DocumentCode
729051
Title
Measurement uncertainty introduced by instruments in frequency domain channel measurement systems with a covariance-based analysis
Author
Xin Zhou ; Zhangdui Zhong ; Xin Bian ; Lei Xiong ; Ke Guan ; Ruisi He ; Ke Liu ; Jianqiang Wu
Author_Institution
State Key Lab. of Rail Traffic Control & Safety, Beijing Jiaotong Univ., Beijing, China
fYear
2015
fDate
26-29 May 2015
Firstpage
302
Lastpage
305
Abstract
This paper investigates the measurement uncertainty introduced by measurement instruments in frequency domain channel measurement systems. The uncertainty is a quantitative indication of the quality of the measurement results, so it provides a quantitative reference to chose appropriate instruments and measurement methods. The uncertainty analysis is based on Monte Carlo method. To account for the correlations between S-parameter measurements for different frequencies, covariance-matrix-based analysis is performed. The experiments in this paper show that the correlations have a strong influence on the uncertainties of channel parameter measurements. This paper illustrates the method for uncertainty analysis and provides the typical uncertainties of path loss and rms delay spread for the ultra wideband (UWB) channel measurements. For frequency domain channel measurement, the measurement instrument, Vector Network Analyzer (VNA), need to be calibrated. The different calibration methods lead to different measurement uncertainties. This paper presents the uncertainties for different calibration methods. Based on the uncertainty analysis, the response calibration method is suggested for channel measurements. It is the first time to provide the suggestion based on quantitative analysis.
Keywords
Monte Carlo methods; covariance matrices; frequency-domain analysis; measurement uncertainty; mobile radio; network analysers; Monte Carlo method; S-parameter measurements; VNA; covariance-matrix-based analysis; frequency domain channel measurement system; measurement uncertainty; mobile radio channel; response calibration method; uncertainty analysis; vector network analyzer; Calibration; Correlation; Frequency measurement; Instruments; Measurement uncertainty; Scattering parameters; Uncertainty; Channel measurement; covariance matrix; delay spread; frequency domain; uncertainty analysis;
fLanguage
English
Publisher
ieee
Conference_Titel
Electromagnetic Compatibility (APEMC), 2015 Asia-Pacific Symposium on
Conference_Location
Taipei
Print_ISBN
978-1-4799-6668-4
Type
conf
DOI
10.1109/APEMC.2015.7175256
Filename
7175256
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