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[Keyword] radar equation(3hit)

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  • Radar Reflectivity and Rainfall Rate Relation from Weibull Raindrop-Size Distribution

    Hua JIANG  Motoaki SANO  Matsuo SEKINE  

     
    PAPER

      Vol:
    E79-B No:6
      Page(s):
    797-800

    We have compared the various raindrop-size distributions (DSD) with the recent experimental data collected by the distrometer. It is shown that the Weibull distribution is the best fit to the experimental data for drizzle, widespread and thunderstorm rain cases. By using this Weibull DSD, we obtained a new expression of the radar reflectivity factor (Z) and the rainfall rate (R) relation, that is Z=285R1.48, which gives few errors comparing to some measurements in TRMM frequency of 14GHZ.

  • A Generalized Surface Echo Radar Equation for Down-Looking Pencil Beam Radar

    Toshiaki KOZU  

     
    LETTER-Radio Communication

      Vol:
    E78-B No:8
      Page(s):
    1245-1248

    A generalized surface scattering radar equation for a near-nadir-looking pencil beam radar, which covers both beam-limited and pulse-limited regions, is derived. This equation is a generalization of the commonly used nadir-pointing beam-limited radar equation taking both antenna beam and pulse wave form weighting functions into account, and is convenient for the calculation of radar received power and scattering cross-section of the surface.

  • Multi-Beam Airborne Pulsed-Doppler Radar System and Its PRF Tuning Effect for Clutter Rejection

    Michimasa KONDO  Sachiko ISHIKAWA  Takahiko FUJISAKA  Tetsuo KIRIMOTO  Tsutomu HASHIMOTO  

     
    PAPER-Radar System

      Vol:
    E76-B No:10
      Page(s):
    1263-1270

    A multi-beam airborne pulsed-Doppler radar (MBR) system is presented and its clutter rejection performance compared with conventional phased array radar (PAR)'s by PRF tuning is discussed. The pulsed-Doppler radar equations taking account of the multi-beam operation are introduced and some kinds of computer simulations for seeking the conditions to get maximum signal to clutter ratio are carried out. As a results of this, it is cleared that same order of signal to clutter ratio improvement gotten in high PRF operation by conventional PAR can be realized at lower PRF operation by MBR on clutter free area, and higher clutter rejection effect, which is proportional to beam numbers, is obtained under affection of both of mainlobe and sidelobe clutters with order of beam numbers. This also means observable numbers of range bin are increased in MBR operation.