Exact navigation of detected radar signals is crucial for usage of radar data in meteorological applications. The antenna pointing accuracy in azimuth and elevation of a polarimetric weather research radar depending on position of the sun is assessed using dedicated solar boxscans in a sequence of 10 min. The research radar of the German Meteorological Service (Deutscher Wetterdienst, DWD) is located at the meteorological observatory Hohenpeissenberg. It is identical to the 17 weather radars of the German weather radar network. A non-linear azimuthal variation of azimuthal pointing bias of up to 0.1 ∘ is found, which is significant as this is commonly viewed as the target pointing accuracy. This azimuthal variation can be attributed...
Verification of the beam pointing direction for ST (stratosphere troposphere) radars is a technicall...
Phased-array weather radar have potential to replace reflector dish radar in major weather radar net...
The method for the daily monitoring of the differential reflectivity bias for polarimetric weather r...
Three methods for estimation of the weather radar antenna azimuth and elevation pointing offsets are...
The electromagnetic power that comes from the Sun has been proved to be an effective reference for c...
The sun is used for weather radar calibration for a long time. It is used to monitor receiver stabil...
The absolute calibration of a dual-polarization radar of the German Weather Service is continuously ...
A quality control method for combined online monitoring of weather radar antenna pointing biases and...
Polarization properties of radar waves that are scattered from atmospheric objects are of great inte...
The sun is known to be a good target for weather radar calibration. In this paper high-resolution ra...
The electromagnetic power that arrives from the Sun in the C-band has been used to check the quality...
Data collected from zenith pointing radar is used to study the range dependence of some meteorologic...
Contains fulltext : 246554.pdf (Publisher’s version ) (Open Access
Abstract—Geolocation and pointing accuracy analyses of the WindSat flight data are presented. The tw...
Antenna pointing calibration is a major task for ensuring a correctly aligned SAR antenna radiation ...
Verification of the beam pointing direction for ST (stratosphere troposphere) radars is a technicall...
Phased-array weather radar have potential to replace reflector dish radar in major weather radar net...
The method for the daily monitoring of the differential reflectivity bias for polarimetric weather r...
Three methods for estimation of the weather radar antenna azimuth and elevation pointing offsets are...
The electromagnetic power that comes from the Sun has been proved to be an effective reference for c...
The sun is used for weather radar calibration for a long time. It is used to monitor receiver stabil...
The absolute calibration of a dual-polarization radar of the German Weather Service is continuously ...
A quality control method for combined online monitoring of weather radar antenna pointing biases and...
Polarization properties of radar waves that are scattered from atmospheric objects are of great inte...
The sun is known to be a good target for weather radar calibration. In this paper high-resolution ra...
The electromagnetic power that arrives from the Sun in the C-band has been used to check the quality...
Data collected from zenith pointing radar is used to study the range dependence of some meteorologic...
Contains fulltext : 246554.pdf (Publisher’s version ) (Open Access
Abstract—Geolocation and pointing accuracy analyses of the WindSat flight data are presented. The tw...
Antenna pointing calibration is a major task for ensuring a correctly aligned SAR antenna radiation ...
Verification of the beam pointing direction for ST (stratosphere troposphere) radars is a technicall...
Phased-array weather radar have potential to replace reflector dish radar in major weather radar net...
The method for the daily monitoring of the differential reflectivity bias for polarimetric weather r...