DocumentCode :
402255
Title :
Self-calibration procedures for vector network analyzers on the basis of reflection standards
Author :
Rolfes, Ilona ; Schiek, Burkhard
Author_Institution :
RF & Microwave Eng. Inst., Ruhr-Univ., Bochum, Germany
Volume :
1
fYear :
2003
fDate :
7-9 Oct. 2003
Firstpage :
93
Abstract :
The LRR method (Line, Reflect) and the extended LNN method (Line, Network) for the calibration of 4-channel-network analyzers are presented. These self-calibration procedures have the advantage that the calibration circuits are all of equal mechanical length in contrast to the well-known TRL method (Through, Reflect, Line). The TRL method needs a line-standard with a different length than the other calibration standards. For the LNN and LRR method it is thus not necessary to displace the connectors of the vector network analyzer during calibration in order to contact the calibration structures. The LNN and LRR calibration standards consist of objects which have to be placed at three consecutive positions. While the LNN obstacles have a transmission, the LRR obstacles are realized as reflective networks. In addition to the known LNN procedure all extended theory is presented here which accounts for different distances between the obstacles. The circuits are thus easy to realize. Measurement results are presented in order to verify the robust functionality of the methods.
Keywords :
calibration; measurement standards; microwave reflectometry; network analysers; reflectometers; 4-channel-network analyzers; LRR method; TRL method; calibration standards; extended LNN method; reflection standards; robust functionality; self-calibration procedures; vector network analyzers; Antennas and propagation; Calibration; Circuits; Connectors; Contacts; Microwave theory and techniques; Radio frequency; Reflection; Robustness; Symmetric matrices;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwave Conference, 2003. 33rd European
Print_ISBN :
1-58053-834-7
Type :
conf
DOI :
10.1109/EUMC.2003.1262226
Filename :
1262226
Link To Document :
بازگشت