of the star network is overcome by the ring subnets with a self-healing function based on the reconfigurable optical switches between each subnet. To enhance the signal-to-noise ratio (SNR) of the sensor system, we adopt a linear-cavity FBG laser scheme to construct our proposed hybrid star-ring architecture. Such a fiber-laser scheme results in the SNR over 48 dB for the sensor network. The network survivability of a ten-point FBG sensor is experimentally examined. It is shown that the proposed FBG sensor system can increase the reliability of a sensing network.
  • Keywords
    Bragg gratings; fibre lasers; fibre optic sensors; laser cavity resonators; laser feedback; reliability; fiber Bragg grating sensor system; highly reliable fiber Bragg grating sensor system; hybrid star-ring architecture; linear-cavity FBG laser scheme; reconfigurable optical switches; self-healing function; sensing network; sensor network; signal-to-noise ratio; star topology; survivability; ten-point FBG sensor; Bragg gratings; Concatenated codes; Fiber gratings; Fiber lasers; Network topology; Optical switches; Ring lasers; Sensor systems; Signal to noise ratio; Telecommunication network reliability;
  • fLanguage
    English
  • Journal_Title
    Photonics Technology Letters, IEEE
  • Publisher
    ieee
  • ISSN
    1041-1135
  • Type

    jour

  • DOI
    10.1109/LPT.2003.816699
  • Filename
    1224602