Compact ranges based on amplitude and phase holograms have been developed and shown to be applicable at submillimeter wavelengths. Amplitude hologram based compact range has been successfully used for measuring a 1.5 m reflector antenna at 322 GHz. A phase hologram based compact range has been demonstrated for RCS measurements at 310 GHz.</p
Computer-generated holograms can be used as collimating elements in compact antenna test ranges (CAT...
Computer-generated holograms (diffractive elements) can be used for shaping millimeter-wave beams, e...
MilliLab/Radio Laboratory at the Helsinki University of Technology (TKK) is developing a hologram-ba...
Compact ranges based on amplitude and phase holograms have been developed and shown to be applicable...
Computer-generated holograms (diffractive elements) can be used for shaping submillimeter-wave beams...
A compact radar cross section (RCS) test range based on a phase hologram has been developed for scal...
A hologram-based compact antenna test range (CATR) is being developed to overcome challenges met in ...
The HUT Radio Laboratory developes a novel compact radar cross section (RCS) test range for scale mo...
We have constructed a demonstrative compact antenna test range (CATR) and tested its performance at ...
A compact radar cross section (RCS) test range for scale model measurements is being developed. The ...
Compact antenna test range developed at TKK Helsinki University of Technology utilizes a computer-ge...
The application of conventional reflector-type compact antenna test ranges (CATRs) becomes increasin...
The quiet-zone field test results of a submillimetre-wave compact antenna test range (CATR) based on...
The hologram based compact antenna test range is a viable option for testing millimetre and sub-mill...
This paper studies the feasibility of a hologram-based compact antenna test range (CATR) for submill...
Computer-generated holograms can be used as collimating elements in compact antenna test ranges (CAT...
Computer-generated holograms (diffractive elements) can be used for shaping millimeter-wave beams, e...
MilliLab/Radio Laboratory at the Helsinki University of Technology (TKK) is developing a hologram-ba...
Compact ranges based on amplitude and phase holograms have been developed and shown to be applicable...
Computer-generated holograms (diffractive elements) can be used for shaping submillimeter-wave beams...
A compact radar cross section (RCS) test range based on a phase hologram has been developed for scal...
A hologram-based compact antenna test range (CATR) is being developed to overcome challenges met in ...
The HUT Radio Laboratory developes a novel compact radar cross section (RCS) test range for scale mo...
We have constructed a demonstrative compact antenna test range (CATR) and tested its performance at ...
A compact radar cross section (RCS) test range for scale model measurements is being developed. The ...
Compact antenna test range developed at TKK Helsinki University of Technology utilizes a computer-ge...
The application of conventional reflector-type compact antenna test ranges (CATRs) becomes increasin...
The quiet-zone field test results of a submillimetre-wave compact antenna test range (CATR) based on...
The hologram based compact antenna test range is a viable option for testing millimetre and sub-mill...
This paper studies the feasibility of a hologram-based compact antenna test range (CATR) for submill...
Computer-generated holograms can be used as collimating elements in compact antenna test ranges (CAT...
Computer-generated holograms (diffractive elements) can be used for shaping millimeter-wave beams, e...
MilliLab/Radio Laboratory at the Helsinki University of Technology (TKK) is developing a hologram-ba...