• DocumentCode
    2526484
  • Title

    Balanced coherent heterodyne detection with double sideband suppressed carrier modulation for high performance microwave photonic links

  • Author

    Middleton, Charles ; DeSalvo, Richard

  • Author_Institution
    Harris Corp., Melbourne, FL, USA
  • fYear
    2009
  • fDate
    22-24 Sept. 2009
  • Firstpage
    15
  • Lastpage
    16
  • Abstract
    Optical transmission of microwave signals offers many advantages such as increased bandwidth; immunity to electromagnetic interference; reduction of size, weight and power consumption; and low, frequency independent loss over long distances. But microwave photonic links often lack the performance required to replace traditional microwave links. We present a microwave photonic link architecture that enables high gain and dynamic range, low noise figure, and multi-octave bandwidth operation. Our method uses double sideband suppressed carrier (DSB-SC) modulation together with a balanced coherent heterodyne detection scheme. The modulation method increases link linearity by producing amplitude modulation based on the optical field rather than intensity. The combination of carrier suppression, optical amplification, phase-locked local oscillator insertion, and balanced detection provide high performance microwave photonic links.
  • Keywords
    amplitude modulation; heterodyne detection; microwave photonics; optical communication equipment; optical modulation; amplitude modulation; balanced coherent heterodyne detection; double sideband suppressed carrier modulation; microwave photonic links; multioctave bandwidth operation; optical field; Amplitude modulation; Bandwidth; Electromagnetic interference; Energy consumption; Frequency; Optical losses; Optical mixing; Optical modulation; Propagation losses; Stimulated emission;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Avionics, Fiber-Optics and Phototonics Technology Conference, 2009. AVFOP '09. IEEE
  • Conference_Location
    San Antonio, TX
  • Print_ISBN
    978-1-4244-3358-2
  • Type

    conf

  • DOI
    10.1109/AVFOP.2009.5342725
  • Filename
    5342725