• DocumentCode
    754428
  • Title

    A Compact Broadband MEMS-Integrated Diversity System

  • Author

    Cetiner, B.A. ; Jofre, Luis ; Qian, Jiangyuan ; Liu, Sunan ; Li, G.P. ; De Flaviis, Franco

  • Author_Institution
    Space Sci. Center, Morehead State Univ., KY
  • Volume
    56
  • Issue
    2
  • fYear
    2007
  • fDate
    3/1/2007 12:00:00 AM
  • Firstpage
    436
  • Lastpage
    444
  • Abstract
    A multidisciplinary-research effort encompassing compact broadband antenna design, indoor channel characterization, and an RF microelectromechanical-system (RF MEMS) technology with its application to a diversity system for indoor wireless communications is presented in this paper. We first introduce a coplanar waveguide-fed compact wideband antenna and characterize its impedance and radiation characteristics. The antenna has a 42% impedance bandwidth covering the frequency band of 4-6 GHz. Subsequently, a series of experiments are conducted to characterize the diversity performance of a system using three elements of the proposed antenna for nonline-of-sight indoor multipath environments. From these experiments, we evaluate the performance of the diversity system by calculating power correlation coefficients, power imbalance, and diversity gain. Microwave-laminate-compatible RF MEMS process technology, which has been recently developed in the author´s group, is used to construct a microelectromechanically switched pattern-diversity antenna on RT/Duroid5870 microwave laminate. Radiation and impedance characteristics of this antenna are provided, and its reconfigurability capabilities for mobile environment are discussed
  • Keywords
    antenna radiation patterns; broadband antennas; diversity reception; indoor radio; laminates; micromechanical devices; wireless channels; 4 to 6 GHz; RF microelectromechanical-system technology; RT/Duroid5870 microwave laminate; compact broadband MEMS-integrated diversity system; compact broadband antenna design; coplanar waveguide-fed compact wideband antenna; diversity gain; impedance bandwidth; indoor channel characterization; indoor wireless communications; microelectromechanically switched pattern-diversity antenna; microwave-laminate-compatible RF MEMS process technology; nonline-of-sight indoor multipath environment; power correlation coefficients; power imbalance; radiation characteristics; Bandwidth; Broadband antennas; Coplanar waveguides; Diversity methods; Impedance; Microwave antennas; Microwave technology; Radio frequency; Radiofrequency microelectromechanical systems; Wireless communication; Diversity; RF microelectromechanical system (RF MEMS); indoor communications; microwave laminates; multielement antenna (MEA); multipath channels;
  • fLanguage
    English
  • Journal_Title
    Vehicular Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9545
  • Type

    jour

  • DOI
    10.1109/TVT.2007.891418
  • Filename
    4138009