• DocumentCode
    3207163
  • Title

    A comparison of wide bandwidth quadrature demodulators using computer modelling

  • Author

    Owen, J.D.

  • Author_Institution
    EnTegra Ltd., UK
  • fYear
    1997
  • fDate
    14-16 Oct 1997
  • Firstpage
    506
  • Lastpage
    511
  • Abstract
    In radar systems that need to measure target range and velocity accurately the transmitter and receiver chains use the same local oscillators. This ensures that the phase of the target return only contains the targets range information. The radar receiver demodulates the signal into inphase (I) and quadrature (Q) signals, using a quadrature demodulator. A conventional analogue quadrature demodulator is shown. The nature of demodulating one signal into two signal paths means that any imbalance in the characteristics of the paths causes an error (called the image) in the IQ samples. The image can appear as a target which does not exist and is therefore undesirable. Traditionally the demodulation has been performed using analogue components, then converting to digital once the signals are at baseband. With advances in ADC and DSP technology, digital methods are becoming possible at radar bandwidths. These techniques have been widely documented over the last few years. What has not been documented to our knowledge is a comparison of wide bandwidth quadrature demodulator techniques. That was the objective of a study by Racal Radar Defence Systems
  • Keywords
    radar computing; ADC; DSP technology; Racal Radar Defence Systems; analogue quadrature demodulator; computer modelling; digital methods; inphase signal; local oscillators; quadrature signal; radar bandwidths; radar receiver; radar systems; target range measurement; target return; target velocity measurement; transmitter; wide bandwidth quadrature demodulators;
  • fLanguage
    English
  • Publisher
    iet
  • Conference_Titel
    Radar 97 (Conf. Publ. No. 449)
  • Conference_Location
    Edinburgh
  • ISSN
    0537-9989
  • Print_ISBN
    0-85296-698-9
  • Type

    conf

  • DOI
    10.1049/cp:19971727
  • Filename
    629216