Probe compensation is an essential element in near-field measurements when accurate fields are required. However, the accuracy of probe compensation techniques heavily depends on the accuracy of the used probe factor. A major source of errors in the probe factors used in scalar and vector compensation is the truncation error. Increasing the size of the measuring plane offers a solution, but is not practical in most cases. First, not every near-field scanner allows to measure a large area. Second, increasing the size of the measuring plane also increases the measurement time. In this paper, a novel method to reduce the influence of truncation errors on probe compensation is presented. The method uses auxiliary dipoles to extrapolate the meas...
In the world of RF analysis, the need to study the characteristics and behavior of a satellite anten...
A method to reduce truncation errors in near-field antenna measurements is presented. The method is ...
A procedure for the calibration and compensation of near-field scanning is described and demonstrate...
Probe compensation is an essential element in near-field measurements when accurate fields are requi...
A new method to avoid the truncation error in antenna near-field measurements is presented. The appr...
A new method to avoid the truncation error in antenna near-field measurements is presented. The appr...
A new method to avoid the truncation error in antenna near-field measurements is presented. The appr...
After a brief history of near-field antenna measurements with and without probe correction, the theo...
In order to compensate nonideal receiving characteristic of electric probes used in planar electroma...
The paper discusses how an innovative approach allows controlling the truncation error in Near-Field...
In this paper, the planar near field measurement techniques are addressed. The physical implementati...
The paper discusses how an innovative approach allows controlling the truncation error in Near-Field...
The paper discusses how an innovative approach allows controlling the truncation error in Near-Field...
A simple and effective procedure for the reduction of truncation errors in planar near-field measure...
In the world of RF analysis, the need to study the characteristics and behavior of a satellite anten...
In the world of RF analysis, the need to study the characteristics and behavior of a satellite anten...
A method to reduce truncation errors in near-field antenna measurements is presented. The method is ...
A procedure for the calibration and compensation of near-field scanning is described and demonstrate...
Probe compensation is an essential element in near-field measurements when accurate fields are requi...
A new method to avoid the truncation error in antenna near-field measurements is presented. The appr...
A new method to avoid the truncation error in antenna near-field measurements is presented. The appr...
A new method to avoid the truncation error in antenna near-field measurements is presented. The appr...
After a brief history of near-field antenna measurements with and without probe correction, the theo...
In order to compensate nonideal receiving characteristic of electric probes used in planar electroma...
The paper discusses how an innovative approach allows controlling the truncation error in Near-Field...
In this paper, the planar near field measurement techniques are addressed. The physical implementati...
The paper discusses how an innovative approach allows controlling the truncation error in Near-Field...
The paper discusses how an innovative approach allows controlling the truncation error in Near-Field...
A simple and effective procedure for the reduction of truncation errors in planar near-field measure...
In the world of RF analysis, the need to study the characteristics and behavior of a satellite anten...
In the world of RF analysis, the need to study the characteristics and behavior of a satellite anten...
A method to reduce truncation errors in near-field antenna measurements is presented. The method is ...
A procedure for the calibration and compensation of near-field scanning is described and demonstrate...