The application of conventional reflector type compact antenna test ranges (CATR), becomes increasingly difficult above 100 GHz. The main problems are the tight surface accuracy requirements for the reflector, and therefore the high manufacturing costs. These problems can be overcome by the use of a new hologram type of compact range, in which a planar hologram structure is used as a collimating element. This new idea is described, and its performance is studied with theoretical analyses and measurements at 110 GHz
Compact antenna test range developed at TKK Helsinki University of Technology utilizes a computer-ge...
Hologram-based compact antenna test range (CATR) is a potential method for testing large antennas at...
Compact ranges based on amplitude and phase holograms have been developed and shown to be applicable...
The application of conventional reflector type compact antenna test ranges (CATR), becomes increasin...
The application of conventional reflector-type compact antenna test ranges (CATRs) becomes increasin...
A hologram-based compact antenna test range (CATR) is being developed to overcome challenges met in ...
Abstract- A hologram type of compact antenna test range (CATR) is a promising method for testing lar...
A hologram-based compact antenna test range (CATR) is designed, constructed, and used to test a 1.5-...
MilliLab/Radio Laboratory at the Helsinki University of Technology (TKK) is developing a hologram-ba...
The hologram based compact antenna test range is a viable option for testing millimetre and sub-mill...
We have constructed a demonstrative compact antenna test range (CATR) and tested its performance at ...
A compact antenna test range (CATR) based on a radio frequency hologram is a potential method for te...
Computer-generated holograms can be used as collimating elements in compact antenna test ranges (CAT...
The quiet-zone field test results of a submillimetre-wave compact antenna test range (CATR) based on...
This paper studies the feasibility of a hologram-based compact antenna test range (CATR) for submill...
Compact antenna test range developed at TKK Helsinki University of Technology utilizes a computer-ge...
Hologram-based compact antenna test range (CATR) is a potential method for testing large antennas at...
Compact ranges based on amplitude and phase holograms have been developed and shown to be applicable...
The application of conventional reflector type compact antenna test ranges (CATR), becomes increasin...
The application of conventional reflector-type compact antenna test ranges (CATRs) becomes increasin...
A hologram-based compact antenna test range (CATR) is being developed to overcome challenges met in ...
Abstract- A hologram type of compact antenna test range (CATR) is a promising method for testing lar...
A hologram-based compact antenna test range (CATR) is designed, constructed, and used to test a 1.5-...
MilliLab/Radio Laboratory at the Helsinki University of Technology (TKK) is developing a hologram-ba...
The hologram based compact antenna test range is a viable option for testing millimetre and sub-mill...
We have constructed a demonstrative compact antenna test range (CATR) and tested its performance at ...
A compact antenna test range (CATR) based on a radio frequency hologram is a potential method for te...
Computer-generated holograms can be used as collimating elements in compact antenna test ranges (CAT...
The quiet-zone field test results of a submillimetre-wave compact antenna test range (CATR) based on...
This paper studies the feasibility of a hologram-based compact antenna test range (CATR) for submill...
Compact antenna test range developed at TKK Helsinki University of Technology utilizes a computer-ge...
Hologram-based compact antenna test range (CATR) is a potential method for testing large antennas at...
Compact ranges based on amplitude and phase holograms have been developed and shown to be applicable...