DocumentCode
1502521
Title
SDFT-Based Ultrasonic Range Finder Using AM Continuous Wave and Online Parameter Estimation
Author
Sumathi, P. ; Janakiraman, P.A.
Author_Institution
Dept. of Electr. Eng., Indian Inst. of Technol. Madras, Chennai, India
Volume
59
Issue
8
fYear
2010
Firstpage
1994
Lastpage
2004
Abstract
An amplitude-modulated (AM) ultrasonic range finder using an online parameter estimation procedure is presented, which uses the sliding discrete Fourier transform (SDFT) algorithm for extracting the sinusoidal envelope from the received reference and ultrasonic signals. The received ultrasonic envelope contains an additive noise, which resembles another sine wave whose frequency is very close to that of the envelope. This gives rise to a low-frequency beat in the phase shift between the transmitted and received envelopes. Consequently, the estimated phase shows an equivalent phase jitter. The desired sinusoidal envelope signal cannot easily be separated from the noise signal, even by sharply tuned SDFT filters with phase-locked loops (PLLs). A parameter estimation procedure has been applied to remove these interharmonic signals with the help of comb filters. The PLL was strengthened by a cosine lookup table (LUT). By locating the envelope frequency far away from the interharmonic noise frequency, the convergence time could greatly be reduced. Simulation studies were conducted in the Matlab-Simulink-DSP builder environment, and ideas were implemented in a Cyclone-II field-programmable gate array (FPGA)-based range finder fabricated in the laboratory. The test results of the AM ultrasonic range finder are presented to show its performance for static and slowly moving objects.
Keywords
discrete Fourier transforms; distance measurement; parameter estimation; ultrasonic measurement; AM continuous wave; SDFT-based ultrasonic range finder; additive noise; amplitude-modulated ultrasonic range finder; cosine lookup table; equivalent phase jitter; online parameter estimation; parameter estimation procedure; received reference; sinusoidal envelope; sliding discrete Fourier transform; ultrasonic signals; Acoustic distance measurement; SDFT phase-locked loop; amplitude-modulated (AM) ultrasonic range finder; comb filter; interharmonic noise removal; parameter estimation procedure; sliding discrete Fourier transform (SDFT);
fLanguage
English
Journal_Title
Instrumentation and Measurement, IEEE Transactions on
Publisher
ieee
ISSN
0018-9456
Type
jour
DOI
10.1109/TIM.2009.2032881
Filename
5290015
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