FMCW Radars for Volume Scattering from Precipitation
Supantha Sen, Anand Kalwar, K. J. Vinoy, T. V. Prabhakar, V. Chandrasekar
Abstract
Supantha Sen, Anand Kalwar, K. J. Vinoy, T. V. Prabhakar, V. Chandrasekar
Abstract
In weather radars, most of the information about precipitation volume are derived from the received signal. Historically the preferred mode of operation has been pulsed radars, whereas Frequency modulated continuous wave (FMCW) radars have not been used due to several limitations such as need for two antennas, isolation between transmitter and receiver among other things. However, in the context of low power short range radars this preference must be revisited. FMCW radars can achieve good high resolution as narrow pulse radars but can be done with lower power level due to the CW nature. The radar equation for volume targets in FMCW radar is different from the general pulsed radar. The radar range equation for FMCW weather radars is revisited here to explore the power requirements, for short range urban applications.
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In weather radars, most of the information about precipitation volume are derived from the received signal. Historically the preferred mode of operation has been pulsed radars, whereas Frequency modulated continuous wave (FMCW) radars have not been used due to several limitations such as need for two antennas, isolation between transmitter and receiver among other things. However, in the context of low power short range radars this preference must be revisited. FMCW radars can achieve good high resolution as narrow pulse radars but can be done with lower power level due to the CW nature. The radar equation for volume targets in FMCW radar is different from the general pulsed radar. The radar range equation for FMCW weather radars is revisited here to explore the power requirements, for short range urban applications.
Key concepts: Continuous-wave radar, Radar, Pulse-Doppler radar, 3D radar, Radar engineering details, Remote sensing, Radar configurations and types, Bistatic radar