Complex S-parameter measurement and its uncertainty evaluation on a vector network analyzer

The present paper deals with an uncertainty evaluation in complex scattering (S)-parameter measurements and the correlation coefficients between the real and imaginary components of S-parameters in the frequency range 2–18 GHz. The measurements were performed for one-port and two-port components usi...

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Veröffentlicht in:Measurement : journal of the International Measurement Confederation 2009, Vol.42 (1), p.145-149
Hauptverfasser: Patel, Kamlesh, Negi, P.S., Kothari, P.C.
Format: Artikel
Sprache:eng
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Zusammenfassung:The present paper deals with an uncertainty evaluation in complex scattering (S)-parameter measurements and the correlation coefficients between the real and imaginary components of S-parameters in the frequency range 2–18 GHz. The measurements were performed for one-port and two-port components using a vector network analyzer (VNA) and the uncertainty estimation for complex transmission and reflection coefficients were done separately. The various contributors to the measurement uncertainty in real and imaginary component of S-parameter have been evaluated as per the European cooperation for Accreditation (EA) Guidelines on VNAs. Uncertainty budgets have been provided for one/two-port components separately with various sources of uncertainties involved and their distribution. This paper reports the combined standard uncertainty within ±0.005 and ±0.015 in complex transmission and reflection coefficients, respectively, upto 18 GHz. The correlation coefficients (+1.0 to −1.0) between the real and imaginary components of S-parameters are calculated for a coaxial mismatch of voltage standing wave ratio (VSWR) ≈3.0 and a coaxial attenuator (3 dB) in Type-N connectors.
ISSN:0263-2241
1873-412X
DOI:10.1016/j.measurement.2008.04.010