Errors and uncertainties in the measurement of ultrasonic wave attenuation and phase velocity

被引:41
作者
Kalashnikov, AN [1 ]
Challis, RE [1 ]
机构
[1] Univ Nottingham, Sch Elect & Elect Engn, Nottingham NG7 2RD, England
基金
英国工程与自然科学研究理事会;
关键词
D O I
10.1109/TUFFC.2005.1561630
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
This paper presents an analysis of the error generation mechanisms that affect the accuracy of measurements of ultrasonic wave attenuation coefficient and phase velocity as functions of frequency. In the first stage of the analysis we show that electronic system noise, expressed in the frequency domain, maps into errors in the attenuation and the phase velocity spectra in a highly nonlinear way; the condition for minimum error is when the total measured attenuation is around 1 Neper. The maximum measurable total attenuation has a practical limit of around 6 Nepers and the minimum measurable value is around 0.1 Neper. In the second part of the paper we consider electronic noise as the primary source of measurement error; errors in attenuation result from additive noise whereas errors in phase velocity result from both additive noise and system timing jitter. Quantization noise can be neglected if the amplitude of the additive noise is comparable with the quantization step, and coherent averaging is employed. Experimental results are presented which confirm the relationship between electronic noise and measurement errors. The analytical technique is applicable to the design of ultrasonic spectrometers, formal assessment of the accuracy of ultrasonic measurements, and the optimization of signal processing procedures to achieve a specified accuracy.
引用
收藏
页码:1754 / 1768
页数:15
相关论文
共 24 条
[1]   SPECTRA OF QUANTIZED SIGNALS [J].
BENNETT, WR .
BELL SYSTEM TECHNICAL JOURNAL, 1948, 27 (03) :446-472
[2]   Propagation of uncertainty in a discrete Fourier transform algorithm [J].
Betta, G ;
Liguori, C ;
Pietrosanto, A .
MEASUREMENT, 2000, 27 (04) :231-239
[3]   Error estimates for frequency responses calculated from time-domain measurements [J].
Blair, JJ .
IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 1998, 47 (02) :345-353
[4]   ON QUANTIZATION OF NOISY SIGNALS [J].
BROWN, MK .
IEEE TRANSACTIONS ON SIGNAL PROCESSING, 1991, 39 (04) :836-841
[5]  
CHALLIS R, 1982, ACUSTICA, V50, P221
[6]   NEAR-PLANE-WAVE ACOUSTIC PROPAGATION MEASUREMENTS IN THIN-LAYERS OF ADHESIVE POLYMER [J].
CHALLIS, RE ;
ALPER, T ;
HOLMES, AK ;
COCKER, RP .
MEASUREMENT SCIENCE AND TECHNOLOGY, 1991, 2 (01) :59-68
[7]   Ultrasonic measurements related to evolution of structure in curing epoxy resins [J].
Challis, RE ;
Freemantle, RJ ;
Cocker, RP ;
Chadwick, DL ;
Dare, DJ ;
Martin, C ;
Mahendrasingam, A ;
Fuller, W .
PLASTICS RUBBER AND COMPOSITES, 2000, 29 (03) :109-118
[8]   Equivalence between three scattering formulations for ultrasonic wave propagation in particulate mixtures [J].
Challis, RE ;
Tebbutt, JS ;
Holmes, AK .
JOURNAL OF PHYSICS D-APPLIED PHYSICS, 1998, 31 (24) :3481-3497
[9]   A WIDE BANDWIDTH SPECTROMETER FOR RAPID ULTRASONIC-ABSORPTION MEASUREMENTS IN LIQUIDS [J].
CHALLIS, RE ;
HARRISON, JA ;
HOLMES, AK ;
COCKER, RP .
JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 1991, 90 (02) :730-740
[10]   Errors and uncertainties in the ultrasonic pulse-echo reflectometry method for measuring acoustic impedance [J].
Challis, RE ;
Wilkinson, GP ;
Freemantle, RJ .
MEASUREMENT SCIENCE AND TECHNOLOGY, 1998, 9 (04) :692-700