12. If the radar system in problem 1 is looking at surface clutter having a reflectivity value of o° = -20 dB, dBm/m², if the area of the clutter cell is 400,000 square meters, what is the clutter RCS and the resulting signal-to-clutter ratio (SCR)? %3D 1. Target received power: Using equation (2.8), determine the single-pulse received power level from a target for a radar system having the following characteristics: Transmitter: 100 kilowatt peak 9.4 GHz Frequency: Antenna Gain: Target RCS: Target Range: 32 dB O dBsm 50 km

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12. If the radar system in problem 1 is looking at surface clutter having a reflectivity value of
o° = -20 dB, dBm2/m², if the area of the clutter cell is 400,000 square meters, what is the
clutter RCS and the resulting signal-to-clutter ratio (SCR)?
1. Target received power: Using equation (2.8), determine the single-pulse received power level
from a target for a radar system having the following characteristics:
Transmitter:
100 kilowatt peak
9.4 GHz
Frequency:
Antenna Gain:
Target RCS:
Target Range:
32 dB
O dBsm
50 km
Transcribed Image Text:12. If the radar system in problem 1 is looking at surface clutter having a reflectivity value of o° = -20 dB, dBm2/m², if the area of the clutter cell is 400,000 square meters, what is the clutter RCS and the resulting signal-to-clutter ratio (SCR)? 1. Target received power: Using equation (2.8), determine the single-pulse received power level from a target for a radar system having the following characteristics: Transmitter: 100 kilowatt peak 9.4 GHz Frequency: Antenna Gain: Target RCS: Target Range: 32 dB O dBsm 50 km
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