• DocumentCode
    1296741
  • Title

    Group-Delay Engineered Noncommensurate Transmission Line All-Pass Network for Analog Signal Processing

  • Author

    Gupta, Shulabh ; Parsa, Armin ; Perret, Etienne ; Snyder, Richard V. ; Wenzel, Robert J. ; Caloz, Christophe

  • Author_Institution
    Dept. of Electr. Eng., Ecole Polytech. de Montreal, Montréal, QC, Canada
  • Volume
    58
  • Issue
    9
  • fYear
    2010
  • Firstpage
    2392
  • Lastpage
    2407
  • Abstract
    A group-delay engineered noncommensurate transmission line two-port all-pass network for analog signal-processing applications is presented, analytically modeled, and experimentally demonstrated. This network consists of transversally cascaded C-sections, which are distributed implementations of the bridged-T equalizer lumped circuit. It is obtained by interconnecting the alternate ports of adjacent lines of a 2N -port coupled transmission line network with transmission line sections, and it is modeled using multiconductor transmission line theory with per-unit-length capacitance matrix C and inductance matrix L. By allowing the different C-sections of the network to exhibit different lengths, a generalized group-delay engineering procedure is proposed, where quasi-arbitrary group-delay responses are achieved by combining the group-delay responses of C-sections with different lengths. A computer design approach based on genetic algorithms is applied for synthesis, which consists of determining the structural parameters of the different C-section groups. Using this approach, noncommensurate networks are group-delay engineered in edge-coupled stripline technology, and Gaussian, linear and quadratic group-delay responses are realized. The theoretical results are validated by experiment. Finally, two application examples of analog signal processing-a tunable impulse delay line and a real-time frequency discriminator-using the proposed dispersive noncommensurate all-pass networks are presented.
  • Keywords
    analogue processing circuits; coupled transmission lines; genetic algorithms; multiconductor transmission lines; signal processing; transmission line theory; analog signal processing; bridged-T equalizer lumped circuit; coupled transmission line network; edge-coupled stripline technology; genetic algorithms; group-delay engineered noncommensurate transmission line all-pass network; multiconductor transmission line theory; Coupling circuits; Couplings; Delay; Distributed parameter circuits; Equalizers; Integrated circuit interconnections; Multiconductor transmission lines; Power transmission lines; Real time systems; Scattering; Signal analysis; Signal processing; Transmission line matrix methods; Transmission line theory; Transmission lines; All-pass circuits; analog signal processing; dispersive media; genetic algorithms (GAs); group-delay engineering; multiconductor transmission lines; noncommensurate networks;
  • fLanguage
    English
  • Journal_Title
    Microwave Theory and Techniques, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9480
  • Type

    jour

  • DOI
    10.1109/TMTT.2010.2058933
  • Filename
    5549964