This paper deals with the experimental validation of an efficient near-field-far-field (NF-FF) transformation using the planar wide-mesh scanning (PWMS). Such a nonconventional plane-rectangular scanning technique is so named, since the sample grid is characterized by meshes wider and wider when going away from the center, and makes it possible to lower the number of needed measurements, as well as the time required for the data acquisition when dealing with quasi-planar antennas. It relies on the use of the nonredundant sampling representations of electromagnetic fields which employ an oblate ellipsoid or a surface formed by two circular “bowls” with the same aperture diameter but eventually different bending radii to shape a quasi-planar ...
This paper aims to give the experimental proof of two effective procedures for the compensation of s...
This paper presents an effective, probe-compensated, near-field to far-field (NF-FF) transformation ...
An effective iterative procedure for the correction of known errors in the probe positioning in a ne...
This paper deals with the experimental validation of an efficient near-field-far-field (NF-FF) trans...
This work concerns the experimental validation of an efficient near-field – far-field (NF–FF) transf...
This communication deals with the experimental validation of an efficient near-field – far-field (NF...
An effective procedure is here proposed for evaluating the antenna far field from the knowledge of n...
An efficient probe-compensated near-field – far-field (NF–FF) transformation with plane-polar scanni...
An effective procedure to correct known 3D probe positioning errors affecting the near-field–far-fie...
This work deals with the experimental validation of a probe compensated near-field — far-field (NF-F...
This paper aims to give the experimental proof of two effective procedures for the compensation of s...
This paper presents an effective, probe-compensated, near-field to far-field (NF-FF) transformation ...
An effective iterative procedure for the correction of known errors in the probe positioning in a ne...
This paper deals with the experimental validation of an efficient near-field-far-field (NF-FF) trans...
This work concerns the experimental validation of an efficient near-field – far-field (NF–FF) transf...
This communication deals with the experimental validation of an efficient near-field – far-field (NF...
An effective procedure is here proposed for evaluating the antenna far field from the knowledge of n...
An efficient probe-compensated near-field – far-field (NF–FF) transformation with plane-polar scanni...
An effective procedure to correct known 3D probe positioning errors affecting the near-field–far-fie...
This work deals with the experimental validation of a probe compensated near-field — far-field (NF-F...
This paper aims to give the experimental proof of two effective procedures for the compensation of s...
This paper presents an effective, probe-compensated, near-field to far-field (NF-FF) transformation ...
An effective iterative procedure for the correction of known errors in the probe positioning in a ne...